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首页> 外文期刊>Journal of Neurophysiology >Stepping responses to treadmill perturbations vary with severity of motor deficits in human SCI
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Stepping responses to treadmill perturbations vary with severity of motor deficits in human SCI

机译:踩踏跑步机扰动的回应随着人体SCI中的运动缺陷严重程度而变化

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-In this study, we investigated the responses to tread perturbations during human stepping on a treadmill. Our approach was to test the effects of perturbations to a single leg using a split-belt treadmill in healthy participants and in participants with varying severity of spinal cord injury (SCI). We recruited 11 people with incomplete SCI and 5 noninjured participants. As participants walked on an instrumented treadmill, the belt on one side was stopped or accelerated briefly during midstance to late stance. A majority of participants initiated an unnecessary swing when the treadmill was stopped in midstance, although the likelihood of initiating a step was decreased in participants with more severe SCI. Accelerating or decelerating one belt of the treadmill during stance altered the characteristics of swing. We observed delayed swing initiation when the belt was decelerated (i.e., the hip was in a more flexed position at time of swing) and advanced swing initiation with acceleration (i.e., hip extended at swing initiation). Furthermore, the timing and leg posture of heel strike appeared to remain constant, reflected by a sagittal plane hip angle at heel strike that remained the same regardless of the perturbation. In summary, our results supported the current understanding of the role of sensory feedback and central drive in the control of stepping in participants with incomplete SCI and noninjured participants. In particular, the observation of unnecessary swing during a stop perturbation highlights the interdependence of centra] and sensory drive in walking control.
机译:- 在这项研究中,我们调查了在人踩踏跑步机上踩踏捕扰的回应。我们的方法是使用健康参与者的分裂带跑步机和参与者在脊髓损伤(SCI)的不同严重程度的参与者中测试扰动对单个腿的效果。我们招募了11名患有不完整的SCI和5名非金属会计师。随着参与者在仪表院跑步机上行走,一侧的皮带在中间姿势期间停止或简单地加速。当跑步机在Midstance停止时,大多数参与者都会发起不必要的挥杆,尽管在参与者中,在参与者中减少了更严重的SCI的可能性。在姿势期间加速或减速跑步机的一带改变了摆动的特点。当皮带减速时观察到延迟的摆动开始(即,臀部在摆动时处于更弯曲的位置)和用加速度的先进的摆动开始(即,在摆动开始时延伸)。此外,鞋跟袭击的时序和腿部姿势似乎保持恒定,其在后跟撞击时的矢状平面臀角反射,无论扰动如何,仍然相同。总之,我们的业绩支持目前对感官反馈和中央驱动器在控制与不完整的SCI和非对准参与者的参与者中的作用中的作用。特别地,在止动扰动期间对不必要的摆动的观察突出了Centra的相互依存性和感官驱动在步行控制中。

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