When a person sustains an injury from playing sports, an accident or any other reason, he or she may need to undergo physical therapy to restore normal movement to the body. Part of this approach involves the use of therapeutic exercise to help the patient regain balance, strength, flexibility, and range of motion and alleviate pain.
The patient's movement abilities will be assessed and his or her medical history will be taken by the physical therapist. Based on this information, a personalized training plan of specific exercises will be devised to present the patient with increasing physical challenges that will promote healing. The first step is to overcome pain, and then continuing on to regain bodily endurance, flexibility, and strength.
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.
After the patient has demonstrated that he or she is capable of safely completing flexibility and range of motion activities, it is time to move on to strength and endurance training. Resistance is gradually increased, which has the effect of strengthening muscle and connective tissues which have damaged, naturally improving strength.
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 imply movement on the part of the joints and muscles and may be further categorized into manual, variable-resistance, isokinetic, and isotonic movements. These types of activities result in the concentric and eccentric, or lengthening and shortening of muscles which generate force during movement. The repeated stretching of the muscle-tendon bundles increases tensile strength.
Variable-resistance and manual resistance exercises work based on the principle that the muscles produce a limited force when the joints are positioned in extremes of the range of motion. The main difference is that the latter involves the therapist manually applying resistance, and the former relies on the use of a machine that accounts for proper joint alignment and applies resistance relative to force. With isotonic movement, the muscles are lengthened by external force which imposes a change on the joint's angle, this is seen with many weight machines, ankle weights, and free weights.
An isokinetic exercise is performed at a fixed speed and the resistance is equal to the force exerted by the muscle. There are machines built to provide movement of this kind, which match the force to the user's degree of muscle resistance, and can be adjusted in terms of velocity, concentric and eccentric action.
The patient's movement abilities will be assessed and his or her medical history will be taken by the physical therapist. Based on this information, a personalized training plan of specific exercises will be devised to present the patient with increasing physical challenges that will promote healing. The first step is to overcome pain, and then continuing on to regain bodily endurance, flexibility, and strength.
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.
After the patient has demonstrated that he or she is capable of safely completing flexibility and range of motion activities, it is time to move on to strength and endurance training. Resistance is gradually increased, which has the effect of strengthening muscle and connective tissues which have damaged, naturally improving strength.
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 imply movement on the part of the joints and muscles and may be further categorized into manual, variable-resistance, isokinetic, and isotonic movements. These types of activities result in the concentric and eccentric, or lengthening and shortening of muscles which generate force during movement. The repeated stretching of the muscle-tendon bundles increases tensile strength.
Variable-resistance and manual resistance exercises work based on the principle that the muscles produce a limited force when the joints are positioned in extremes of the range of motion. The main difference is that the latter involves the therapist manually applying resistance, and the former relies on the use of a machine that accounts for proper joint alignment and applies resistance relative to force. With isotonic movement, the muscles are lengthened by external force which imposes a change on the joint's angle, this is seen with many weight machines, ankle weights, and free weights.
An isokinetic exercise is performed at a fixed speed and the resistance is equal to the force exerted by the muscle. There are machines built to provide movement of this kind, which match the force to the user's degree of muscle resistance, and can be adjusted in terms of velocity, concentric and eccentric action.
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