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Effects of speed and direction of perturbation on electroencephalographic and balance responses

机译:扰动速度和扰动方向对脑电平衡的影响

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摘要

The modulation of perturbation-evoked potential (PEP) N1 as a function of different biomechanical characteristics of perturbation has been investigated before. However, it remains unknown whether the PEP N1 modulation contributes to the shaping of the functional postural response. To improve this understanding, we examined the modulation of functional postural response in relation to the PEP N1 response in ten healthy young subjects during unpredictable perturbations to their upright stance-translations of the support surface in a forward or backward direction at two different amplitudes of constant speed. Using independent components from the fronto-central region, obtained from subject-specific head models created from the MRI, our results show that the latency of onset of the functional postural response after the PEP N1 response was faster for forward than backward perturbations at a constant speed but was not affected by the speed of perturbation. Further, our results reinforce some of the previous findings that suggested that the N1 peak amplitude and peak latency are both modulated by the speed of perturbation but not by the direction of the perturbation. Our results improve the understanding of the relation between characteristics of perturbation and the neurophysiology of reactive balance control and may have implications for the design of brain-machine interfaces for populations with a higher risk of falls.
机译:以前研究了扰动诱发电位(PEP)N1的调节,以前已经研究过不同的生物力学特征。然而,它仍然未知PEP N1调制是否有助于功能性姿势响应的成形。为了提高这一理解,我们研究了在不可预测的扰动期间在十个健康的年轻对象中与PEP N1反应相关的功能姿势响应的调节,以在两个不同的常数幅度的向前或向后方向上的直立姿态转换速度。使用从中央区域的独立组件,我们的结果表明,PEP N1响应后功能姿势响应发生的延迟比恒定的反向扰动更快速度但不受扰动速度的影响。此外,我们的结果加强了一些先前的发现,其中建议N1峰值幅度和峰值等待时间既通过扰动速度调节,而不是由扰动的方向调节。我们的结果改善了对扰动特征与反应平衡控制的神经生理学之间的关系的理解,可能对落下风险较高的人口的脑机接口设计有影响。

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