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Biomedical subjects

Sarah A Archer

Publications and source records attributed to Sarah A Archer.

4 recordsLinked to original sources

Central motor drive and perception of effort during fatigue in multiple sclerosis.

OBJECTIVE: To determine if task performance and fatiguability during repeated low-level contractions of an intrinsic hand muscle differ in a group of MS subjects compared with a control group, and what central changes accompany the development of fatigue and the period of recovery, whether these measures are related to subjective ratings of fatigue or perception of effort. METHODS: Force of index finger abduction, rating of perceived effort, and motor evoked potential amplitude and silent period duration were measured during and after a 20-min. intermittent submaximal (40%) contraction of the first dorsal interosseous muscle in 23 clinically definite MS subjects with mild-moderate symptoms, and 15 controls. RESULTS: Rating of perceived effort increased at a greater rate in the MS group than in control subjects during exercise, and this was associated with larger increases in both MEP amplitude and silent period duration. CONCLUSIONS: Submaximal fatiguing exercise is associated with an enhanced central motor drive and increased perception of effort in MS. SIGNIFICANCE: MS subjects can increase central drive during fatiguing exercise to a greater degree than controls, but this is associated with greater perceived exertion. These factors may underlie the more general complaint of fatigue experienced by people with MS.

Adult↗

Corticomotor organisation and motor function in multiple sclerosis.

Our objective was to determine whether there are changes in the corticomotor map for the hand in multiple sclerosis, and whether these changes correlate with indices of motor function and measures of corticomotor conduction or excitability. Transcranial magnetic stimulation (TMS) maps, motor evoked potential (MEP) latency and amplitude, motor threshold and EDSS and Purdue-pegboard measurements were made in 26 subjects with relapsing-remitting multiple sclerosis. Correlations were sought between these measurements using the Pearson product-moment correlation with a level of significance of p = 0.05 (two-tailed). Map displacement was positively correlated with MEP latency (p = 3 x 10(-4)) and EDSS (p = 0.007), and negatively correlated with Purdue score (p = 4 x 10(-4)). Purdue scores correlated with all MEP parameters (latency, p = 4 x 10(-10); threshold, p = 4 x 10(-6); amplitude, p = 0.003). We conclude that motor reorganisation is associated with impaired corticomotor conduction and may reflect a process of neural plasticity associated with axonal demyelination in MS. An understanding of motor function in MS should incorporate models of both axonal demyelination and conduction deficits as well as neural plasticity.

Adult↗

Motor outcome after subcortical stroke correlates with the degree of cortical reorganization.

OBJECTIVE: The contribution of cortical reorganization to motor recovery after a subcortical stroke is uncertain. The purpose of the study was to investigate the relationship between changes in motor cortex organization, and the degree of motor function after a subcortical stroke. METHODS: Transcranial magnetic stimulation mapping of the corticomotor projection to the hand was performed in 27 patients who had suffered a subcortical ischemic stroke resulting in an upper limb motor deficit up to 23 years previously. Corticospinal conduction was assessed by measurements of motor evoked potential latency, amplitude and threshold. Motor function in the upper limb was assessed using the Motor Assessment Scale for Stroke and measurements of grip strength. RESULTS: Motor maps for the hand were displaced on the affected side relative to the unaffected side in 17 patients. In 10 of these patients in whom corticospinal conduction had normalized, there was a strong positive correlation between the magnitude of the map shift and grip strength in the affected hand (r=0.79; P=0.006). In the other seven patients with a map shift, in whom corticospinal conduction was still impaired, there was a tendency for a larger map area to be associated with better motor function, and in the group as a whole there was a correlation between map area and grip strength (r=0.52; P=0.005). CONCLUSIONS: The present findings provide evidence that the cortical plasticity and reorganization that occurs after a subcortical stroke is functionally significant and contributes to motor outcome.

Adult↗

Motor outcome after subcortical stroke: MEPs correlate with hand strength but not dexterity.

OBJECTIVE: Motor evoked potential (MEP) amplitude and threshold are predictors of functional outcome in the early stages after stroke, and improvement in these parameters usually accompanies motor recovery. The aim of this study in patients with subcortical stroke was to determine whether there is a correlation between MEP amplitude and threshold and the degree of recovery of strength and dexterity in the affected hand. METHODS: MEP amplitude and threshold were measured on the affected and unaffected sides in 23 patients who had suffered a subcortical ischaemic stroke up to 23 years previously. Grip strength was measured using a hand-held dynamometer and dexterity was assessed using a modification of the McCarron test battery. RESULTS: Grip strength correlated with both MEP amplitude and threshold (r=0.49 and r=-0.54, respectively, P<0.05), whereas the McCarron score for motor dexterity did not correlate significantly with either of these MEP parameters. CONCLUSIONS: Grip strength and dexterity correlate differentially with MEP parameters of excitability and conduction in the corticospinal pathway after recovery in patients with subcortical stroke. Grip strength is dependent on restoration of corticospinal excitability and conduction whereas additional factors such as cortical reorganization may underlie recovery of motor dexterity.

Adult↗