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Cortical Excitability across the ALS Clinical Motor Phenotypes

期刊

BRAIN SCIENCES
卷 11, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/brainsci11060715

关键词

amyotrophic lateral sclerosis; phenotypic heterogeneity; cortical hyperexcitability; transcranial magnetic stimulation; ALS focality; survival

资金

  1. Australian National Health and Medical Research Council, CJ Martin Early Career Fellowship [APP1162075]

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ALS is characterized by clinical heterogeneity, with a wide range of motor presentations and trajectories. Corticomotoneuronal dysfunction is increasingly seen as a precursor to clinical disease. Understanding phenotypic variability in relation to cortical dysfunction is crucial for unraveling disease mechanisms in ALS.
Amyotrophic lateral sclerosis (ALS) is characterized by its marked clinical heterogeneity. Although the coexistence of upper and lower motor neuron signs is a common clinical feature for most patients, there is a wide range of atypical motor presentations and clinical trajectories, implying a heterogeneity of underlying pathogenic mechanisms. Corticomotoneuronal dysfunction is increasingly postulated as the harbinger of clinical disease, and neurophysiological exploration of the motor cortex in vivo using transcranial magnetic stimulation (TMS) has suggested that motor cortical hyperexcitability may be a critical pathogenic factor linked to clinical features and survival. Region-specific selective vulnerability at the level of the motor cortex may drive the observed differences of clinical presentation across the ALS motor phenotypes, and thus, further understanding of phenotypic variability in relation to cortical dysfunction may serve as an important guide to underlying disease mechanisms. This review article analyses the cortical excitability profiles across the clinical motor phenotypes, as assessed using TMS, and explores this relationship to clinical patterns and survival. This understanding will remain essential to unravelling central disease pathophysiology and for the development of specific treatment targets across the ALS clinical motor phenotypes.

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