Injuries to the muscles and other soft tissues of the body often require a course of physical therapy in order for the patient to regain normal body movement. Therapeutic exercise is an important component in most physical therapy regimens and it can effectively aid in not only easing pain, but also restoring range of motion, balance, strength, and flexibility.
The physical therapist will evaluate the patient's condition by conducting an assessment of his or her ability to move, and taking a medical history. This information will be used to formulate a specific course of exercises which become progressively more challenging as the patient improves. Once the pain is overcome, the focus will be on restoring the body's strength, endurance, and flexibility.
Exercises in a physical therapy program are classified by the type of movement and its effect on the body. Passive exercise applies an external force to the affected muscles, often by way of a mechanical device such as a continuous passive motion unit or manually by the therapist, these help to restore normal motions to the joints. Active exercises are those which require the patient to the work the muscles at least somewhat, possibly with assistance at first, and help improve neuromuscular control and joint movement.
Other activities are prescribed to help patients regain strength and endurance in the muscles which have been injured. This is normally added to the program once the patient can safely perform basic flexibility and range-of-motion movements without help. Progressive resistance is added to the routine at a steady rate to gradually build back lost strength in the muscles, tendons, ligaments, and bones, which is the body's natural response.
Strength exercises are classified as static or dynamic. A static activity does not require movement of the joint, the tension and resistance are equal, and the muscle fibers remain the same length throughout the movement. The angle is the key aspect which makes the difference in this case, so patients are advised to vary the angle of each set, making sure they hold it for several seconds each time, as this is what builds strength.
Dynamic exercises differs in that it does involve movement of the joints and muscles, in particular concentric and eccentric movement, which refers to a repeated shortening and lengthening of the muscle fibers that produces force and develops strength. This type of exercise can be grouped into isotonic, isokinetic, variable-resistance, and manual movements.
An isotonic movement is one that applies an external force to the muscle which alters the angle of the joint, lengthening the muscular fibers. Some common examples of this are many weight machines, free weights, and ankle weights. Training equipment for variable-resistance movements are built to impose correct joint alignment and apply resistance relative to force, or the therapist may do this manually as well, deliberately placing the muscles in range-of-motion extremes that will limit the force produced.
Isokinetic exercises are carried out with a fixed speed and equal muscle force and resistance. Machines to generate this type of movement deliver force to match the user's level of muscle resistance and often have adjustable settings in terms of concentric and eccentric actions with varying velocities.
The physical therapist will evaluate the patient's condition by conducting an assessment of his or her ability to move, and taking a medical history. This information will be used to formulate a specific course of exercises which become progressively more challenging as the patient improves. Once the pain is overcome, the focus will be on restoring the body's strength, endurance, and flexibility.
Exercises in a physical therapy program are classified by the type of movement and its effect on the body. Passive exercise applies an external force to the affected muscles, often by way of a mechanical device such as a continuous passive motion unit or manually by the therapist, these help to restore normal motions to the joints. Active exercises are those which require the patient to the work the muscles at least somewhat, possibly with assistance at first, and help improve neuromuscular control and joint movement.
Other activities are prescribed to help patients regain strength and endurance in the muscles which have been injured. This is normally added to the program once the patient can safely perform basic flexibility and range-of-motion movements without help. Progressive resistance is added to the routine at a steady rate to gradually build back lost strength in the muscles, tendons, ligaments, and bones, which is the body's natural response.
Strength exercises are classified as static or dynamic. A static activity does not require movement of the joint, the tension and resistance are equal, and the muscle fibers remain the same length throughout the movement. The angle is the key aspect which makes the difference in this case, so patients are advised to vary the angle of each set, making sure they hold it for several seconds each time, as this is what builds strength.
Dynamic exercises differs in that it does involve movement of the joints and muscles, in particular concentric and eccentric movement, which refers to a repeated shortening and lengthening of the muscle fibers that produces force and develops strength. This type of exercise can be grouped into isotonic, isokinetic, variable-resistance, and manual movements.
An isotonic movement is one that applies an external force to the muscle which alters the angle of the joint, lengthening the muscular fibers. Some common examples of this are many weight machines, free weights, and ankle weights. Training equipment for variable-resistance movements are built to impose correct joint alignment and apply resistance relative to force, or the therapist may do this manually as well, deliberately placing the muscles in range-of-motion extremes that will limit the force produced.
Isokinetic exercises are carried out with a fixed speed and equal muscle force and resistance. Machines to generate this type of movement deliver force to match the user's level of muscle resistance and often have adjustable settings in terms of concentric and eccentric actions with varying velocities.
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