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The 38 pages that link to Physical therapy, each with the reason it gives.
Parkinson's diseaseRelated: Exercise and targeted therapy can support balance, walking, and everyday function.
Chronic painRelated: Graded movement and rehabilitation can support function despite persistent pain.
Peripheral neuropathyRelated: Strength, balance, and gait training can address functional effects of nerve damage.
Developmental delayRelated: Motor delays can be addressed through individualized movement practice.
AtaxiaRelated: Balance and mobility training can reduce disability even when the underlying cause persists.
DystoniaRelated: It can support mobility, comfort, and daily function alongside medical treatment.
Duchenne muscular dystrophyRelated: Careful stretching and positioning help manage contractures and preserve joint movement as weakness progresses.
Spinal stenosisRelated: Exercise and posture strategies can improve function when stenosis symptoms are manageable without surgery.
Muscular dystrophyRelated: Careful stretching and activity help manage contractures and preserve independence.
Ligament (anatomy)Related: Progressive exercise helps restore strength and control after ligament injury.
Spinal muscular atrophyRelated: It helps manage contractures, mobility, and daily function alongside disease-modifying treatment.
HypotoniaRelated: Therapy can support posture, movement skills, and participation when hypotonia affects function.
Ehlers–Danlos syndromeRelated: Individualized strengthening and joint-control strategies can address instability and pain.
Cerebellar ataxiaRelated: Balance and coordination training can support mobility despite persistent cerebellar impairment.
Congenital myopathyRelated: Individualized therapy helps maintain mobility while avoiding excessive muscle strain.
Progressive supranuclear palsyRelated: Balance and mobility training can support safer movement despite progressive impairment.
SpondylolisthesisRelated: Conservative care often targets trunk strength, mobility, and activity tolerance.
Rett syndromeRelated: Therapy can help maintain mobility, posture, and joint range as motor difficulties progress.
Spinocerebellar ataxiaRelated: Balance and gait training can support function as coordination declines.
Corticobasal degenerationRelated: It can address mobility, balance, and daily-function challenges as the disease progresses.
SciaticaRelated: Guided activity and exercise can support recovery and restore function during sciatica.
Canavan diseaseRelated: It can support positioning, mobility, and comfort as motor impairment progresses.
Cockayne syndromeRelated: Therapy can address contractures, mobility limitations, and changing functional needs.
Strain (injury)Related: Progressive rehabilitation restores strength and mobility after a strain.
Hereditary spastic paraplegiaRelated: Stretching, strengthening, and mobility practice can address functional limitations.
Joint dislocationRelated: Rehabilitation rebuilds movement and stability after the joint is realigned.
Pelizaeus–Merzbacher diseaseRelated: Therapy can address motor limitations and support mobility as symptoms evolve.
Sturge–Weber syndromeRelated: Therapy can address weakness or motor difficulties after neurological injury.
TherapeuticsRelated: It can restore mobility and function without relying on medication.
HemiplegiaRelated: Strength, balance, and mobility training address effects of hemiplegia.
Pantothenate kinase-associated neurodegenerationRelated: Rehabilitation can help address mobility limitations, although it does not correct the underlying genetic defect.
Tetrasomy XRelated: It can support motor skills when hypotonia or coordination difficulties are present.
22q13 deletion syndromeRelated: It can address low muscle tone and delays in motor development.
Articular cartilage damageRelated: Strength and movement training can support joint function even when damaged cartilage itself is not restored.
Pitt–Hopkins syndromeRelated: It can address motor delays, balance, and mobility needs associated with the syndrome.