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Spastic hemiplegia is a neuromuscular condition of spasticity that results in the muscles on one side of the body being in a constant state of contraction. It is the "one-sided version" of spastic diplegia. It falls under the mobility impairment umbrella of cerebral palsy. About 20–30% of people with cerebral palsy have spastic hemiplegia. [1]
The types of spastic cerebral palsy are generally distinguished by the primary areas of the body that are affected. [2] Spastic hemiplegia Hemiplegia is a type of cerebral palsy affecting one vertical half of the body (such as one arm and one leg). [15] [16] The affected side of the body is opposite the affected area of the brain in hemiplegia.
Hemiplegia, in its most severe form, is the complete paralysis of one entire side of the body. Either hemiparesis or hemiplegia can result from a variety of medical causes, including congenital conditions, trauma, tumors, traumatic brain injury and stroke.
Spastic triplegia, meanwhile, involves three limbs (such as one arm and two legs, or one leg and two arms, etc.); spastic diplegia affects two limbs (commonly just the legs), spastic hemiplegia affects one or another entire side of the body (left or right); and spastic monoplegia involves a single limb. [citation needed]
Spastic hemiplegia (one side being affected). Generally, injury to muscle-nerves controlled by the brain's left side will cause a right body deficit, and vice versa. Typically, people that have spastic hemiplegia are the most ambulatory, although they generally have dynamic equinus on the affected side and are primarily prescribed ankle-foot ...
Hemiplegia, is a type of paralysis that effects one side of the body. [1] Monoplegia is a condition that impacts only one limb. [1] Spasticity limits muscle movement as a result of tightness in muscle. [11] Athetosis is a condition that has resulted in damage to the basal ganglia. People with this have involuntary movements in their limbs, with ...
Non-cardiac reasons for chest pain on the left side. The skin, nerves, muscles, bones, tendons, soft tissue, and cartilage all share real estate on the left side.
In patients who have developed paralysis of the legs in the form of spastic hemiplegia or diplegia as a result of the traumatic brain injury, various gait patterns can be observed, the exact extent of which can only be described with the help of complex gait analysis systems.