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Postural responses to anterior and posterior perturbations applied to the upper trunk of standing human subjects

机译:对站立的人体对象上躯干前后姿势的姿势反应

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摘要

This study concerned the effects of brisk perturbations applied to the shoulders of standing subjects to displace them either forwards or backwards, our aim being to characterise the responses to these disturbances. Subjects stood on a force platform, and acceleration was measured at the level of C7, the sacrum and both tibial tuberosities. Surface EMG was measured from soleus (SOL), tibialis anterior (TA), the hamstrings (HS), quadriceps (QUAD), rectus abdominis (RA) and lumbar paraspinal (PS) muscles. Trials were recorded for each of four conditions: subjects’ eyes open (reference) or closed and on a firm (reference) or compliant surface. Observations were also made of voluntary postural reactions to a tap over the deltoid. Anterior perturbations (mean C7 acceleration 251.7 mg) evoked activity within the dorsal muscles (SOL, HS, PS) with a similar latency to voluntary responses to shoulder tapping. Responses to posterior perturbations (mean C7 acceleration −240.4 mg) were more complex beginning, on average, at shorter latency than voluntary activity (median TA 78.0 ms). There was activation of TA, QUAD and SOL associated with initial forward acceleration of the lower legs. The EMG responses consisted of an initial phasic discharge followed by a more prolonged one. These responses differ from the pattern of automatic postural responses that follow displacements at the level of the ankles, and it is unlikely that proprioceptive afferents excited by ankle movement had a role in the initial responses. Vision and surface properties had only minor effects. Perturbations of the upper trunk evoke stereotyped compensatory postural responses for each direction of perturbation. For posterior perturbations, EMG onset occurs earlier than for voluntary responses.Electronic supplementary materialThe online version of this article (doi:10.1007/s00221-015-4442-2) contains supplementary material, which is available to authorized users.
机译:这项研究涉及轻快的扰动对站立的人的肩膀施加的影响,以使他们向前或向后移动,我们的目的是表征对这些干扰的反应。受试者站在受力平台上,并在C7,the骨和两个胫骨粗隆的水平上测量加速度。从比目鱼肌(SOL),胫前肌(TA),绳肌(HS),股四头肌(QUAD),腹直肌(RA)和腰椎旁(PS)肌肉测量表面肌电图。记录以下四种情况中的每一种情况:受试者的眼睛睁开(参考)或闭上,并在坚硬(参考)或顺从的表面上。还观察到对三角肌上水龙头的自发姿势反应。前扰动(平均C7加速度为251.7毫克)引起了背肌(SOL,HS,PS)内的活动,其潜伏期与对肩膀敲击的自愿反应相似。平均而言,对后扰动的响应(平均C7加速度为-240.4 mg)比自愿活动(平均TA 78.0 ms)的潜伏期更复杂。 TA,QUAD和SOL的激活与小腿的初始向前加速度相关。 EMG响应包括一个初始的阶段性放电,然后是一个更长的放电。这些反应与在脚踝处的位移后跟随的自动姿势反应的模式不同,并且由脚踝运动激发的本体感觉传入不太可能在初始反应中起作用。视觉和表面特性影响很小。上躯干的摄动引起每个摄动方向的定型补偿姿势反应。对于后扰动,EMG的发作比自愿应答的发生更早。电子补充材料本文的在线版本(doi:10.1007 / s00221-015-4442-2)包含补充材料,授权用户可以使用。

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