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Fascial Manipulation argues that the buildup of lack of shear within CCs, and CFs can adversely affect muscle, ligament and joint function including functional visceral conditions. Once the rigidity is relieved, and proper glide is acquired between the fascial layers, and surrounding tissues, reduction in pain, and eventual healing is observed.
Many definitions of joint manipulation have been proposed. [1] The most rigorous definition, based on available empirical research is that of Evans and Lucas: [2] "Separation (gapping) of opposing articular surfaces of a synovial joint, caused by a force applied perpendicularly to those articular surfaces, that results in cavitation within the synovial fluid of that joint."
Range of motion (or ROM) is the linear or angular distance that a moving object may normally travel while properly attached to another.. In biomechanics and strength training, ROM refers to the angular distance and direction a joint can move between the flexed position and the extended position. [1]
The International Federation of Orthopaedic Manipulative Physical Therapists defines joint mobilization as "a manual therapy technique comprising a continuum of skilled passive movements that are applied at varying speeds and amplitudes to joints, muscles or nerves with the intent to restore optimal motion, function, and/or to reduce pain." [1]
Sports-specific movements, such as a tennis swing or bowling a cricket ball, are based on sports-specific situations. While there is some cross-over application from sports-specific movements (such as running), they are usually so specific that they supersede functional movements in complexity. Yet both sports and functional movements are ...
Muscle energy is a direct and active technique, meaning it engages a restrictive barrier and requires the patient's participation for maximal effect. A restrictive barrier describes the limit in range of motion that prevents the patient from reaching the baseline limit in their range of motion. [5]
The joint is able to become stiffer and more stable due to this action. [ 4 ] [ 5 ] For example, when the biceps and the triceps coactivate, the elbow becomes more stable. This stabilization mechanism is also important for unexpected loads impeded on the joint, allowing the muscles to quickly coactivate and provide stability to the joint.
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