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    • Arthritis
    • Elbow
    • Joint Disorders

    Elbow Arthritis

    Elbow arthritis is a common cause of elbow pain and stiffness, but is less common than arthritis in other joints of the body. Arthritis is the loss of the normal protective cartilage that covers the bones. When this cartilage or “padding” of the bone breaks down and is lost, areas of raw bone become exposed. When large areas of bone are exposed, they grind against each other with standing and walking. This is “bone on bone” arthritis and is usually painful.

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    • Hand & Wrist

    Flexor Tendon Injuries

    Anatomy Tendons are tissues that connect muscles to bone. When muscles contract, tendons pull on bones, causing parts of the body to move. Long tendons extend from muscles in the […]

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    • Arthritis
    • Hip
    • Joint Disorders
    • Joint Replacement & Revision

    Hip Arthritis

    Hip arthritis is a leading cause of hip pain and stiffness. Arthritis is the loss of the normal protective cartilage that covers the bones. When this cartilage or “padding” of the bone breaks down and is lost, areas of raw bone become exposed. When large areas of bone are exposed, they grind against each other with standing and walking. This is “bone on bone” arthritis and is usually painful.

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    • Arthritis
    • Joint Disorders
    • Knee
    • Physical Medicine & Rehabilitation (PM&R)

    Knee Arthritis

    The knee is one of the most commonly involved joints with arthritis. Arthritis is the loss of the normal protective cartilage that covers the bones. When this cartilage or “padding” of the bone breaks down and is lost, areas of raw bone become exposed and grind against each other with standing and walking. This is “bone on bone” arthritis and is usually painful.

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    • Joint Disorders
    • Knee
    • Sports Medicine

    Meniscal Tears

    Meniscal tears are among the most common knee injuries. When tearing a meniscus, you may hear a “popping” noise. Most people can still walk on the injured knee, and athletes often continue to play immediately following a tear. However, without proper treatment, a piece of meniscus may come loose and drift into the joint, worsening symptoms.

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    • Foot & Ankle
    • Hand & Wrist
    • Sports Medicine

    Nerve Injuries

    Injury to a nerve can stop signals to and from the brain, resulting in a loss of feeling in the injured area and causing the muscles to stop working properly. Nerves are fragile and can be damaged by pressure, stretching, or cutting.

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    • Fractures, Sprains & Strains
    • Neck and Back (Spine)
    • Physical Medicine & Rehabilitation (PM&R)

    Osteoporosis & Spinal Fractures

    When too much pressure is placed on a vertebra weakened by osteoporosis, the patient may suffer a vertebral compression fracture. Fractures caused by osteoporosis often occur in the spine. Vertebrae weakened by osteoporosis are at high risk for fracture.

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    • Foot & Ankle
    • Ligament Disorders

    Plantar Fasciitis

    Although the plantar fascia is designed to absorb the high stresses and strains placed on the feet, sometimes too much pressure can damage or tear these tissues. The body’s natural response to such an injury is inflammation, which results in heel pain and stiffness of plantar fasciitis.

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    • Joint Disorders
    • Physical Medicine & Rehabilitation (PM&R)
    • Shoulder
    • Sports Medicine

    Shoulder Impingement

    Rotator cuff pain commonly causes tenderness in the front and side of the shoulder. There may be pain and stiffness when lifting the arm, or when lowering the arm from an elevated position.

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    • Elbow
    • Joint Disorders
    • Sports Medicine

    Tennis Elbow (Lateral Epicondylitis)

    Lateral epicondylitis, more commonly known as tennis elbow, is a painful condition that occurs when overuse results in inflammation of the tendons that join the forearm muscles on the outside of the elbow. Recent studies show that tennis elbow is often due to damage to the extensor carpi radialis brevis (ECRB), a specific forearm muscle that helps stabilize the wrist when the elbow is straight.

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