Georgia Bone & Joint Fayetteville Orthopedics is dedicated to providing first-class orthopedic services to our clients. Our team ofcertified specialists offers superior care to patients at every step of their recovery process.
Fayetteville, Georgia, is located southwest of Atlanta. It is the largest city in Fayette County, Georgia and is located in South Metro Atlanta. It’s about a 30-mile drive away from Downtown Atlanta.
Our orthopedic specialists expertly evaluate pain and injuries reported by various patients.
At Georgia Bone & Joint, our doctors are the leading experts in providing exceptional orthopedic care to Newnan, Fayetteville, Stockbridge, LaGrange, and the surrounding areas. Offering experienced treatment for bone, joint, and muscle injuries and conditions, we are dedicated to serving you so you can move better, feel better, and live better.
The specialty-trained doctors of Georgia Bone & Joint provide treatment for orthopedic injuries and conditions affecting the Ankle, Back, Elbow, Foot, Hand, Hip, Knee, Neck, Shoulder, Spine, and Wrist in addition to specializing in Joint Replacement, Pediatric Orthopedics, Orthobiologics, and Sports Medicine.
Our world-class team of Orthopedic Experts is devoted to providing customized treatment plans focused on your needs and goals.
The rotator cuff is the group of muscles and tendons on your shoulder that surround the joint. They stabilize the humerus, the long bone that connects the shoulder blade to the elbow.
The shoulder is one of the most flexible joints in the body and offers a full range of motion. Since muscles and tendons facilitate joint movements, you engage your rotator cuff when you perform various activities, like cleaning, lifting objects, exercising, dancing, playing sports, etc. This also explains why rotator cuffs are prone to injuries due to overuse, accidents, and age-related degeneration.
Rotator cuff injuries are debilitating and extremely painful. Patients should get proper treatment as soon as possible to be pain-free and regain their arm’s normal function as quickly as possible.
