Neural correlates of outcome after stroke: a cross‐sectional fMRI study
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Open Access
- 1 June 2003
- journal article
- research article
- Published by Oxford University Press (OUP) in Brain
- Vol. 126 (6) , 1430-1448
- https://doi.org/10.1093/brain/awg145
Abstract
Recovery of motor function after stroke may occur over weeks or months and is often attributed to neuronal reorganization. Functional imaging studies investigating patients who have made a good recovery after stroke have suggested that recruitment of other motor‐related networks underlies this recovery. However, patients with less complete recovery have rarely been studied, or else the degree of recovery has not been taken into account. We set out to investigate the relationship between the degree of recovery after stroke and the pattern of recruitment of brain regions during a motor task as measured using functional MRI. We recruited 20 patients who were at least 3 months after their first ever stroke, and 26 right‐handed age‐matched control subjects. None of our patients had infarcts involving the hand region of the primary motor cortex. All subjects were scanned whilst performing an isometric, dynamic visually paced handgrip task. The degree of functional recovery of each patient was assessed using a battery of outcome measures. Single‐patient versus control group analysis revealed that patients with poor recovery were more likely to recruit a number of motor‐related brain regions over and above those seen in the control group during the motor task, whereas patients with more complete recovery were more likely to have ‘normal’ task‐related brain activation. Across the whole patient group and across stroke subtypes, we were able to demonstrate a negative correlation between outcome and the degree of task‐related activation in regions such as the supplementary motor area, cingulate motor areas, premotor cortex, posterior parietal cortex, and cerebellum. This negative correlation was also seen in parts of both contralateral and ipsilateral primary motor cortex. These results further our understanding of the recovery process by demonstrating for the first time a clear relationship between task‐related activation of the motor system and outcome after stroke.Keywords
This publication has 63 references indexed in Scilit:
- Longitudinal Study of Motor Recovery After StrokeStroke, 2002
- Dynamics of Motor Network Overactivation After Striatocapsular Stroke: A Longitudinal PET Study Using a Fixed-Performance ParadigmStroke, 2001
- Functional MRI Detects Posterior Shifts in Primary Sensorimotor Cortex Activation After StrokeStroke, 2001
- Experience-Associated Structural Events, Subependymal Cellular Proliferative Activity, and Functional Recovery After Injury to the Central Nervous SystemJournal of Cerebral Blood Flow & Metabolism, 2000
- Outcome Measures in Acute Stroke TrialsStroke, 2000
- Absence of Response to Early Transcranial Magnetic Stimulation in Ischemic Stroke PatientsStroke, 1999
- Pilot Study of Functional MRI to Assess Cerebral Activation of Motor Function After Poststroke HemiparesisStroke, 1998
- Mapping of Motor Cortical Reorganization After StrokeStroke, 1997
- Contralateral and ipsilateral EMG responses to transcranial magnetic stimulation during recovery of arm and hand function after strokeElectroencephalography and Clinical Neurophysiology/Electromyography and Motor Control, 1996
- Access to engrams.American Psychologist, 1972