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The impact of light fingertip touch on haptic cortical processing during a standing balance task

机译:站立平衡任务期间轻指尖触摸对触觉皮质处理的影响

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摘要

Availability of fingertip touch onto a stable surface reduces body sway for subjects standing with eyes closed. This is largely associated with sensory feedback from the fingertip when mechanical load is limited. Here, it is possible that the central nervous system facilitates cortical sensory processing to augment feedback to control upright stance. To test this, we compared cortical sensory excitability between tasks with and without light finger touch while standing. Subjects stood in tandem on a force plate with eyes closed while lightly touching a stable surface with the index finger. This was, in two different studies, compared to: (1) no haptic contact or (2) light touch on an object not referenced to balance. Throughout testing, the median nerve was stimulated and electroencephalography was used to measure somatosensory evoked potentials (SEPs). As expected, availability of stable light touch reduced medial–lateral COP sway. Peak amplitudes for SEP components revealed reduced P100 (48%), but increased P50 (31%), N140 (80%), and P200 (20%) during stable touch versus no touch. The modulation of P50 and N140 was no longer present when comparing stable to control (touch), which suggested that attending to touch on either surface, regardless of stability reference, accounted for these changes. Conversely, P200 was increased (19%) when touching the stable surface. Our data show SEP modulation during a standing balance task related to hand contact. Facilitation of P200 in particular may indicate task-specific regulation of the cortical representation of fingertip afferent input when it is relevant to providing stable cues for static balance control.
机译:指尖触摸稳定表面上的可用性可减少闭眼站立的受试者的身体晃动。当机械负载受到限制时,这很大程度上与来自指尖的感觉反馈有关。在这里,中枢神经系统可能促进皮层感觉处理,以增强反馈以控制直立姿势。为了测试这一点,我们比较了站立和不站立时手指接触时任务之间的皮质感觉兴奋性。受试者串联在测力板上,闭上眼睛,同时用食指轻轻触摸稳定的表面。在两项不同的研究中,将其与以下各项进行了比较:(1)没有触觉接触或(2)在未提及平衡的物体上轻触。在整个测试过程中,正中神经受到刺激,脑电图用于测量体感诱发电位(SEPs)。不出所料,稳定的轻触可以减少内侧-外侧COP的摆动。与没有触摸相比,SEP组件的峰值振幅显示P100降低(48%),但P50(31%),N140(80%)和P200(20%)增加。当比较稳定与对照(触摸)时,不再存在P50和N140的调节,这表明不管稳定性参考如何,在任一表面上进行触摸都可以解释这些变化。相反,当接触稳定表面时,P200增加(19%)。我们的数据显示与手接触有关的站立平衡任务期间的SEP调制。当与为稳定的平衡控制提供稳定的提示有关时,特别是对P200的简化可以指示指尖传入输入的皮质表示的特定任务调节。

著录项

  • 来源
    《Experimental Brain Research》 |2011年第2期|p.279-291|共13页
  • 作者单位

    Department of Kinesiology, University of Waterloo, 200 University Avenue W, Waterloo, ON, N2L 3G1, Canada;

    Department of Kinesiology, University of Waterloo, 200 University Avenue W, Waterloo, ON, N2L 3G1, Canada;

    Department of Kinesiology, University of Waterloo, 200 University Avenue W, Waterloo, ON, N2L 3G1, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Balance; Haptic; EEG; SEP; Somatosensation; EMG;

    机译:平衡;触觉;脑电图;SEP;躯体感觉;EMG;

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