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评估多节段姿势协调相关神经生理学的方案。

Protocol to assess the neurophysiology associated with multi-segmental postural coordination.

机构信息

School of Health Science, Central Michigan University, Mount Pleasant, MI, USA. Department of Rehabilitation and Movement Science, University of Vermont, Burlington, Vermont, USA.

出版信息

Physiol Meas. 2013 Oct;34(10):N97-105. doi: 10.1088/0967-3334/34/10/N97. Epub 2013 Sep 25.

Abstract

Anticipatory postural adjustments (APAs) stabilize potential disturbances to posture caused by movement. Impaired APAs are common with disease and injury. Brain functions associated with generating APAs remain uncertain due to a lack of paired tasks that require similar limb motion from similar postural orientations, but differ in eliciting an APA while also being compatible with brain imaging techniques (e.g., functional magnetic resonance imaging; fMRI). This study developed fMRI-compatible tasks differentiated by the presence or absence of APAs during leg movement. Eighteen healthy subjects performed two leg movement tasks, supported leg raise (SLR) and unsupported leg raise (ULR), to elicit isolated limb motion (no APA) versus multi-segmental coordination patterns (including APA), respectively. Ground reaction forces under the feet and electromyographic activation amplitudes were assessed to determine the coordination strategy elicited for each task. Results demonstrated that the ULR task elicited a multi-segmental coordination that was either minimized or absent in the SLR task, indicating that it would serve as an adequate control task for fMRI protocols. A pilot study with a single subject performing each task in an MRI scanner demonstrated minimal head movement in both tasks and brain activation patterns consistent with an isolated limb movement for the SLR task versus multi-segmental postural coordination for the ULR task.

摘要

预期姿势调整(APAs)稳定由运动引起的潜在姿势干扰。由于缺乏需要类似肢体运动但从类似姿势取向引出 APA 的配对任务,因此与生成 APAs 相关的大脑功能仍然不确定,但与脑成像技术(例如功能磁共振成像;fMRI)兼容。本研究开发了 fMRI 兼容的任务,通过在腿部运动期间是否存在 APA 来区分。18 名健康受试者分别进行了支持腿抬高(SLR)和非支持腿抬高(ULR)这两种腿部运动任务,以分别引出孤立的肢体运动(无 APA)与多节段协调模式(包括 APA)。评估了脚底的地面反作用力和肌电图激活幅度,以确定每个任务引发的协调策略。结果表明,ULR 任务引发了一种多节段协调,而在 SLR 任务中则最小化或不存在,这表明它将成为 fMRI 方案的合适对照任务。一项针对单个受试者在 MRI 扫描仪中执行每项任务的初步研究表明,在两项任务中头部运动均最小,并且与 SLR 任务的孤立肢体运动相比,大脑激活模式与 ULR 任务的多节段姿势协调一致。

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