So I’ve got Whiplash; now what?

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Whiplash, or “Whiplash Associated Disorders” or WAD, is the result of a sudden “crack the whip” of the head on the neck due to a slip and fall, sports injury, a violent act, or most commonly, a motor vehicle collision (MVC), particularly a rear-end collision. In describing “what can I expect” after a whiplash injury, one thing is for certain, there are many faces of whiplash, meaning the degree of injury can range from none to catastrophic depending on many factors, some of which are difficult or impossible to identify or calculate. Let’s take a closer look!

Even though the good news is that most people injured in a car crash get better, 10% do not and go on to have chronic pain, of which about half have significant difficulty working and/or doing desired everyday activities. There is a “great debate” as to the way experts describe “chronic whiplash syndrome” (CWS) as well as how these cases should be managed. Some feel there is something PHYSICALLY wrong in the CWS patient, especially if severe neck or head pain persists for more than one year. There is some proof of this as Dr. Nikolai Bogduk from the University of Newcastle in Australia and colleagues have used selective nerve blocks to anesthetize specific joints in the neck to determine exactly where the pain is generated. The patient then has the option to have that nerve cauterized or burned and pain relief can be significant in many cases. Dr. Bogduk and his group admit that these CWS patients have more psychological symptoms, but they feel this is the result of pain, not the CAUSE.

On the other hand, experts such as Dr. Henry Berry from the University of Toronto report the EXACT OPPOSITE. He argues that it’s not JUST the physical injury that has to be dealt with but also the person’s “state of mind.” Dr. Berry states that when stepping back and looking at all the complaints or symptoms from a distance, “…you see these symptoms can be caused by life stress, the illness ‘role’ as a way of adjusting to life, psychiatric disorders, or even [made up by the patient].” Berry contends that it’s important to tell the patient their pain will go away soon, advises NO MORE THAN two weeks of physical therapy, and sends people back to work ASAP.

Oregon Health Sciences University School of Medicine’s Dr. Michael D. Freeman, whose expertise lay in epidemiology and forensic science, disagrees with Dr. Berry stating that the scientific literature clearly supports the physical injury concept and states, “…the idea that it is a psychological disturbance is a myth that has been perpetuated with absolutely no scientific basis at all.” Dr. Freeman states that 45% of people with chronic neck pain were injured in a motor vehicle crash (which includes three million of the six million of those injured in car crashes every year in the United States).

Here’s the “take home” to consider: 1) CWS occurs in about 10% of rear-end collisions; 2) Some doctors feel the pain is physically generated from specific nerves inside the neck joints; 3) Others argue it’s a combination of psychological factors and care should focus on preventing sufferers from becoming chronic patients.

Many studies report that chiropractic offers fast, cost-effective benefits for whiplash-injured patients with faster return to work times and higher levels of patient satisfaction.

We realize you have a choice in whom you consider for your health care provision and we sincerely appreciate your trust in choosing our service for those needs.  If you, a friend, or family member requires care for Whiplash, we would be honored to render our services.

Up Close & Personal With Headaches.

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Headaches are REALLY common! In fact, two out of three children will have a headache by the time they are fifteen years old, and more than 90% of adults will experience a headache at some point in their life. It appears safe to say that almost ALL of us will have firsthand knowledge of what a headache is like sooner or later!

Certain types of headaches run in families (due to genetics), and headaches can occur during different stages of life. Some have a consistent pattern, while others do not. To make this even more complicated, it’s not uncommon to have more than one type of headache at the same time!

Headaches can vary in frequency and intensity, as some people can have several headaches in one day that come and go, while others have multiple headaches per month or maybe only one or two a year. Headaches may be continuous and last for days or weeks and may or may not fluctuate in intensity.

For some, lying down in a dark, quiet room is a must. For others, life can continue on like normal. Headaches are a major reason for missed work or school days as well as for doctor visits. The “cost” of headaches is enormous—running into the billions of dollars per year in the United States (US) in both direct costs and productivity losses. Indirect costs such as the potential future costs in children with headaches who miss school and the associated interference with their academic progress are much more difficult to calculate.

There are MANY types of headaches, which are classified into types. With each type, there is a different cause or group of causes. For example, migraine headaches, which affect about 12% of the US population (both children and adults), are vascular in nature—where the blood vessels dilate or enlarge and irritate nerve-sensitive tissues inside the head. This usually results in throbbing, pulsating pain often on one side of the head and can include nausea and/or vomiting. Some migraine sufferers have an “aura” such as a flashing or bright light that occurs within 10-15 minutes prior to the onset while other migraine sufferers do not have an aura.

The tension-type headache is the most common type and as the name implies, is triggered by stress or some type of tension. The intensity ranges between mild and severe, usually on both sides of the head and often begin during adolescence and peak around age 30, affecting women slightly more than men. These can be episodic (come and go, ten to fifteen times a month, lasting 30 min. to several days) or chronic (more than fifteen times a month over a three-month period).

There are many other types of headaches that may be primary or secondary—when caused by an underlying illness or condition. The GOOD news is chiropractic care is often extremely helpful in managing headaches of all varieties and should be included in the healthcare team when management requires a multidisciplinary treatment approach.

Most of know someone who has been affected by headaches. If they are looking for help and information please feel free to contact us at 204-586-8424 or at info@aberdeenchiropractic.com.

Trigger points in the suboccipitals.

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The suboccipitals are a group or four muscles that attach to the transverse and spinous process of C1 and C2 and the occipital bone.

These muscles provide extension side bending and rotation movements between the occiput and C1 and C2. These muscles are often overloaded due to postural strain. A classic example being sitting in front of a computer all day.

When these muscles are overloaded trigger points can develop. Pain and symptoms of trigger points in the suboccipitals include head pain that penetrates into the skull but is difficult to localize.

Patients are likely to describe the pain as “all over” including the occiput, eye and forehead, but without any clarity. Trigger points in these muscles are often associated with tension head aches

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Brain injury after whiplash?

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In a 2010 study, researchers examined MRIs taken from 1,200 patients (600 whiplash and 600 non-whiplash neck pain patients) and noted that those who had sustained whiplash were more likely to have a brain injury than non-whiplash neck pain patients.

The specific type of brain injury found is a form of herniation called Chiari malformation, where the bottom part of the brain (the cerebellum) drops through the opening in the base of the skull called the foramen magnum. Their findings showed an alarming 23% of the whiplash cases studied had this anatomical abnormality.

Dr. Michael Freeman, Dr. Ezriel Kormel, and colleagues collaborated in this effort and evaluated the patients using MRI in both recumbent (laying down) AND upright positions. Interestingly, they found 5.7% and 5.3% of those in the non-whiplash neck pain group and 9.8% and 23.3% in the whiplash group had the Chiari malformation using the recumbent vs. upright MRI positions, respectfully.

Dr. Kormel stated, “This condition can be quite painful and endanger the patient’s health, with symptoms that may include headaches, neck pain, upper extremity numbness and tingling, and weakness. In a few cases, there can also be lower extremity weakness and brain dysfunction.” In a radio interview, he added the advice that ANYONE suffering from whiplash should see a healthcare provider immediately.

This study is important for a number of reasons. First, it revealed that there is often a more serious injury when whiplash occurs than what is initially found. Second, psychological findings like depression, anxiety, and difficulty coping with the decreased ability or inability to be productive at home or work may suggest the presence of an anatomical injury which simply has not yet been found. Third, MRI is frequently ONLY performed in a laying down position. This study didn’t find much difference between laying vs. weight-bearing MRI positions in the non-whiplash neck pain patients but not so in the whiplash neck pain group! In this group, the ability for MRI to detect Chiari malformation/brain injury more than doubled using weight-bearing MRI.

Expanding the last point, since one out of five whiplash patients had a brain injury that is more likely to be detected using a non-traditional upright MRI position, a “new” standard” for the use of MRI in the evaluation of the whiplash patient should be considered. This is especially important in those cases that are non-responsive to quality care or if their doctor had only ordered a recumbent MRI previously.

Doctors of all disciplines should be aware of this study and the need for a more thorough evaluation, especially when a whiplash patient is not responding as one might expect.

Trigger points in the sternocleidomastoid muscle. By Bryan Cobb RMT.

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The sternocleidomastoid muscle or “scm” is a strap like muscle located in the front of the neck. It originates on the manubrium of the sternum and the medial clavicle, and inserts on the mastoid process of the temporal bone( the lump or bone behind the ear). When working together the scm flexes the head and neck. The actions of one muscle working by itself is to rotate the face to the opposite side and lift it toward the ceiling.

Trigger points in this muscle usually form due to acute injury or to chronic postural stress. These trigger points can cause a wide variety of symptoms including pain felt in the cheek, temple, forehead, top of the head, and base of the skull. Trigger points in these muscles can also refer deep into the ear and cause postural dizziness.

I get dizzy when I have a headache. Should I worry?

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Dizziness, neck pain, and headaches are very common symptoms that may or may not occur at the same time. Though this interrelationship exists, this month’s article will focus primarily on dizziness, particularly related to dizziness that occurs after standing.

First, it is important to point out that it is VERY common to be light headed or dizzy when standing up too fast, which is typically referred to as orthostatic hypotension (OH). OH is frequently referred to as a benign symptom, but new information may challenge this thought.

Let’s review what happens. When we are lying down, our heart does not have to work as hard as when we are upright; therefore, our blood pressure (BP) is usually lower while we lay in bed. When standing up, blood initially pools in the legs until an increase in blood pressure brings oxygen to the brain. This either resolves or prevents dizziness.

Orthostatic hypotension is defined as a blood pressure drop of >20 mm Hg systolic (the upper number—heart at FULL contraction), 10 mm Hg diastolic (lower number—heart at FULL rest), or both. This typically occurs within seconds to a few minutes after rising to a standing position.

There are two types of OH—delayed OH (DOH) where the onset of symptoms are not immediate but occur within three minutes of standing and “full” OH, which is more serious and occurs immediately upon rising. According to a 2016 study published in the prestigious journal Neurology, researchers reviewed the medical records of 165 people who had undergone autonomic nervous system testing for dizziness. The subjects averaged 59 years of age, and 48 were diagnosed with DOH, 42 with full OH, and 75 subjects didn’t have either condition.

During a ten-year follow-up, 54% of the DOH group progressed to OH, of which 31% developed a degenerative brain condition such as Parkinson’s disease or dementia. Those with initial DOH who also had diabetes were more likely to develop full OH vs. those without diabetes.

The early death rate in this 165 patient group was 29% for those with DOH, 64% with full OH, vs. 9% for those with neither diagnosed condition. The authors point out that those initially diagnosed with DOH who did NOT progress into full OH were given treatment that may have improved their blood pressure.

The authors state that a premature death might be avoided by having DOH and OH diagnosed and properly managed as early as possible. They point out that a prospective study is needed since this study only looked back at medical records of subjects who had nervous system testing performed at a specialized center, and therefore, these findings may not apply to the general population.

The value of this study is that this is the FIRST time a study described OH (or DOH) as a potentially serious condition with recommendations NOT to take OH/DOH lightly or view it as a benign condition. Since doctors see this a lot, a closer evaluation of the patient is in order.

Whiplash and Your Posture

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Posture assessment is a key component of the chiropractic examination, and the posture of the head and neck is especially important for a patient recovering from a whiplash injury. Forward head carriage describes a state in which the head sits more forward on the shoulders than it should. In order for the muscles in the neck and shoulders to keep the head upright, they must work harder. This added strain can increase one’s risk for neck pain and headaches, which is why retraining posture is a key component to the management of neck pain and headaches in patients with or without a history of whiplash.

Forward head carriage also increases the distance between the back of the head and the headrest in the seated position, especially when the seat is reclined. In a rear-end collision, a gap greater than a half an inch between the head rest and the back of the head increases the probability of injury due to the greater distance the head can hyperextend as it rebounds backwards into the headrest.  This makes posture correction of forward head carriage an important aspect of treatment from both a preventative and curative perspective.

So this begs the question, can forward head carriage be corrected?  The simple answer is “yes!” One study evaluated the effects of a 16-week resistance and stretching program designed to address forward head posture and protracted shoulder positioning.

Researchers conducted the study in two separate secondary schools with 130 adolescents aged 15–17 years with forward head and protracted shoulder posture. The control group participated in a regular physical education (PE) program while the experimental group attended the same PE classes with the addition of specific exercises for posture correction. The research ream measured the teens’ shoulder head posture from the side using two different validated methods and tracked symptoms using a questionnaire. The results revealed a significant improvement in the shoulder and cervical angle in the experimental group that did not occur in the control group.

The conclusion of the study strongly supports that a 16-week resistance and stretching program is effective in decreasing forward head and protracted shoulder posture in adolescents.  This would suggest that a program such as this should be strongly considered in the regular curriculum of PE courses since this is such a common problem.

Doctors of chiropractic are trained to evaluate and manage forward head posture with shoulder protraction. This can prove beneficial in both the prevention as well as management of signs and symptoms associated with a whiplash injury.

What is Whiplash?

Up Trap Ext

Whiplash is an injury to the soft-tissues of the neck often referred to as a sprain or strain. Because there are a unique set of symptoms associated with whiplash, doctors and researchers commonly use the term “whiplash associated disorders” or WAD to describe the condition.

WAD commonly occurs as a result of a car crash, but it can also result from a slip and fall, sports injury, a personal injury (such as an assault), and other traumatic causes. The tissues commonly involved include muscle tendons (“strain”), ligaments and joint capsules (“sprains”), disk injuries (tears, herniation), as well as brain injury or concussion—even without hitting the head!

Symptoms vary widely but often include neck pain, stiffness, tender muscles and connective tissue (myofascial pain), headache, dizziness, sensations such as burning, prickly, tingling, numbness, muscle weakness, and referred pain to the shoulder blade, mid-back, arm, head, or face. If concussion occurs, additional symptoms include cognitive problems, concentration loss, poor memory, anxiety/depression, nervousness/irritability, sleep disturbance, fatigue, and more!

Whiplash associated disorders can be broken down into three categories: WAD I includes symptoms without any significant examination findings; WAD II includes loss of cervical range of motion and evidence of soft-tissue damage; and WAD III includes WAD II elements with neurological loss—altered motor and/or sensory functions. There is a WAD IV which includes fracture, but this is less common and often excluded.

Treatment for WAD includes everything from doing nothing to intensive management from multiple disciplines—chiropractic, primary care, physical therapy, clinical psychology, pain management, and specialty services such as neurology, orthopedics, and more. The goal of treatment is to restore normal function and activity participation, as well as symptom management.

The prognosis of WAD is generally good as many will recover without residual problems within days to weeks, with most people recovering around three months after the injury. Unfortunately, some are not so lucky and have continued neck pain, stiffness, headache, and some develop post-concussive syndrome. The latter can affect cognition, memory, vision, and other brain functions. Generally speaking, the higher the WAD category, the worse the prognosis, although each case MUST be managed by its own unique characteristics. If the injury includes neurological loss (muscle strength and/or sensory dysfunction like numbness, tingling, burning, pressure), the prognosis is often worse.

Chiropractic care for the WAD patient can include manipulation, mobilization, and home-based exercises, as well as the use of anti-inflammatory herbs (ginger, turmeric, proteolysis enzymes (bromelain, papain), devil’s claw, boswellia extract, rutin, bioflavonoid, vitamin D, coenzyme Q10, etc.) and dietary modifications aimed at reducing inflammation and promoting healing.

* 83% of those patients involved in an MVA will suffer whiplash injury and 50% will be symptomatic at 1 year.
* 90% of patients with neurologic signs at onset may be symptomatic at 1 year.
* 25- 80% of patients who suffer a whiplash injury will experience late-onset dizziness
* Clinicians should be observant for radiographic signs of instability, including interspinous widening, vertebral subluxation, vertebral compression fracture, and loss of cervical lordosis.
* Horizontal displacement of greater than 3.5 mm or angular displacement of more than 11 degrees on flexion/extension views suggests instability

Exercise of the Month!

One of our favourites in the office; Thoracic Rotation.

An easy exercise for your upper and mid-back. No equipment required! – (Post link to article and video on your blog or post video directly on your social media account.)”

  1. Begin on your hands and knees and shift back so that your buttock is on your heels.
  2. Place one hand behind your neck with your elbow pointing downward.
  3. Rotate your trunk to move your elbow towards your opposite knee.
  4. Rotate back, raising your elbow toward the ceiling.
  5. Repeat three sets of 10 repetitions on each side twice per day or as directed.

What is Whiplash? 

WRD 2

Whiplash is an injury to the soft-tissues of the neck often referred to as a sprain or strain. Because there are a unique set of symptoms associated with whiplash, doctors and researchers commonly use the term “whiplash associated disorders” or WAD to describe the condition.

WAD commonly occurs as a result of a car crash, but it can also result from a slip and fall, sports injury, a personal injury (such as an assault), and other traumatic causes. The tissues commonly involved include muscle tendons (“strain”), ligaments and joint capsules (“sprains”), disk injuries (tears, herniation), as well as brain injury or concussion—even without hitting the head!

Symptoms vary widely but often include neck pain, stiffness, tender muscles and connective tissue (myofascial pain), headache, dizziness, sensations such as burning, prickly, tingling, numbness, muscle weakness, and referred pain to the shoulder blade, mid-back, arm, head, or face. If concussion occurs, additional symptoms include cognitive problems, concentration loss, poor memory, anxiety/depression, nervousness/irritability, sleep disturbance, fatigue, and more!

Whiplash associated disorders can be broken down into three categories: WAD I includes symptoms without any significant examination findings; WAD II includes loss of cervical range of motion and evidence of soft-tissue damage; and WAD III includes WAD II elements with neurological loss—altered motor and/or sensory functions. There is a WAD IV which includes fracture, but this is less common and often excluded.

Treatment for WAD includes everything from doing nothing to intensive management from multiple disciplines—chiropractic, primary care, physical therapy, clinical psychology, pain management, and specialty services such as neurology, orthopedics, and more. The goal of treatment is to restore normal function and activity participation, as well as symptom management.

The prognosis of WAD is generally good as many will recover without residual problems within days to weeks, with most people recovering around three months after the injury. Unfortunately, some are not so lucky and have continued neck pain, stiffness, headache, and some develop post-concussive syndrome. The latter can affect cognition, memory, vision, and other brain functions. Generally speaking, the higher the WAD category, the worse the prognosis, although each case MUST be managed by its own unique characteristics. If the injury includes neurological loss (muscle strength and/or sensory dysfunction like numbness, tingling, burning, pressure), the prognosis is often worse.

Chiropractic care for the WAD patient can include manipulation, mobilization, and home-based exercises, as well as the use of anti-inflammatory herbs (ginger, turmeric, proteolysis enzymes (bromelain, papain), devil’s claw, boswellia extract, rutin, bioflavonoid, vitamin D, coenzyme Q10, etc.) and dietary modifications aimed at reducing inflammation and promoting healing.

* 83% of those patients involved in an MVA will suffer whiplash injury and 50% will be symptomatic at 1 year.
* 90% of patients with neurologic signs at onset may be symptomatic at 1 year.
* 25- 80% of patients who suffer a whiplash injury will experience late-onset dizziness
* Clinicians should be observant for radiographic signs of instability, including interspinous widening, vertebral subluxation, vertebral compression fracture, and loss of cervical lordosis.
* Horizontal displacement of greater than 3.5 mm or angular displacement of more than 11 degrees on flexion/extension views suggests instability.