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Study to Assess Hip Exercises as Treatment for Osteoarthritis in the Knee Joints Study to Assess Hip Exercises as Treatment for Osteoarthritis in the Knee Joints

Study to Assess Hip Exercises as Treatment for Osteoarthritis in the Knee Joints

 
ArthritisJul 16, 2009

Researchers at Rush University Medical Center are testing a novel regimen of hip-muscle exercises to decrease the load on the knee joints in patients with osteoarthritis. The goal is not only to relieve pain but also, possibly, to halt progression of the disease.

“Each time you take a step, a load, or force, is placed on the knee joints. How much load depends not just on your weight, but also on the way you walk and the alignment of your leg,” said Laura Thorp, PhD, assistant professor of anatomy and cell biology at Rush Medical College and principal investigator for the study. “If we can appropriately alter the gait patterns of patients with osteoarthritis, we can minimize the load and relieve pain.

“Ultimately, we’re hoping we can prevent the disease from advancing. No treatment currently exists that can stop osteoarthritis from progressing in the knees, other than joint replacement surgery.”

Osteoarthritis is the most common form of arthritis and a significant source of disability and impaired quality of life. A higher-than-normal load on the knees during walking is a hallmark of the disease, associated with both the severity of the osteoarthritis and its progression, according to Thorp.

Thorp is enrolling patients with mild to moderate osteoarthritis in their knees in a research study to determine the effectiveness of certain hip exercises in treating the disease. Study participants have their knees x-rayed and undergo an initial assessment in Rush’s Human Motion Laboratory to measure the load on their knee joints while walking. Participants then follow a specific regimen of hip exercises for four weeks under the direction of Charles Cranny, clinical manager of outpatient physical therapy.

The exercises focus on strengthening the hip abductor muscles, such as the gluteus medius, a broad, thick, radiating muscle that helps to stabilize the pelvis during ambulation. In patients with osteoarthritis in the knees, these muscles tend to be weak, causing the pelvis to tilt toward the side of the swing leg when walking, instead of remaining level with the ground, which increases the load on the knee joints. Strengthening these muscles helps the pelvis and the knee remain in better alignment, and thereby lessens the load.

After the four weeks of supervised physical therapy, participants are reassessed to determine whether the load on the knees has decreased, and whether the pain has subsided.

The trial continues for another four weeks, with patients exercising at home to determine whether the adjustments in gait can be maintained.

According to Thorp, exercise regimens to date have focused largely on strengthening the quadriceps and hamstring muscles, which stabilize the knee joint but likely do little to correct alignment with the rest of the leg or alter the load on the joint. .

Preliminary evidence in the present trial has already shown that a decrease in load is attained with hip-muscle exercises.

“By lessening the load on the knees, we can remove one of the major known risk factors for the progression of osteoarthritis,” Thorp said.

Rush University Medical Center includes a 674-bed (staffed) hospital; the Johnston R. Bowman Health Center; and Rush University (Rush Medical College, College of Nursing, College of Health Sciences and the Graduate College).

Rush’s Human Motion Laboratory has a complete three-dimensional motion measurement system consisting of a multi-camera optoelectronic device and a multi-component force plate for the measurement of foot-ground reaction force. The facility has been used in clinical trials sponsored by industry and the National Institutes of Health. The facility also provides information for planning surgical interventions and non-surgical treatments for patients with osteoarthritis.

Source: Rush University Medical Center

Provided by ArmMed Media

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