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Effects of short-term hand immobilization on motor functions across domains in adults

Journal
Physiological reports (Q2)
Published
1 August 2026
Study design
Randomized controlled trial
Evidence level
Level 1, High (CEBM 1b)
Authors
Lasse Jespersen, August Lomholt Kvistad, Jonas Rud Bjørndal, Jesper Lundbye-Jensen
PMID
42625382
DOI
10.14814/phy2.71068

Why clinicians should know about it

  • Picked for Anatomy (top studies of the week, 23 August 2026): Short-term hand immobilization effects on motor functions

Abstract

Short-term limb immobilization is known to impair muscle strength; however, its effects across distinct domains of motor function remain incompletely characterized. In this study, we assessed the effects of 72-h of hand immobilization on motor functions in healthy adults. Twenty-eight participants were randomized to an immobilization or control group and completed a motor test battery before and after the intervention. The battery assessed maximal and explosive strength, quantified as maximal voluntary contraction (MVC) force and rate of force development (RFD), fatigability during sustained maximal contractions, force steadiness during submaximal contractions, and manual dexterity. Immobilization induced domain-specific impairments in motor performance. MVC force and RFD declined significantly following immobilization, indicating susceptibility of maximal and explosive strength to short-term disuse. In contrast, no significant changes were observed in the selected parameters of fatigability during sustained maximal contractions, including the fatigue time constant and plateau force. Force steadiness showed a selective increase in relative force variability, whereas absolute force variability remained unchanged. Manual dexterity was not reduced from baseline, but immobilization attenuated the test-retest performance improvements observed in the control group and contralateral non-immobilized hand. These findings demonstrate that hand immobilization induces task- and domain-specific alterations in motor performance rather than a uniform decline, preferentially affecting motor domains that require high force production.

Abstract as published, via PubMed.

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For healthcare professionals. The summary is generated by AI from the published abstract, and the evidence level is assigned automatically from the study design on the Oxford CEBM hierarchy. Neither is medical advice. Read the full paper before changing practice.