Neuromuscular deficits after peripheral joint injury: A neurophysiological hypothesis
Sarah Ward · Alan J. Pearce · Brian Pietrosimone · Kim L. Bennell · Ross A. Clark · Adam L. Bryant
Muscle and Nerve
Abstract
In addition to biomechanical disturbances, peripheral joint injuries (PJIs) can also result in chronic neuromuscular alterations due in part to loss of mechanoreceptor-mediated afferent feedback. An emerging perspective is that PJI should be viewed as a neurophysiological dysfunction, not simply a local injury. Neurophysiological and neuroimaging studies have provided some evidence for central nervous system (CNS) reorganization at both the cortical and spinal levels after PJI. The novel hypothesis proposed is that CNS reorganization is the underlying mechanism for persisting neuromuscular deficits after injury, particularly muscle weakness. There is a lack of direct evidence to support this hypothesis, but future studies utilizing force-matching tasks with superimposed transcranial magnetic stimulation may be help clarify this notion.
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Record provenance
Indexed record: W1878313269. Matched to Scopus author 55279534900.
Scopus record ↗Metadata retrieved 2026-09-20. Topic labels are navigation aids derived from title and abstract text.