首页> 美国卫生研究院文献>Frontiers in Pediatrics >The Corticospinal Tract: A Biomarker to Categorize Upper Limb Functional Potential in Unilateral Cerebral Palsy
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The Corticospinal Tract: A Biomarker to Categorize Upper Limb Functional Potential in Unilateral Cerebral Palsy

机译:皮质脊髓区:一种生物标志物以分类单侧脑瘫的上肢功能电位

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摘要

Children with unilateral cerebral palsy (CP) typically present with largely divergent upper limb sensorimotor deficits and individual differences in response to upper limb rehabilitation. This review summarizes how early brain damage can cause dramatic deviations from the normal anatomy of sensory and motor tracts, resulting in unique “wiring patterns” of the sensorimotor system in CP. Based on the existing literature, we suggest that corticospinal tract (CST) anatomy and integrity constrains sensorimotor function of the upper limb and potentially also the response to treatment. However, it is not possible to infer CST (re)organization from clinical presentation alone and conventional biomarkers, such as time of insult, location, and lesion extent seem to have limited clinical utility. Here, we propose a theoretical framework based on a detailed examination of the motor system using behavioral, neurophysiological, and magnetic resonance imaging measures, akin to those used to predict potential for upper limb recovery of adults after stroke. This theoretical framework might prove useful because it provides testable hypotheses for future research with the goal to develop and validate a clinical assessment flowchart to categorize children with unilateral CP.
机译:单侧脑性瘫痪(CP)的儿童通常表现出上肢感觉运动功能障碍的差异很大,并且对上肢康复的反应存在个体差异。这篇综述总结了早期脑部损伤如何导致与感觉和运动道的正常解剖学显着偏离,从而导致CP感觉运动系统的独特“接线方式”。根据现有文献,我们建议皮质脊髓束(CST)的解剖结构和完整性会约束上肢的感觉运动功能,并可能还会对治疗产生反应。但是,不可能仅凭临床表现来推断CST(重新)组织,常规的生物标志物(如侵害时间,位置和病变程度)似乎在临床上用途有限。在这里,我们提出了一个基于行为,神经生理学和磁共振成像手段对运动系统进行详细检查的理论框架,类似于那些用于预测中风后成年人上肢恢复潜力的措施。该理论框架可能被证明是有用的,因为它为将来的研究提供了可检验的假设,目的是开发和验证临床评估流程图,以对单侧CP的儿童进行分类。

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