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Dr. Patel’s 12 Steps to Smart and Safe Social Media Communication

Dr. Patel’s 12 Steps to Smart and Safe Social Media Communication

Introduction

• Social media is no longer new.
Doctors, surgeons, healthcare providers, hospitals, surgery centers, and practices have had 6 to 10 years to participate.

No promise of benefit is likely to convince anyone now.

• Levels of participation

Avoiders

Delegators

Personal participators

Believers and adopters

• Leaders in healthcare will increasingly come from the last group.

Communication skills – voice of healthcare
Public will choose them as leaders.
If you want to lead, you have to learn to communicate.

This is no longer social media, it’s communication.

Objective: You can communicate with the public in a safe, smart way by following these 12 principles.

• True for surgeons, physicians, nurses, practice managers, surgery center administrators, practices, surgery centers and hospitals

1. See the benefits in social media instead of the risks.

• Get your message out to the public.
Fear of social media likely misplaced
No ability to control what other people say
We can control what we say and what information we get out.

• If you don’t participate, only what others say is available for people to find.

2. Understand and follow the social media guidelines of your institution.

• Personal vs. institution?
• Discuss your plans, vision, goals up front

3. You can participate without creating content.

• Content creation
Blog – write blog posts

Videos – live or recorded

Podcasts

Websites, magazines, newspapers, etc – articles, interviews

• Content curation
Lists of articles from others

Sharing others’ articles on Facebook or Twitter Dispelling myths

4. Start slowly and build.

• Don’t try to be everywhere online at first.

• Re-purpose content.

5. Communicate to help others instead of promoting yourself.

• People don’t care about you.
• Create content that helps them in their lives.
• “Backside” branding

6. Look to role models, not medical organizations, for social media guidance.

• Medical organizations not equipped to lead in social media

Reactive

Based on existing platforms

New platforms created every few weeks

Based on mistakes people have made in the past

• Not possible to foresee every possibility

7. Assume everything you publish online can be seen by everyone.

• Blog posts, podcasts, videos open to public
• Facebook, Twitter more time sensitive
• Even in “closed” platforms, information can be captured, shared.

Ex. Facebook personal profile vs page

8. Decide what you want to share and what you don’t.

• Acceptable if you want Kids

Personal interests

• Generally not a good idea

Political views

Religious opinions

• Not appropriate

Anger

Alcohol and other lifestyle choices

9. Avoid patient-specific discussions.

• No difference between physical environments and online
• Gray areas that don’t technically violate confidentiality
• Examples to teach or illustrate points, not to assume or criticize

10. Avoid giving medical advice online.

• Existing patients
• General public – non-patients

11. Online relationships with patients

• Friends? Followers? Fans? Connections?
• Strict rules miss the point.
• What matters is how you engage with the public.

12. Don’t lash out at people who leave negative reviews.

• Only draws more attention
• Respond politely and offer to discuss offline.
• Fill the internet with your content.
• Collect positive reviews.

Conclusion – last appeal to participate

• Losing our voice and autonomy
• Must get our voice out, heard
• Make the future better for ourselves and our colleagues
• Make a difference in the lives of the public

Best Ways to Fight Headache Pain (2)

Best Ways to Fight Headache Pain (2)

More than 47 million Americans have experienced a severe or debilitating headache in the past three months. Migraines alone affect 9 percent of the U.S. population and costs $1 billion a year in direct medical expenses.

There are the obvious choices for zapping the pain, such as nonsteroidal anti-inflammatory drugs (Motrin and Aleve, for example). People with migraines often take beta blockers or antidepressants to prevent headaches, and triptans, such as Imitrex or Relpax, once symptoms start.

But if your headaches are persistent or other medications just aren’t cutting it, here are some other approaches you can consider.

Biofeedback
Biofeedback uses electronic sensors to monitor body functions such as muscle tension, skin temperature, heart rate, and blood pressure. Data are fed back to the patient through sounds or computer images. The goal is to teach people how to control bodily responses — easing tight muscles, for example — to prevent headache pain.

Studies show biofeedback could be effective for migraine and tension-type headache. A recent analysis published in Headache suggests behavioral therapies, such as biofeedback, are more cost-effective over time than prescription drugs.

More from Health.com:
3 Headaches That Require Emergency Attention
Gel Caps or Coated? Pick the Right Pill
10 Hangover Remedies: What Works

Acupuncture
In acupuncture, thin needles are inserted under the skin to realign the flow of energy, orqi, in the body. In general, treatments run $60 to $120 per session, according to Acufinder.com, an acupuncture referral service.

An expert analysis, known as a Cochrane review, found acupuncture could help prevent acute migraines as well as drug treatments do and with fewer adverse side effects. Evidence also suggests that acupuncture could help people with frequent episodic or chronic tension-type headaches, they say.

Massage
For temporary relief, try rubbing your temples or getting a neck, back, head, or shoulder massage.

“You feel better for a little while, but then you have to have it again and again,” says Salwa H. Hanna, M.D., owner, founder, and medical director of the Headache Clinic of Denver.

In a small study, people with migraines who had six weekly massage sessions had less frequent migraines and better sleep during the massage weeks and the three following weeks than a control group.

Stretching
Headache-relieving stretches can get at muscle tension that contributes to pain. Add them to your workout or use them when a headache looms.

Try these three: neck range of motion (chin forward, upward, and toward each shoulder); shoulder shrugs (shrug up, up and forward, and up and back); and neck isometrics (press palm into forehead and hold; press hand on each side of the head).

Stretch twice a day for 20 minutes per session. Hold the stretch for five seconds, relax for five seconds, and repeat each stretch three to five times.

Aerobics
Regular aerobic exercise, such as brisk walking, biking, or swimming, can reduce migraine intensity and frequency, according to the National Pain Foundation.

In a small study in the journal Headache, migraine patients who were not regular exercisers engaged in a 12-week indoor cycling program. Participants improved their quality of life and reduced the number of migraines they had, as well as the intensity of the pain.

Meditation
Various meditation techniques can be used to focus attention and quiet the mind from distractions such as chronic pain.

At this point, there is little data on the effect of meditation on migraines. Researchers at Johns Hopkins School of Medicine, in Baltimore, are involved in a clinical trial that will try to determine if Vipassana — an ancient Indian meditation technique that focuses on mind-body connectedness — can reduce migraine frequency and severity and improve overall quality of life.

One small study of people with migraines found that spiritual meditation reduced headache frequency and improved pain tolerance more than secular meditation and muscle relaxation.

Yoga
Could striking a camel pose ease your aching head?

Yoga combines physical postures, breathing exercises, and meditation to boost relaxation and balance the mind, body, and spirit, according to the National Center for Complementary and Alternative Medicine.

In a small study in Headache, two groups of migraine patients were randomly assigned to three months of yoga therapy or self care. Compared with the control group, the yoga participants had less frequent and less painful attacks, as well as less anxiety.

Relaxation exercises
Deep breathing, relaxing to music, or using mental imagery can help people unwind and possibly help with headache too. Additional research is needed, however.

A study of 90 people with tension headaches found that relaxation training improved their sleep more than acupuncture.

Edmund Messina, M.D., medical director of the Michigan Headache Clinic, in East Lansing, teaches a 20-minute muscle-relaxation technique. Patients lie still, breathe in and out slowly, and use a mantra to keep the mind from wandering. They then contract and relax various muscle groups, working from toes to head. “The idea is to consciously tense and relax your muscle groups,” Dr. Messina says.

Heat and cold
Anyone can use this no-risk headache therapy — even pregnant women.

To alleviate neck tightness, apply heat to the back of the neck, Dr. Messina says. For a pulsating headache, however, skip the heat and try icing the temples.

The artery that supplies blood to the dura (the lining of the brain) sits behind the thin bone at the temple, Dr. Messina explains. “That dura gets mighty angry and inflamed when you’re having a migraine,” he says. Lowering the temperature of the blood passing through that area “seems to relieve some of the throbbing.”

Avoid nitrates and nitrites
Dr. Hanna recommends avoiding headache-inducing substances, including nitrites and nitrates in processed meats and monosodium glutamate (MSG) used in foods as a flavor enhancer. Some heart medicines also contain nitrate.

Caffeine, alcohol, phenylethylamine (found in chocolate and cheese), tyramine (found in nuts and fermented meats, cheeses, and soy), and aspartame (in many artificially sweetened foods) are headache triggers for some.

Some doctors support taking riboflavin (vitamin B2), magnesium, and coenzyme Q10, among other supplements, as part of a headache-relief strategy. But the evidence is scarce on their effectiveness, and they do carry risks of side effects.

Botox
Better known as a wrinkle-reducer, Botox injections are FDA-approved for treating adults with chronic migraine.

Multiple injections, at a cost of roughly $350 per injection site, are given around the head and neck every 12 weeks. Some insurance companies cover the injections for people who have failed to get relief from other migraine medicines.

Two large studies funded by Allergan, the maker of Botox, show reductions in the frequency of headaches. But groups that received placebo injections showed improvement too.

Skeptics continue to question the therapy’s value. “Botox produces euphoria in those who bill for it, but I’ve never seen it work,” Dr. Messina says.

Transcranial magnetic stimulation
Delivering magnetic pulses to the brain may become a useful therapy for zapping migraines, research suggests. A recent study found that when patients treated a migraine with transcranial magnetic stimulation, they got better relief than those who treated their pain with a placebo device.

This noninvasive treatment takes one or two hours and is conducted in a clinic by placing an electromagnetic coil near the head to deliver the pulses.

Transcranial magnetic stimulation, however, is still considered an experimental therapy for treating migraines.

Electrode implants
People with intractable headaches may one day rely on electrodes implanted in the neck or brain to provide pain relief.

One such therapy, called occipital nerve stimulation, appears promising in the treatment of cluster headaches and migraines, studies show, although larger studies are needed.

In this treatment, an electrode is surgically implanted at the base of the skull, near the occipital nerve. A power source is also implanted (near the collar bone or elsewhere in the body) to deliver electrical impulses via a wire to the electrode.

Arthritis Treatment Options

Arthritis Treatment Options

You can probably remember a time when stairs weren’t your enemy and you could bound up them without any painful protest from your joints. Back then, you didn’t have to give a second thought to whether you could open a jar or turn a doorknob. Then arthritis intervened, leaving your joints swollen, painful, and stubbornly unwilling to let you do even the simplest everyday tasks.

Regardless of whether you’ve developed osteoarthritis with age or you have rheumatoid arthritis or a painful case of gout, you don’t have to let joint discomfort and stiffness prevent you from living. Your doctor has a whole range of medications and recommendations to relieve your pain and protect your joints from further damage.

Here is a rundown of the top arthritis treatment options.

Simple Ways to Protect Your Joints

Arthritis relief doesn’t always have to come from a bottle. Maintaining a healthy weightexercising, and using special devices to help you get around can also have a big impact on your symptoms.

Losing weight if you are overweight or obese can help take pressure off your joints.

People with gout should avoid alcohol and foods that are high in purines, and that includes organ meats (liverkidney), dried beans, sardines, anchovies, asparagus, and mushrooms. When the body breaks down purines, it produces uric acid, and excess uric acid causes painful crystals to deposit in the joints. Making these changes may reduce flare ups, but they almost never cure the condition

Relieving Stiff Joints With Exercise

When you’re in pain, the last thing you may want to do is exercise, but it’s actually one of the best things you can do for your joints. Aerobic, strength-training, and stretching exercises can all be helpful. Work with your doctor to learn what exercises are safe for you to do. Physical therapy is also a common part of treatment in people with OA. Regular exercise can also help you maintain a healthy weight.

Medications

Pain Relievers

You’re probably familiar with a group of medications known as nonsteroidal anti-inflammatory drugs (NSAIDs). These drugs interfere with chemicals called prostaglandins in the body, which trigger pain, inflammation, and fever. Some NSAIDs are available over-the-counter for relief of pain and fever at your local drugstore, including ibuprofen(Motrin, Advil), naproxen (Aleve), and aspirin. There are also many other prescription NSAIDs available such as celecoxib (Celebrex), ketoprofen (Orudis), naproxen (Naprosyn), piroxicam (Feldene), andsulindac (Clinoril); you’ll need a prescription from your doctor. Prescription doses of NSAIDs also curb inflammation.

NSAIDs can be very helpful for relieving pain and swelling in all types of arthritis, including gout. Just be careful when you use these drugs, because they can have side effects such as stomach bleeding and an increased risk for heart attack and other cardiovascular problems. Read the package label and talk to your doctor to make sure you’re using the lowest effective dose for the shortest possible period of time.

Acetaminophen (Tylenol) is another option for easing arthritis pain. In the past, doctors thought acetaminophen was only good for pain relief and that it did little, if anything, to reduce inflammation. Now some research suggests that acetaminophen may have some anti-inflammatory properties.

For some people, acetaminophen can relieve pain as well as NSAIDs, and it doesn’t come with the gastrointestinal and heart risks. Acetaminophen isn’t entirely free from side effects, though. Because it can harm the liver and kidneys, make sure to stick with the recommended dosage and talk to your doctor if you need longer-term pain relief.

An alternative or addition to pain relievers you take by mouth, are creams or gels that you rub on your affected joints. These topical pain relief options include:

  • Capsaicin, the ingredient that gives cayenne peppers their kick, may help curb arthritis pain.
  • Counterirritants distract your brain away from the pain in your joints by irritating nerve endings and contain ingredients like menthol, camphor, and eucalyptus oil. NSAIDs also come in topical formulations, some of which are only available by prescription. Recently, the FDA issued a warning that the topical form of the NSAID diclofenac can be harmful to the liver. If you’re using this drug, your doctor will need to check your liver function four to eight weeks after you start treatment.

If you’ve already tried a variety of pain relievers and your joints are still throbbing, or you just can’t tolerate NSAIDs or acetaminophen, your doctor may recommend stronger opioid or narcotic pain relievers. These drugs can become habit-forming, so it’s important that you keep in close touch with your doctor while taking them.

Disease-Modifying Drugs

Pain relievers can make you feel better, but they’re not going to change the course of your arthritis. Disease-modifying anti-rheumatic drugs (DMARDs) can actually slowjoint damage in people with arthritis from an overactive immune system such as rheumatoid arthritis andpsoriatic arthritis. These drugs can’t reverse damage that’s already been done to your joints, however, and they can cause side effects such as in increased risk of serious infection.

The DMARD that’s often tried first is methotrexate (Rheumatrex,Trexall). Other DMARDs include:

Newer disease-modifying drugs called biologics include etanercept(Enbrel), certolizumab pegol (Cimzia), adalimumab (Humira), infliximab(Remicade), abatacept (Orencia), rituximab (Rituxan), and anakinra(Kineret). Downsides to biologic drugs include their high price tag, which can reach $20,000 a year, and an increased risk of infection as well as other side effects.

Corticosteroids

Corticosteroids also dampen the immune response and help reduce inflammation. Some might take a steroid drug if NSAIDs aren’t budging your arthritis symptoms, or when you’ve just started treatment and you’re waiting for your DMARD to take effect. Corticosteroids for arthritis are most often taken by mouth or via an injection directly into the joint. Injections offer speedy pain and inflammation relief, and their effects can last for a few weeks or months. The side effect many people complain about with oral corticosteroids is weight gain, but these drugs can also increase your risk for infection, cataracts, and weak bones (osteoporosis).

Hyaluronic Acid Therapy (Viscosupplementation)

The joints contain a natural lubricant and shock absorber called hyaluronic acid that keeps them moving smoothly, but people withosteoarthritis have less of this substance than normal. Hyaluronic acid injections with products such as EuflexxaHyalganOrthovisc,Supartz, and Synvisc-One can help relieve the pain of mild-to-moderateosteoarthritis of the knee and improve mobility. Side effects from viscosupplementation are usually mild and may include pain or swelling at the injection site.

Antidepressants

Some doctors may recommend the use of an antidepressant drug forchronic pain whether you suffer from depression or not. In 2010, the FDA approved the antidepressant duloxetine (Cymbalta) for chronic musculoskeletal pain including the pain of osteoarthritis. Although not FDA-approved for this use, another class ofantidepressants called tricyclics may also help manage chronic pain. These include amitriptyline (Elavil), desipramine (Norpramin),imipramine (Tofranil), and nortriptyline (AventylPamelor). Although it is unclear how they help with chronic pain, antidepressant effects on brain chemicals that cause you to feel pain is believed to play a role. Side effects can range from drowsiness to dry mouth and blurredvision. Rarely, these drugs can also lead to mood changes or suicidalthoughts.

Gout Treatments

In addition to taking steroids, NSAIDs, or other pain relievers for gout, your doctor may prescribe a medication that reduces the amount of uric acid in your body, such as allopurinol (Zyloprim),febuxostat (Uloric), or probenecid(Probalan). Colchicine may also be used in gout treatment to treat or help prevent attacks. In 2010, the FDA approved the drug Krystexxa, the first medication designed for gout that doesn’t respond to other treatments. Krystexxa is an enzyme that breaks down uric acid so it can be removed in the urine. The enzyme is often used only in the most severe cases where large deposits of uric acid are present. Side effects of the drug include allergic reactions, nausea, and bruising at the injection site.

Surgery

If joint pain or damage is so severe that medication isn’t working, your doctor may talk to you about having surgery to replace the joint or improve its alignment.

Arthroscopy

To look inside your joint, the surgeon makes a very small incision and inserts a thin, lighted tube and small surgical instruments. Through this small cut, the doctor can remove floating pieces of bone or cartilage or other debris from the joint, smooth out rough surfaces, or remove swollen tissues.

Joint Replacement (Arthroplasty)

Arthritis can take its toll on your joints, and over time you may have no choice but to replace a worn out hip or knee joint with a man-made plastic or metal version. If osteoarthritis is only in one part of the knee joint, you can have a partial knee or hip replacement, a less invasive procedure that will still help improve function.

Joint fusion

When joint replacement fails, the surgeon can try another technique that removes a joint completely from the ends of the two bones that connect it. The bones are then held together with screws, pins, or plates. Over time, the bones should fuse into one piece.

Osteotomy

If you’re still young and active and you’ve got knee or hip osteoarthritis, you may be able to have an osteotomy, or joint-preserving surgery. By cutting and removing a section of the bone, this procedure improves joint alignment and stability, and it could help you delay joint replacement surgery for several years.

Alternative Remedies for Osteoarthritis

A few alternative treatments have been studied for arthritis relief, but before you try any of these therapies, talk to your doctor and make sure it won’t have side effects or interact with other treatments you’re using.

Acupuncture is a popular alternative arthritis treatment, and some evidence of benefit has been suggestive but not conclusive in some patients.

The dietary supplements glucosamine and chondroitin have also been touted for osteoarthritis relief, although the evidence about their effectiveness is mixed. While some studies haven’t found much of a benefit, others suggest glucosamine and chondroitin may help reduce pain in some patients with mild OA.

Getting Help with Your Arthritis

Don’t suffer from arthritis pain alone. Get help from your doctor, an occupational therapist, and/or a physical therapist to learn coping strategies and ways to relieve your discomfort.

  • Your doctor is your main arthritis advocate. Keep in regular contact with your doctor to make sure your medication is working for you, and that you are taking advantage of every possible treatment option.
  • An occupational therapist can help you design your life to be as pain-free as possible. This may include modifying your home to make it easier to get around and recommending gadgets to help you open jars, tie shoelaces, and do other everyday tasks.
  • A physical therapist can teach you exercises to improve the flexibility in your joints and show you how to use walking aids such as a cane, walker, brace, or special shoes.

The importance of pain control

The importance of pain control

Although pain can protect us by forcing us to rest an injury or to stop doing something, the experience of being in a state of uncontrolled pain is horrible, frightening, and can have a profound effect on our quality of life. Uncontrolled pain can:

  • delay healing
  • decrease appetite
  • increase stress
  • disrupt sleep
  • cause anxiety and depression

Unrelieved pain has consequences

It turns out that healing is actually delayed when pain caused by tissue damage is not relieved. Research shows that uncontrolled pain has an adverse effect on our immune system. Continuous pain also appears to lower our body’s ability to respond to stressful situations such as surgery, chemotherapy, and psychological stress.

Far-reaching consequences can also result from pain due to damage to a nerve (neuropathic pain). This type of unrelieved pain seems to cause changes in the nervous system that contribute to the development of chronic pain long after the damage to the nerve has healed.

We already know that controlling pain helps to provide enjoyment and peace to those who are living with a life-threatening illness, but pain control may also prolong life by reducing the negative effects that pain has on the body.

Debunking pain myths

Sometimes, misconceptions about pain can get in the way of pain control. Here are some common misunderstandings about pain.

  • Pain happens, you just need to put up with it.
    Pain control and comfort is a reasonable expectation. Pain does not have to be tolerated, but can be treated to improve your comfort and quality of life.
  • If I take pain medication too early, it won’t work when the pain gets really bad.
    When treated early, pain is easier to control. There are many options for controlling pain.
  • I will get addicted to narcotic pain medications.
    The majority of people taking opioid (narcotic) pain medications for pain do not become addicted. Some people will develop tolerance (need higher doses of the medication over time) or physical dependence (experience withdrawal symptoms if the medication is stopped suddenly), but these can be managed.
  • Doctor and nurses are so busy. I don’t want to bother them.
    Yes, nurses and doctors are busy, but you have the right to have your pain controlled and they don’t want to see you in pain. Even if they seem too busy, it’s important to let your nurse or doctor know when your pain is not controlled.

Establishing trust with your health care team

Before discussing the details of pain control, it is important to understand that having trust in your health care team is essential for good pain management. To establish this trust, you need those around you, especially your health care team, to believe that your pain is what you say it is. This is the key that will allow you and your health care team to work together to help you deal with the pain.

Also, it is very helpful to get an explanation for the pain – what is causing it and why it is occurring. The unknown pain always hurts more than the known pain. Indeed, knowing the source of the pain is one of the first steps to being able to control it.

Being able to talk about the pain will also help you to cope better: how it affects you and how you feel about what is causing it. As well, it is crucial to be able to discuss other issues in your life, either with the people around you or a member of your health care team. If you are worried about relationships, spiritual issues, your future health, finances, or other issues, your pain will be magnified.

Today there are many options available to adequately control pain, and pain control is something you can aim for. You may have to balance the level of pain control with certain medication side effects, but pain control should be your goal.

When Back Pain is a Spine Compression Fracture

The type of fracture in the spine that is typically caused by osteoporosis is generally referred to as a compression fracture.

A compression fracture is usually defined as a vertebral bone in the spine that has decreased at least 15 to 20% in height due to fracture.

Watch: Spinal Compression Fracture Video

These compression fractures can occur in vertebrae anywhere in the spine, but they tend to occur most commonly in the upper back (thoracic spine), particularly in the lower vertebrae of that section of the spine (e.g. T10, T11, T12). They rarely occur above the T7 level of the spine. They often occur in the upper lumbar segments as well, such as L1.

This article provides in-depth information on vertebral compression fractures, including symptoms, diagnosis, and treatments.

Types of Fracture

A spinal fracture due to osteoporosis (weak bones) is commonly referred to as a compression fracture, but can also be called a vertebral fractureosteoporotic fracture, or wedge fracture.

The term “wedge fracture” is used because the fracture usually occurs in the front of the vertebra, collapsing the bone in the front of the spine and leaving the back of the same bone unchanged. This process results in a wedge-shaped vertebra. A wedge compression fracture is generally a mechanically stable fracture pattern.

While wedge fractures are the most common type of compression fracture, there are other types as well, such as:

  • Crush fracture. If the entire bone breaks, rather than just the front of the vertebra, it may be called a crush fracture.
  • Burst fracture. This type of fracture involves some loss of the height in both the front and back walls of the vertebral body (rather than just the front of the vertebra). Making this distinction is important because burst fractures can be unstable and result in progressive deformity or neurologic compromise.

Compression Fracture Symptoms

Vertebral fractures are usually followed by acute back pain, and may lead to chronic pain, deformity (thoracic kyphosis, commonly referred to as a dowager’s hump), loss of height, crowding of internal organs, and loss of muscle and aerobic conditioning due to lack of activity and exercise.

A combination of the above problems from vertebral fractures can also lead to changes in the individual’s self-image, which in turn can adversely affect self-esteem and ability to carry on the activities of daily living.

Because the majority of damage is limited to the front of the vertebral column, the fracture is usually stable and rarely associated with any nerve or spinal cord damage.

Spinal Fractures are Common

Spinal compression fractures that occur as a result of osteoporosis are actually quite common, occurring in approximately 700,000 people in the U.S. each year.1,

Osteoporosis is especially common in postmenopausal women. In fact, it is estimated that approximately 25% of all postmenopausal women in the United States have had a vertebral compression fracture.3

While osteoporosis is far more prevalent in women – approximately four times as many women have low bone mass or osteoporosis as men – it still occurs in men. As many as 25% of men over age 50 will suffer a bone fracture (e.g. hip or spine) due to osteoporosis.4

  • The problem is that the fracture is not always recognized or accurately diagnosed – instead, the patient’s pain is often just thought of as general back pain, such as from a muscle strain or other soft tissue injury, or as a common part of aging. As a result, approximately two thirds of the vertebral fractures that occur each year are not diagnosed and therefore not treated.

Treatment Options for Neuropathic Pain

Treatment Options for Neuropathic Pain

Currently there is no proven treatment to prevent or cure neuropathic pain (neuropathy or nerve pain). Instead, the primary goals of treatment are to reduce the pain as much as possible, balance the negative side effects of the treatment, and help patients manage any unresolved pain.

It is thought that early identification and treatment of intractable, chronic pain can help in effectively treating the pain. Once neuropathic pain is well established, however, it tends to become more difficult to successfully manage and more aggressive treatments may be required.

Back Pain and Neuropathy

Treatment of nerve pain related to the back or spine has traditionally been through a combination of medications and nerve blocks, and may include implantable systems. In addition, physical therapy, transcutaneous electrical nerve stimulation (TENS) and/or psychological therapy and occupational therapy for coping with the pain may be effective.

Because of the complex nature of neuropathic pain, a multi-disciplinary, integrated approach to managing the pain is often useful. For example, a comprehensive pain management and rehabilitation program back pain patients with chronic, neuropathic pain might include working with:

  • A spine specialist or pain management specialist, such as a spine surgeon, anesthesiologist, physiatrist, or neurologist, for medical management of the pain
  • A physical therapist or occupational therapist to assist with physical rehabilitation, exercise and overall conditioning
  • A psychologist who specializes in pain management to develop techniques for managing the pain and alleviate associated symptoms of depression, sleeplessness, etc.

Types of Medications for Neuropathic Pain

The three types of medications most commonly prescribed for nerve pain include:

  • Antidepressants or tricyclic antidepressants (TCA’s), such as Amitriptyline and Nortriptiline. The newer selective serotonin reuptake inhibitors (SSRI) antidepressant medications (such as Prozac) are not considered as effective for this condition as tricyclic antidepressants.
  • Anticonvulsants (also called neuroleptic medications) such as carbamazepine, felbamate, valproic acid, clonazepam, and phenytoin. A newer drug, gabapentin (Neurontin), is also considered effective and is generally well tolerated by most patients
  • Local anesthetics, such as intravenous application of lidocaine, tocainide or mexiletine can often provide relief

In This Article:

Antidepressants (TCA’s) and anticonvulsants are typically the first line of treatment, and the combination of the two medications is thought to be particularly effective. Frequently, a combination of antidepressants, anticonvulsants and local anesthetics may be prescribed.

Additionally, topical capsaicin (pepper creams) can be applied to the skin for pain relief, although it may take multiple daily applications for several weeks before it is effective.

Generally, most studies have shown that opioid analgesics (such as morphine) and NSAIDs (such as ibuprofen, Cox-2 inhibitors) are not effective in alleviating most types of neuropathic pain. However, for different patients and different forms of neuropathic pain, these medications may be of value. Relatively high doses of opioids may be required to be effective.

Spinal Cord Injury Treatments and drugs

Spinal Cord Injury Treatments and drugs

Unfortunately, there’s no way to reverse damage to the spinal cord. But researchers are continually working on new treatments, including prostheses and medications that may promote nerve cell regeneration or improve the function of the nerves that remain after a spinal cord injury.

In the meantime, spinal cord injury treatment focuses on preventing further injury and empowering people with a spinal cord injury to return to an active and productive life.

Emergency actions

Urgent medical attention is critical to minimize the effects of any head or neck trauma. That’s why treatment for a spinal cord injury often begins at the scene of the accident.

Emergency personnel typically immobilize the spine as gently and quickly as possible using a rigid neck collar and a rigid carrying board, which they’ll use to transport you to the hospital.

Early (acute) stages of treatment

In the emergency room, doctors focus on:

  • Maintaining your ability to breathe
  • Preventing shock
  • Immobilizing your neck to prevent further spinal cord damage
  • Avoiding possible complications, such as stool or urine retention, respiratory or cardiovascular difficulty and formation of deep vein blood clots in the extremities

You may be sedated so that you don’t move and sustain more damage while undergoing diagnostic tests for spinal cord injury.

If you do have a spinal cord injury, you’ll usually be admitted to the intensive care unit for treatment. You may even be transferred to a regional spine injury center that has a team of neurosurgeons, orthopedic surgeons, spinal cord medicine specialists, psychologists, nurses, therapists and social workers with expertise in spinal cord injury.

  • Medications. Intravenous (IV) methylprednisolone (A-Methapred, Solu-Medrol) is a treatment option for an acute spinal cord injury. If methylprednisolone is given within eight hours of injury, some people experience mild improvement.It appears to work by reducing damage to nerve cells and decreasing inflammation near the site of injury. However, it’s not a cure for a spinal cord injury.
  • Immobilization. You may need traction to stabilize your spine, to bring the spine into proper alignment or both. In some cases, a rigid neck collar may work. A special bed also may help immobilize your body.
  • Surgery. Often surgery is necessary to remove fragments of bones, foreign objects, herniated disks or fractured vertebrae that appear to be compressing the spine. Surgery may also be needed to stabilize the spine to prevent future pain or deformity.
  • Experimental treatments. Scientists are trying to figure out ways to stop cell death, control inflammation and promote nerve regeneration. Ask your doctor about the availability of such treatments.

Ongoing care

After the initial injury or disease stabilizes, doctors turn their attention to preventing secondary problems that may arise, such as deconditioning, muscle contractures, pressure ulcers, bowel and bladder issues, respiratory infections and blood clots.

The length of your hospitalization depends on your condition and the medical issues you’re facing. Once you’re well enough to participate in therapies and treatment, you may transfer to a rehabilitation facility.

Rehabilitation

Rehabilitation team members will begin to work with you while you’re in the early stages of recovery. Your team may include a physical therapist, occupational therapist, rehabilitation nurse, rehabilitation psychologist, social worker, dietitian, recreation therapist and a doctor who specializes in physical medicine (physiatrist) or spinal cord injuries.

During the initial stages of rehabilitation, therapists usually emphasize maintenance and strengthening of existing muscle function, redeveloping fine motor skills and learning adaptive techniques to accomplish day-to-day tasks.

You’ll be educated on the effects of a spinal cord injury and how to prevent complications, and you’ll be given advice on rebuilding your life and increasing your quality of life.

You’ll be taught many new skills, and you’ll use equipment and technology that can help you live on your own as much as possible. You’ll be encouraged to resume your favorite hobbies, participate in social and fitness activities and return to school or the workplace.

Medications

Medications may be used to manage some of the effects of spinal cord injury. These include medications to control pain and muscle spasticity, as well as medications that can improve bladder control, bowel control and sexual functioning.

New technologies

Inventive medical devices can help people with a spinal cord injury become more independent and more mobile. Some devices may also restore function. These include:

  • Modern wheelchairs. Improved, lighter weight wheelchairs are making people with a spinal cord injury more mobile and more comfortable. For some, an electric wheelchair may be needed. Some wheelchairs can even climb stairs, travel over rough terrain and elevate a seated passenger to eye level to reach high places without help.
  • Computer adaptations. For someone with limited hand function, computers can be very powerful tools, but they’re difficult to operate. Computer adaptations range from simple to complex, such as key guards or voice recognition.
  • Electronic aids to daily living. Essentially any device that uses electricity can be controlled with an electronic aid to daily living (EADL). Devices can be turned on or off by switch or voice-controlled and computer-based remotes.
  • Electrical stimulation devices. These sophisticated devices use electrical stimulation to produce actions. They’re often called functional electrical stimulation (FES) systems, and they use electrical stimulators to control arm and leg muscles to allow people with a spinal cord injury to stand, walk, reach and grip.
  • Robotic gait training. This emerging technology is used for retraining walking ability after spinal cord injury.

Prognosis and recovery

Your doctor may not be able to give you a prognosis right away. Recovery, if it occurs, typically starts a week to six months after an injury. However, some people experience small improvements for up to one year or longer.

Epidural Steroid Injection

Epidural Steroid Injection

An Epidural Steroid Injection is a block that is most commonly used to decrease pain and inflammation. This treatment can be highly effective because it delivers the anti-inflammatory medication and pain relief directly to the source of the problem.

Epidural Steroid Injections are used to decrease the inflammation associated with a variety of spinal conditions, such as herniated disc, spinal stenosis, or degenerative disc disease, enabling the patient to pursue physical therapy/rehabilitation. While patients often experience a reduction in pain following an epidural steroid injection, there seems to be a better response when the injections are coupled with an organized therapeutic exercise program.

Before an Epidural Steroid Injection
An Epidural Steroid Injection usually takes between 15 and 30 minutes. The patient lies flat on an x-ray table on their abdomen. Prior to the epidural injection, the skin is numbed with lidocaine, which is similar to the Novocain that the dentist uses (a “local” anesthetic).

What to Expect During an Epidural Steroid Injection
An epidural steroid injection is generally administerd using the following process:

  • Using fluoroscopy (live x-ray) for guidance, the physician injects steroids into the epidural space — that area that lies between the inner surface of the bony vertebral column and the outer, sleeve-like covering (the dura) of the spinal cord. Sometimes a flushing solution (either lidocaine or normal saline) is also used to help “flush out” inflammatory proteins from the region that is believed to be the source of pain.
  • The Epidural Steroid Injection procedure is usually not uncomfortable; however, sedation is available for patient anxiety and comfort. Sedatives are rarely necessary. If a sedative is used, the patient will need to be monitored for a longer period following the injection.
  • The procedure takes about 30 minutes, plus approximately forty-five minutes recovery time.
  • Following the injection, the patient is usually monitored for 15 to 20 minutes before being discharged to go home. Patients are usually asked to rest on the day of the epidural steroid injection. Normal activities (those that were done the week prior to the epidural injection) may typically be resumed the following day.

Success Rates
An Epidural Steroid Injection is generally successful in relieving pain for approximately 50% of patients. If a patient does not experience any back pain or leg pain relief from the first epidural injection, further injections will probably not be beneficial. However, if there is some improvement in back pain or leg pain, one to two additional Epidural Steroid Injections may be recommended.

How Frequently Can Epidural Steroid Injections be Performed?
There is no definitive research to dictate the frequency of how often a patient should have Epidural Steroid Injections for low back pain and/or leg pain. In general, it is considered reasonable to perform up to three epidural injections within a six-month period.

Typically, Epidural Steroid Injections are done in two-week intervals. However, there is no general consensus in the medical community as to whether or not a series of three injections need always be performed. If one or two injections lessen the patient’s low back pain and/or leg pain, some physicians prefer to save the third epidural steroid injection for any potential recurrences of back pain later in the twelve-month period.

Potential Risks and Side Effects
As with all invasive medical procedures, there are potential risks associated with lumbar (lower back) Epidural Steroid Injections. Generally, however, there are few risks associated with epidural steroid injections and they tend to be rare. Risks may include:

  • Infection. Minor infections occur in 1% to 2% of all injections. Severe infections are rare.
  • Bleeding. Bleeding is a rare complication and is more common for patients with underlying bleeding disorders.
  • Nerve damage. While extremely rare, nerve damage can occur from direct trauma from the needle, or secondarily from infection or bleeding.
  • Dural puncture (“wet tap”). A dural puncture occurs in 0.05% of injections. It may cause a post-dural puncture headache (also called a spinal headache) that usually gets better within a few days. Although rare, a blood patch may be necessary to alleviate the headache.

Paralysis is not a risk since there is no spinal cord in the region of the epidural steroid injection.

In addition to risks from the injection, there are also potential side effects from the steroid medication. These side effects tend to be rare, though they become more common when steroids are taken daily for several months. These risks and side effects may include:

  • A transient decrease in immunity
  • High blood sugar
  • Stomach ulcers
  • Severe arthritis of the hips (avascular necrosis)
  • Cataracts
  • Transient flushing
  • Increased appetite

Who Should Avoid Epidural Steroid Injections?
Lumbar Epidural Steroid Injections should not be performed on patients who:

  • Have a local or systemic bacterial infection
  • Are pregnant (if fluoroscopy is used)
  • Have bleeding problems
  • May be suffering from a tumor or infection (if suspected, an MRI scan should be done prior to the injection to rule out these conditions)
  • Are suspected of having allergies to the injected solution, uncontrolled medical problems (such as congestive heart failure and diabetes)
  • Are taking aspirin or other antiplatelet drugs/blood thinners (epidural steroid injections can be given once these medications have been stopped; however, patients need to consult with their physician before discontinuing them)

SpineAssist: Robotic Guidance System for Assisting in Spine Surgery

First robotic assistance device available for spine surgery

The first robotic surgical device to be approved by the FDA for spine surgery is in use in a few hospitals around the world. Surgeons at the Texas Back Institute, and 24 other hospitals internationally, are now performing spine surgery with the assistance of robotic guidance. The SpineAssist device is the only surgical robot designed to operate on the spine, although it is expected to also be approved for brain surgery.

This surgical device was developed by doctors from the Texas Back Institute and Technion University in Haifa, Israel. Twenty-five hospitals are currently using the device, three in the United States along with others in Israel, Germany, Switzerland and Russia.

The SpineAssist device was designed with the goal of increasing precision during surgery while reducing radiation exposure and time of the surgery. These surgical enhancements should bring higher success rates for surgery and less risk for complications. The device is being used for surgeries where implants are attached to the spine (e.g. spinal fusion, correcting scoliosis).

A goal of the device is to reduce the number of CT scans that are needed during surgery. During normal surgeries involving implants, CT scans are used to guide and confirm the location of each implant. With the SpineAssist, implant guidance and locations are known, so CT scans are less necessary. Aprevious study of radiation used during surgery showed ninety-eight percent reduction in radiation used during surgery from CT scans with the SpineAssist.

The other finding from that study was that the robotic device was more accurate in placing implants than surgeons making the placement using freehand techniques. Correct placement has a significant effect on successful outcome rates. The device guides the placement of implants and the surgeon places and attaches them to the spine manually.

The final goal of the SpineAssist device is to allow surgeons to practice and plan their surgery with in a 3D model. The model is based on the initial CT scan and allowing the surgeons to practice the procedure is intended to reduce surgery times, especially for longer, more complicated procedures.

Robotic technology has become commonplace as a surgical aide in many fields and now is available for spinal surgery, with more hospitals acquiring this equipment each month.

FDA Approves New Magnet Device to Treat Migraines

The U.S. Food and Drug Administration has approved the first device aimed at easing the pain of migraines preceded by aura — sensory disturbances that occur just before an attack.

The Cerena Transcranial Magnetic Stimulator would be obtained through prescription, the FDA said in a statement released Friday. Patients use both hands to hold the device against the back of their head and press a button so that the device can release a pulse of magnetic energy. This pulse stimulates the brain‘s occipital cortex, which may stop or ease migraine pain.

“Millions of people suffer from migraines, and this new device represents a new treatment option for some patients,” Christy Foreman, director of the Office of Device Evaluation in the FDA’s Center for Devices and Radiological Health, said in the statement.

The agency’s approval is based on a trial involving 201 patients who had suffered moderate-to-strong migraine with aura. One hundred and thirteen of the patients tried treating their migraines while an attack was in progress, and it was the testimony of this group that led to the approval of the new device, the FDA said.

More than a third (38 percent) of people using the stimulator said they were pain-free two hours later, compared to 17 percent of patients who did not use the device. A full day after the onset of migraine, nearly 34 percent of device users said they were pain-free, compared to 10 percent of people who hadn’t used the device.

Two experts welcomed the news of the approval.

“The Cerena TMS is another tool in the battle to relieve migraines,” said Dr. Mark Green, director of Headache and Pain Management at the Mount Sinai Medical Center in New York City. “Experience with TMS over the past few years have shown that these agents have the potential to reduce the pain of an attack without the use of medications, or in addition to medical treatment.”

Dr. Noah Rosen is director of the Headache Center at North Shore-LIJ’s Cushing Neuroscience Institute, in Manhasset NY. He said that, “although only 20 percent of migraneurs suffer from an aura associated with their headaches, they suffer significantly. Although this device is unwieldy, it may be a preferred choice by those who don’t want [drug] treatment.”

Side effects from the device were rare, the FDA said, but included “single reports of sinusitisaphasia (inability to speak or understand language) and vertigo.”

The new device is approved only for use by those aged 18 or older, and should not be used by people with suspected or diagnosed epilepsy or a family history of seizures. It should also not be used by anyone with any metal device implanted in the head, neck or upper body, or by people with “an active implanted medical device such as a pacemaker or deep brain stimulator,” the FDA said.

The stimulator, manufactured by eNeura Therapeutics of Sunnyvale, Calif., is not meant to be used more than once every 24 hours, the FDA added. It has also not been tested to see if it is effective against other symptoms of migraine such as nausea or sensitivities to light or sound.

Green called that last point “disappointing,” and added that “the other concern is whether insurance carriers will make the product available [to patients].”

Treating Chronic Pain With Meditation

Sarah Kehoe tried Aleve for her back pain. She tried stretching. She tried yoga. She tried forgetting about it. She tried pain patches. She tried acupuncture. A shot of painkillers into her back. Prescription anti-inflammatory pain patches. Opiates. Surgery. Physical therapy. Heat and compresses. Ignoring it again. Steroids. More opiates. Acupuncture again. She couldn’t sit, stand up straight, lie down on her back. She was weak, had lost muscle tone. She fainted on the subway. Sarah Kehoe, an otherwise healthy 36-year-old woman, a former high school and college athlete, a yogi of 10 years, was falling apart.

Sometime during the summer of 2011, Kehoe doesn’t know exactly when, a disc in her back herniated. After her surgery that September, pain seized hold of her again in the winter: the surgeon said the disc had reherniated slightly. Neither he nor Kehoe wanted to do surgery again, leaving Kehoe to search for other pain management options. Her brother had recently completed a meditation course to treat his depression and bought her a course for Christmas.

Chronic pain prevalence is estimated at around 15 percent of American adults. In early January 2012, Kehoe stood in the back corner of a barre studio on 29th Street in Manhattan. She and the one other class member listened quietly, each holding a white flower, while their instructor Emily Fletcher sang tranquilly in Sanskrit to begin the initiation ceremony. A ribbon of perfume danced gently off the end of an incense stick in the dim, candlelit room. Peace settled over the studio quickly, despite the calls of actors rehearsing next door bursting through the wall. Kehoe was hinging her last hope on the mantra she was given while the instructor and the other student closed their eyes. Silence swelled in the room and the meditation began.

* * *

Millions of Americans live with chronic pain. The Medical Expenditure Panel Survey, conducted in 2008, approximated 100 million adults are affected by pain, including joint pain and arthritis. Other studies, discounting joint pain and arthritis, estimate chronic pain prevalence at around 15 percent of American adults.

Persistent pain is not only life-altering for the patient, (causing missed worked days or early retirement, traumatic experiences, discomfort, and lack of sleep), but it is extremely costly to the nation. And at this moment, the U.S. has turned its eyes to healthcare cost and management. One article by Darrell Gaskin in The Journal of Pain estimated persistent pain to cost from $560 to $635 billion annually, far exceeding the price of other costly diagnoses such as cardiovascular disease, injury, and cancer. These costs arise from medical expenditures for the pain, as well as for other conditions complicated by pain, and a hindering of the patient’s ability to work or function.

Aside from being costly, pain is difficult to manage. Narcotics are the mainstay for treating pain. Narcotics, also known as opiates, are a class of drug that affects the brain and helps reduce pain, while also producing euphoria. Oxycodone and morphine are both narcotics, as is heroin. While a number of specialists advocate for opiate use for intractable pain, and a growing number of physicians dole out narcotic prescriptions, guidelines for safe prescribing have conflicting recommendations.

With such a large number of patients with chronic pain, and such a large number of narcotics being prescribed, prescription drug abuse is rampant. (So much so that in April 2011 President Obama released a multi-agency plan aimed at reducing the “epidemic” of prescription drug abuse.) Studies show that hydrocodone and oxycodone are by far the most abused prescription drugs in the country.

While narcotics can help patients considerably, many patients on opiates whom I have worked with feel they can’t function as well. They develop a drug high, have cloudy thought processes, and while they do not feel the pain as strongly (many still have pain despite taking drugs), they are not at a their baseline functioning level.

Chronic pain is not the same as the pain you feel from an injury. That’s acute pain—the sensing of tissue damage by nerves. Your body gets injured and you hurt. Chronic pain often, though not always, begins with an injury or tissue damage, but is perpetuated, usually by other factors, long after a reasonable time has passed for the injury to heal. Data have shown that an accurate diagnosis can only be established in approximately one-third of patients with low back pain. The relentless nature of chronic pain suggests that stress, environmental, and emotional effects likely overlay the original tissue damage in an injury, adding to the intensity and tenacity of the pain.

Mental processes can alter sensory phenomena, including pain. This is how war wounds can go unnoticed until after battle, athletes can continue to play with debilitating injuries, or minor traumas can lead to incapacitating pain. As knowledge of the nervous system has expanded and technology allowing scientists to visualize the nervous system has advanced, the last five to 10 years have seen a dramatic increase in the amount of studies focusing on how meditation works.

In hundreds of studies conducted over the past decade, researchers have examined meditation’s effects on people, such as attention regulation, awareness of the body, depression, post-traumatic stress disorder, and addiction. Scientists have also studied the use of meditation as a treatment for pain. In these studies, meditation has been shown to help pain, sometimes significantly, though not cure it.

In research on meditation and pain, scientists have asked two questions: “Does meditation help?” and “How does meditation help?” The first question proved much simpler to answer. A Wake Forest University study conducted by Fadel Zeidan in April 2011 took 15 healthy volunteers and performed MRI scans of their brains while inducing pain. In the four days that followed, a certified instructor taught the subjects mindfulness meditation (in which the pupil is taught to focus on a sense, often his or her breath, while accepting transient thoughts). On the fifth day, the researchers scanned the volunteers again, once while not meditating, and another time while meditating, with pain induced during both sessions. The study showed an approximately 40 percent reduction in pain intensity ratings during meditation when compared with non-meditation.

The study discovered that by activating and reinforcing some areas of the brain used in pain processing, meditation has the overall effect of helping to reduce pain intensity in patients. Other theories on how meditation helps pain exist, including that it decreases stress, which in turn decreases pain. Zeidan explained that meditation has known to be helpful for a while, but he has shown through this study and another conducted in 2010 that it takes much less time to see results than previously thought.

“It worked for beginners,” he said excitedly. It seems a patient does not need to be a zen master of 10 years to reap the rewards of the practice.

* * *

Back in the summer of 2011 when Sarah Kehoe’s pain started, the event that pushed her over the edge and into an emergency room was a yoga session. While positioned in a twist, her instructor came over and gently pressed on her, trying to help Kehoe reach her maximum stretch. Instead, the slight push released the full potential of Kehoe’s pain. Overwhelmed, she left the class and went home. There, the pain began to creep down Kehoe’s left buttocks. After a quick shower, the tightness turned to spasming and every muscle felt as if it was severely contracting. A stabbing, burning pain shot down her left leg from her lower back, and left her on her floor in the only position in which she felt she could breathe—on her hands and knees.

There are at least 12 disorders, such as phantom limb pain or atypical facial pain, where pain occurs in the absence of tissue damage. “At this point it was still something I thought would go away,” she says. “So I went to the acupuncturist. I walked in hunched. It was crowded. I told the check-in girl I was desperate and she said I could wait. It hurt so bad I had to lay down in the waiting room. The check in girl looked so scared. It made me realize how bad it was, so we left.”

Kehoe’s fiancé drove her to the emergency room. Her doctor, after asking a few questions, told her he originally thought it was sciatica, a disorder where one of the five spinal nerves that gives rise to the sciatic nerve is compressed, thereby causing shooting, electric pains in the legs, buttocks, and lower back. But he changed his mind and now thought she had a muscle strain. He gave her a shot of painkillers into her back, a prescription for opiates, and a referral for the physical therapist.

Two days after her emergency room visit, Kehoe went to an orthopedic surgeon. He told her he thought it was piriformis syndrome, which is similar to sciatica. To prove his hypothesis he ordered an MRI. The painkillers prescribed in the ER did little, and by mid-September, Kehoe could no longer sit or lie down. She tried physical therapy but thought it was a waste of time: At each session, she says, the therapist would apply heat to the area, and that was all. Kehoe slept only a couple hours each night these weeks, and only when heavily drugged.

After the results of the first MRI came back incomplete, her orthopedic surgeon ordered a second. Then he called her with the results: a very serious herniated disc. She needed to see a spine surgeon as soon as possible.

The day she went to the surgeon, she could hardly walk into his office. She rarely slept anymore. Due to the severity of the herniated disc, the surgeon told her, he recommended doing the surgery as soon as possible. Kehoe, scared and willing to do anything to ease her pain, had back surgery the next day. The surgeon removed the part of the disc that had herniated.

“Pain relief was pretty much instant,” she said. “I started walking the next day.” She wore a brace for a month, and gradually built up her endurance to walk. Where her pain had once felt like a 10 on a 1 to 10 scale, she now described it as a two or three. Unfortunately, the improvement didn’t last.

Near Thanksgiving it worsened. Her job as a freelance photographer overwhelmed her. She fought with her family. The stress in her life mounted. The pain followed suit. While in Los Angeles, visiting her family, her condition declined further. In order to make it home, she had to take painkillers on the plane. Back in New York, she began to take oxycodone, the only opiate that didn’t make her feel nauseated. She started with only half a pill as needed. But she slowly increased the dosage throughout the month. She started to feel that she couldn’t function without it. A vegan who rarely drank or took any form of medication, Kehoe hated that she was taking an opiate. Her surgeon did another MRI, and found that the disc had re-herniated slightly. He did not want to do another surgery right away and advised her to keep an eye on it.

In mid-December, while on her way to see an “energetic healer” in another attempt at treating her pain, Kehoe began to feel lightheaded on the subway. Hot and flushed, she removed her jacket and scarf and fainted suddenly, falling to. She awoke frightened soon after. Kehoe says she had never been a melodramatic person, had never sought attention or let illness control her, but once again felt that she was losing control of herself. She called the surgeon’s nurse who said the oxycodone would not have made her faint.

Her brother had tried meditation and found it helpful, and gave her the class for Christmas. She started in January hoping that something would finally work.

According to Dr. John D. Loeser, a neurologic surgeon and pain expert at the University of Washington, “Pain is a very complex phenomenon that involves biological things, psychological things, and sociological or environmental things.”

Acute pain is primarily biological. The body contains many types of nerves: afferent nerves, which conduct information from the senses to the central nervous system; efferent nerves, which conduct movement information from the central nervous system to the muscles; spinal nerves; and cranial nerves. Since pain is part of the sensory perception, it travels along the afferent nerves from the body to the brain. The specific nerves for pain and temperature conduct information slowly. Thus, when a person touches a burning stone, it takes a fraction of a second to move his or her finger, and a fraction of a second more for it to hurt.

This explanation describes pain at its most basic, tangible, straightforward level. Pain is when something injures body tissue, and the body tells this to the brain. This model for acute pain is called nociception.

“Tissue damage, or the nociception, normally leads to pain, but pain always has a sensory component: where it is, what it feels like. It makes you feel bad,” Loeser said. What physicians respond to, he explained, is the behaviors of a patient. A person comes into the clinic and expresses and shows how bad he suffers from the pain he feels. The doctor cannot see or measure the pain and suffering. This scenario explains Loeser’s model of pain, which he conceived and wrote about in 1982.

The complexity of pain lies in the fact that physical stimuli do not reliably lead to specific responses, Loeser said in his article “What Is Chronic Pain?” Whole pain disorders, such as fibromyalgia, about which the medical community knows very little, may arise without any tissue injury at all. There are at least 12 disorders, such as phantom limb pain or atypical facial pain, where pain occurs in the absence of tissue damage.

For Dr. Nomita Sonty, a psychologist who works with pain patients at Columbia University, Loeser’s model demonstrates the individuality of pain.

“Who I am then starts to affect the perception of pain,” she explained. “As soon as I perceive it, I then appraise it.” The patient will then act on his or her appraisal appropriately. Who we are determines how we react when we have pain. Sonty does not use meditation specifically in her practice; instead, she uses visualization and relaxation as a means to give patients control over their pain.

In her most dramatic example of her technique’s success, a paraplegic patient came to visit her at the National Rehabilitation Hospital in Washington, DC. After being paralyzed by an accidental spinal cord injury during surgery, he suffered horrible pain in his lower back so bad he had to lay down in the car as his wife drove him to his appointment. When he arrived, Sonty put him on a bed in the room, and placed electrodes on his back to measure the electrical activity in his muscles. The higher the readings, the more activity in the muscles, meaning the more strained they were. Relaxed muscles have a baseline reading of two to three mV, she said.

Sonty told her patient to visualize an image of his pain. The man pictured his surgeon holding a knife and stabbing it into his back over and over. The electrodes displayed more than 150mV. She then told him to picture a way for that knife to be removed. He envisioned an ethereal hand—perhaps that of an angel—pulling the hand with the knife back, slowly pulling the knife out of the skin. As he pictured that, the EMG readings continued to drop. When the knife was completely out of his back, the levels on the screen were below 10mV. On the ride home, the patient was able to sit up without any pain. It was an extreme case for Sonty, but she says it showed her the power our brain can have over our body, and our pain.

“Meditation teaches patients how to react to the pain. People are less inclined to have the ‘Ouch’ reaction, and are able to control their emotional reaction to pain.” Meditation has long been thought to be a means to harness this power. Between the 1930s and 1950s, accounts spilled across the pages of scientific journals relating the almost superhero powers of meditating monks. Reports surfaced of yogis in India voluntarily stopping their heartbeat, or enduring over lengthy periods of time in airtight pits or in extreme cold with no food.

In 1935, Thérèse Brosse, a French cardiologist investigating the field of meditation, reported that one of her subjects was able to stop his heart. As monitoring equipment improved, researchers could not find any meditator to replicate Brosse’s observation; however, they did find meditators who could slow their heart rate or respiration rate.

In 1972, Robert Keith Wallace and Herbert Benson published a groundbreaking study about the science behind meditation. The study, an investigation following 36 subjects ranging in meditation experience from one month to nine years, found that meditating reduced activity in the sympathetic nervous system, otherwise known as the fight or flight response. This response increases blood pressure and heart rate, constricts blood vessels, and increases metabolism. Many forms of stress, including such things as a busy schedule or exhaustion, induce these conditions. Sonty said she believes meditating reduces pain by reducing stress. When a person is upset and agitated, she explained, their nervous system is aroused. This arousal aggravates pain, which in turn becomes another stressor. By relaxing the sympathetic nerves, stress decreases, thereby decreasing pain.

However, studies conducted within the past 10 years have shown that meditation may be able to change the brain. Four areas of the brain involved in pain processing or emotional and behavioral regulation have been shown by Zeidan to have differing activity levels during and after meditation. Seven other separate researchers have shown these same areas to be affected by meditation in other studies as well.

The primary somatosensory cortex, anterior insula, anterior cingulate cortex, and prefrontal cortex all experienced altered levels of activation due to meditation. The primary somatosensory cortex is the area of the brain directly involved in pain processing. If a person cuts himself with a knife, this area of the brain figures out where the pain is and an initial pain level. The anterior insula, the brain region involved in perceiving and regulating the body (it participates in monitoring a person’s heart rate and blood pressure for example), appraises pain in the body. After the person’s hand has been cut by the knife, the insula judges how painful the resulting wound is.

The anterior cingulate cortex regulates a person’s emotional response to various stimuli. The person who cut his hand then feels angry, scared, or frustrated by the wound. Finally, the prefrontal cortex, the command center of the brain, takes information and guides thoughts and actions, including the inhibition of inappropriate thoughts, distractions, and feelings. After beginning to feel angry, the man with the cut on his hand acts out because of the wound.

Meditation has been shown to alter these four areas of the brain. By decreasing activity in the primary somatosensory cortex, the pain processing area, and increasing activity in the three other regions, pain is reduced. Consider from the previous example that the man who cut his hand meditates. Zeidan’s study showed a reduction in activity in the pain processing area of the brain, meaning the cut won’t hurt as much from the beginning. Meditation also increases activity in the pain and emotion regulating areas of the brain. After the man cuts his hand, he won’t judge the pain to be as strong, and he will regulate his emotional response to the pain as well as his behaviors. Zeidan’s study showed overlap between pain and meditation in all four regions of the brain. Other studies investigating the science of meditation, without its relationship to pain, had previously shown three of these four regions to be involved in meditation.

“Meditation teaches patients how to react to the pain,” Zeiden said. “People are less inclined to have the ‘Ouch’ reaction, then they are able to control the emotional reaction to pain.” He explained that the meditator learns while sitting on the cushion that pain is fleeting and doesn’t deserve such a strong emotional reaction.

For a patient with chronic pain, Loeser explained, meditation gives patients a way to take hold of their life again. Over the months, or even years, of undiagnosed pain, patients feel like they lose control of their life and body, like Sarah Kehoe did. Traditional medications no longer work.

Kehoe said she notices when she doesn’t meditate; it feels the same as abandoning an exercise routine. She has decided it will be something she continues for the rest of her life. “For most people, you can’t treat chronic pain with opiates,” Loeser said, “but primary care is dumping narcotics into people.”

Pain medications ignore the psychological and social aspects of pain. Meditation, however, can treat pain from every level of Loeser’s model of pain, suffering, and behaviors. It diminishes the anxiety surrounding pain, leaving the patient happier, and more in control.

* * *

For six weeks after her class in January 2012, Sarah Kehoe meditated twice daily for 20 minutes at a time. During this period, her pain fell from a 6 out of 10, to a 2 out of 10, to unnoticeable unless she actively thought about it. That is, until late that February.

One day, too many things went wrong. Her teacher chose another student for a project she wanted in class. Her fiancé came home drunk, unwilling to help her with her frustrations. Her friend visiting from France remained for eight days past her designated two-day stay. That day, Kehoe’s pain grew from zero to 5 out of 10. Over the following two weeks, Kehoe didn’t meditate regularly, and her pain stayed. However, she refused to take any drugs. Only after confronted with the possibility that the lingering pain could be linked to the absence of meditation did Kehoe begin to consider how much meditating had done for her pain up to this point.

Kehoe said she notices when she doesn’t meditate; it feels the same as abandoning an exercise routine. She has decided it will be something she continues for the rest of her life.

As far as the pain is concerned, Kehoe explained that she is convinced it will just go away with time. She says she’s sure of this because she felt it go away after a few months of consistent meditation. Perhaps, she said, it’s because meditating will help her forget about it. She often wonders if she lived in Colorado and life was manageable, whether it would all stop. Instead, she’s a freelance photographer in New York City, a life and career that is anything but mellow.

At the time the pain started, she was dealing with the death of her father two years earlier, a new engagement, and a heavy push to sign an agent for work. The stresses and the changes hung heavily on her, and she thought maybe they had finally caught up with her. After beginning to meditate, as her wedding approached and she dealt with those stresses, moved on from her father’s death, and as she settled in with her new agent, her back and leg felt better. Hopefully the pain will completely disappear but until then, and even after, Kehoe plans to meditate regularly. It makes her feel good.

From The Atlantic

Relief for arthritis, joint and muscle pain

Drug treatment for pain

Although there are risks of side-effects, the benefits of drug treatments generally outweigh the risks. Drug treatments include:

Painkillers

Types of painkillers (analgesics) include:

  • simple analgesics like paracetamol
  • more complex analgesics, which are chemically related to morphine (sometimes combined with paracetamol, e.g. co-codamol, co-dydramol)
  • tramadol, oxycodone, slow-release morphine, or patches containing fentanyl or buprenorphine.

Non-steroidal anti-inflammatory drugs (NSAIDs)

Types of NSAIDs include:

  • aspirin or ibuprofen tablets, which you can buy over the counter at chemists and supermarkets without a prescription
  • diclofenac, naproxen or indometacin tablets, which are available with a doctor’s prescription
  • gels or creams which can be applied to the painful joint (for example, ibuprofen, diclofenac)
  • a newer type of NSAID commonly called ‘coxibs’ (e.g. celecoxib), which are designed to control pain and inflammation.

Coxibs are less likely to cause indigestion and stomach ulcers sometimes linked with older NSAIDs.

Steroids

Steroids can be given as:

  • steroid tablets (usually prednisolone), which are often prescribed because nothing else works, as in polymyalgia rheumatica (PMR)
  • steroid injections either into the joint itself or into soft tissues around the joint.

Drugs for nerve pain and chronic pain syndromes

Drugs for nerve pains and chronic pain syndromes can include:

  • tricyclic antidepressants, e.g. amitriptyline or dosulepin, which are prescribed to be taken at night – these drugs act partly by improving sleep and partly by helping the brain to control sensations coming from the upper body and limbs
  • neuromodulatory drugs, e.g. gabapentin, carbamazepine and pregabalin, that act on the nervous system – these can help control some types of pain, especially when the pain is caused by nerve damage.

Nerve blocks and other injection techniques for pain

Injections to block pain by a direct action on a nerve or on the spinal nerve root are becoming more widely available. They usually combine a local anaesthetic with a steroid.

They’re not suitable for all types of pain, but they’re sometimes helpful for:

  • osteoarthritis of the small facet joints between the bones of the spine
  • compression of nerves in the lower spine.

Special scans such as magnetic resonance imaging (MRI) or computerised tomography (CT) are usually needed to decide the exact site for the injection. The specialist can then place the needle accurately by following an x-ray image, which is displayed on a screen.

These treatments are for symptom control and aren’t cures.

Other pain-relief treatments

Other pain-relief treatments and therapies include:

  • a heat pad, heated rice pad or a hot-water bottle
  • an ice pack or a cold-water compass
  • massage (with or without creams that create a sense of warmth)
  • rest and good quality sleep – disturbed or unrefreshing sleep can increase pain, so speak to your doctor if you have this problem.

These techniques are often helpful after an injury and for sudden flare-ups of arthritis or back pain.

Manual techniques

Physiotherapists, osteopaths and chiropractors may use a variety of different manual techniques, including:

  • manipulation and stretching
  • technologies such as ultrasound, laser or interferential treatment
  • exercise programmes to strengthen muscles and improve general fitness.

It’s important to go to a qualified practitioner, preferably with the guidance of your doctor.

In some conditions, for example back pain, the Alexander technique may also help. The Alexander technique teaches awareness of posture and relaxation to reduce muscle tension.

Transcutaneous electrical nerve stimulation (TENS)

TENS is a technique that uses small pulses of electricity to produce a tingling sensation. It aims to disrupt pain signals by reducing the sensitivity of the nerve endings in the spinal cord.

Some people find it very effective, especially when the pain is due to nerve damage.

It’s best to get advice from a physiotherapist on where to position the pads, the frequency and strength of the pulses and the length of treatment.

Acupuncture

Acupuncture is used by doctors and other practitioners, often with very good effect. Very fine needles are inserted into specific points in the body. It’s thought to work by diverting or changing painful sensations sent to the brain and by stimulating the body’s own pain-relieving hormones (endorphins and encephalins).

Psychological techniques and relaxation

Psychological techniques are often used in pain management clinics. Pain is never a purely physical phenomenon, and learning to think differently about pain and altering your behaviour can sometimes be helpful, especially with chronic pain.

Relaxation techniques are helpful in many conditions. They work both by relaxing tense and painful muscles and by relieving the anxiety that makes pain more difficult to bear.


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