首页> 外文期刊>Experimental Brain Research >Reaching to recover balance in unpredictable circumstances: Is online visual control of the reach-to-grasp reaction necessary or sufficient?
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Reaching to recover balance in unpredictable circumstances: Is online visual control of the reach-to-grasp reaction necessary or sufficient?

机译:在无法预料的情况下达到恢复平衡:在线视觉控制伸手可及的反应是否必要或足够?

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摘要

Reaching to grasp an object for support is a common and functionally important response to sudden balance perturbation. The need to react very rapidly (to prevent falling) imposes temporal constraints on acquisition and processing of the visuospatial information (VSI) needed to guide the reaching movement. Previous results suggested that the CNS may deal with these constraints by using VSI stored in memory proactively, prior to perturbation onset; however, the extent to which online visual control is necessary or sufficient to guide these reactions has not been established. This study examined the speed, accuracy, and effectiveness of perturbation-evoked reach-to-grasp reactions when forced to rely entirely on either online- or stored-VSI by using liquid–crystal goggles to occlude vision either before or after perturbation onset. The reactions were evoked, in twelve healthy young adults, via sudden unpredictable antero-posterior platform translation (barriers deterred stepping reactions). Prior to perturbation onset, a small cylindrical handhold was positioned unpredictably (by a motor-driven device) at one of four locations in front of the subject. Results indicated that equilibrium could be recovered successfully by grasping the handhold using either online-VSI or stored-VSI to guide the arm reaction; however, both sources of VSI were required for optimal performance. Reach initiation and arm movement were slowed when dependent on online-VSI, whereas reach accuracy and grip formation were impaired when dependent on stored-VSI. Comparison with normal-VSI trials suggests that both sources of VSI are utilized when grasping a small handhold for support under normal visual conditions, with stored-VSI predominating during initiation/transport and online-VSI contributing primarily to final target acquisition/prehension.
机译:设法抓住要支撑的物体是对突然的平衡扰动的常见且在功能上很重要的响应。快速反应(以防止跌倒)的需求在时间上限制了指导到达运动所需的视觉空间信息(VSI)的获取和处理。先前的结果表明,CNS可以通过在扰动发作之前主动使用存储在内存中的VSI来应对这些约束。但是,尚未确定在线视觉控制对指导这些反应必要或充分的程度。这项研究研究了在摄动发生之前或之后,通过使用液晶护目镜遮挡视力而完全依靠在线或存储的VSI进行摄动引起的触达反应的速度,准确性和有效性。通过突然的不可预测的前后平台翻译(障碍物阻止了步进反应),在十二名健康的年轻人中引发了这些反应。在摄动开始之前,一个小的圆柱形手柄被不可预测地(通过电机驱动的装置)定位在受试者前方的四个位置之一。结果表明,通过在线VSI或存储VSI来指导手臂反应,抓住手柄可以成功恢复平衡。但是,VSI的两个来源都是最佳性能所必需的。依赖在线VSI时,到达起始位置和手臂移动变慢,而依赖于存储VSI时,到达准确性和握力形成受到损害。与正常VSI试验的比较表明,在正常视觉条件下握住较小的把手时,会同时使用VSI的两个来源,其中存储的VSI在启动/运输过程中占主导地位,而在线VSI主要有助于最终目标的获取/理解。

著录项

  • 来源
    《Experimental Brain Research》 |2012年第4期|p.589-599|共11页
  • 作者单位

    Centre for Studies in Aging, Sunnybrook Health Sciences Centre, 2075 Bayview Avenue, Toronto, ON, M4N 3M5, Canada;

    Centre for Studies in Aging, Sunnybrook Health Sciences Centre, 2075 Bayview Avenue, Toronto, ON, M4N 3M5, Canada;

    Centre for Studies in Aging, Sunnybrook Health Sciences Centre, 2075 Bayview Avenue, Toronto, ON, M4N 3M5, Canada;

    Centre for Studies in Aging, Sunnybrook Health Sciences Centre, 2075 Bayview Avenue, Toronto, ON, M4N 3M5, Canada;

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

    Arm movements; Postural balance; Spatial working memory; Triggered reactions; Vision;

    机译:手臂运动;姿势平衡;空间工作记忆;触发的反应;视力;

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