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Distinct Disconnection Patterns Explain Task-Specific Motor Impairment and Outcome After Stroke

断开 运动障碍 物理医学与康复 冲程(发动机) 连接体 医学 神经科学 病变 心理学 任务(项目管理) 功能连接 精神科 法学 管理 经济 工程类 机械工程 政治学
作者
F. Esser,Theresa Paul,Elizabeth Rizor,Ellen Binder,Lukas Hensel,Anne K. Rehme,Corinna Ringmaier,Anna R. Schönberger,Caroline Tscherpel,Simone Vossel,Frank E. Garcea,Christian Grefkes,Gereon R. Fink,Scott T. Grafton,Lukas J. Volz
出处
期刊:Stroke [Lippincott Williams & Wilkins]
卷期号:56 (8): 2210-2221 被引量:6
标识
DOI:10.1161/strokeaha.125.050929
摘要

BACKGROUND: Stroke is increasingly understood as a network disorder with symptoms often arising from disruption of white matter connectivity. Previous connectome-based lesion-symptom mapping studies revealed that poststroke motor deficits are not only associated with damage to the core sensorimotor network but also with nonsensorimotor connections. However, whether task-specific initial impairment and outcome are based on distinct disconnection patterns remains unknown. METHODS: To address this question, we included lesion information and assessments of distinct aspects of upper limb motor impairment of 113 patients with early subacute stroke (mean age, 65.95 years). We used connectome-based lesion-symptom mapping, based on a normative structural connectome, and a machine learning algorithm to predict individual levels of task-specific motor impairment and outcome >3 months later. RESULTS: We identified task-specific disconnection patterns that significantly predicted initial motor impairment and outcome and a task-general reach-to-grasp network including both sensorimotor and nonsensorimotor areas. More complex reach-to-grasp movements showed a substantial overlap in disconnections for the prediction of impairment and outcome. Conversely, disconnections indicative of more basal aspects of motor control substantially differed between the prediction of initial impairment and outcome at the chronic stage poststroke. Similarly, the significance of interhemispheric disconnections changed in a task- and time-dependent fashion. CONCLUSIONS: In summary, our study identified distinct disconnection patterns indicative of specific aspects of motor impairment and outcome after stroke, highlighting a time- and task-dependent role of the contralesional hemisphere and suggesting a domain-general compensatory role of nonsensorimotor temporal areas. From a mechanistic perspective, differences in disconnection patterns predictive of initial motor impairment versus outcome suggest a stronger dependence of basal motor control on the brain's structural reserve during motor recovery. Our results extend our current network-level understanding of task-specific motor impairment and recovery, and emphasize the potential of connectome-based lesion-symptom mapping for future clinical applications.
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