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Neural Correlates of Task Cost for Stance Control with an Additional Motor Task: Phase-Locked Electroencephalogram Responses

机译:姿态控制与附加运动任务的任务成本的神经相关:锁相脑电图响应

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摘要

With appropriate reallocation of central resources, the ability to maintain an erect posture is not necessarily degraded by a concurrent motor task. This study investigated the neural control of a particular postural-suprapostural procedure involving brain mechanisms to solve crosstalk between posture and motor subtasks. Participants completed a single posture task and a dual-task while concurrently conducting force-matching and maintaining a tilted stabilometer stance at a target angle. Stabilometer movements and event-related potentials (ERPs) were recorded. The added force-matching task increased the irregularity of postural response rather than the size of postural response prior to force-matching. In addition, the added force-matching task during stabilometer stance led to marked topographic ERP modulation, with greater P2 positivity in the frontal and sensorimotor-parietal areas of the N1-P2 transitional phase and in the sensorimotor-parietal area of the late P2 phase. The time-frequency distribution of the ERP primary principal component revealed that the dual-task condition manifested more pronounced delta (1–4 Hz) and beta (13–35 Hz) synchronizations but suppressed theta activity (4–8 Hz) before force-matching. The dual-task condition also manifested coherent fronto-parietal delta activity in the P2 period. In addition to a decrease in postural regularity, this study reveals spatio-temporal and temporal-spectral reorganizations of ERPs in the fronto-sensorimotor-parietal network due to the added suprapostural motor task. For a particular set of postural-suprapostural task, the behavior and neural data suggest a facilitatory role of autonomous postural response and central resource expansion with increasing interregional interactions for task-shift and planning the motor-suprapostural task.
机译:通过适当地重新分配中央资源,并发的运动任务不一定会降低保持直立姿势的能力。这项研究调查了涉及脑机制的特定姿势-姿势上过程的神经控制,以解决姿势和运动子任务之间的串扰。参与者完成了一个姿势任务和一个双重任务,同时进行了力匹配,并在目标角度保持了稳定的倾斜姿态。记录稳定仪运动和与事件相关的电位(ERP)。增加的力匹配任务增加了姿势响应的不规则性,而不是力匹配之前的姿势响应的大小。此外,在稳定器姿态期间增加的力匹配任务导致显着的地形ERP调制,在N1-P2过渡期的额叶和感觉运动顶区以及后期P2期的感觉运动-顶区具有更大的P2阳性。 ERP主要主成分的时频分布表明,双任务条件表现出更明显的增量(1-4 Hz)和beta(13-35 Hz)同步,但是在强制作用之前抑制了θ活动(4-8 Hz)。匹配。在P2期,双重任务状态还表现出连贯的额顶顶三角活动。除了减少姿势规律性之外,本研究还揭示了由于增加了姿势上运动任务,额叶感觉运动-顶叶网络中ERP的时空和时空光谱重组。对于一组特定的姿势-姿势上的任务,行为和神经数据表明自主姿势响应和中央资源扩展的促进作用,随着区域间交互作用的增加,用于任务转移和计划姿势-姿势上的任务。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(11),3
  • 年度 -1
  • 页码 e0151906
  • 总页数 20
  • 原文格式 PDF
  • 正文语种
  • 中图分类
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  • 入库时间 2022-08-21 11:13:02

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