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Time to reconfigure balancing behaviour in man: changing visual condition while riding a continuously moving platform

机译:是时候重新配置男人的平衡行为了:乘坐连续移动的平台时,可以改变视觉状况

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摘要

While balancing on a continuously antero-posterior (A-P) translating platform (10 cm, 0.5 Hz), the head normally oscillates with the platform without vision but is stabilized in space with vision. We estimated the time to shift from one to the other balancing behaviour when visual condition changed at some stage during the balancing trials. Ten subjects performed randomly 50 balancing trials (each lasting 18 s): 10 trials with eyes open (EO), 10 with eyes closed (EC), 15 in which participants started with EO and closed their eyes (condition EO → EC) in response to an acoustic signal delivered during the trial, and 15 starting with EC and closing their eyes (EC → EO) in response to the same signal. No other specific instruction was given. Displacements of malleolus, hip and head, and EMG from leg and axial muscles were recorded. Indexes of amplitude of A-P head and hip oscillation and of amplitude of EMG activity were computed. All variables were larger with EC than EO. On changing visual condition during the trial, the pattern of head and hip movement and of muscle activity turned into that appropriate for the new visual condition in a time-interval ranging from about 1 to 2.5 s. For each subject, the mean latency of the change in the balancing behaviour was assessed by statistical methods. On average, the latencies of kinematics and EMG changes proved to be longer for the EO → EC condition than viceversa. Further, the latencies of the changes were also measured across all EO → EC and EC → EO individual trials. These values were clustered around particular epochs of the first few oscillation cycles following the shift in visual condition. The results show that subjects can rapidly adapt their balancing behaviour to the new visual condition. However, they appear to refrain from releasing the new behaviour were this unfit, and unfastened it at appropriate time in the next platform translation cycle. These findings reveal the temporal and spatial features of the automatic release of the new balancing strategy in response to a shift in the ongoing sensory set, and emphasize the swiftness in the change in balancing behaviour when subjects pass from a non-visual to a visual reference frame.
机译:在连续的前后平移(A-P)平移平台(10 cm,0.5 Hz)上保持平衡时,头部通常会在没有视力的情况下随平台振动,但会在有视力的空间中稳定下来。我们估计了平衡试验期间某个阶段视觉状态发生变化时,从一种平衡行为转变为另一种平衡行为的时间。 10名受试者随机进行了50次平衡试验(每项持续18 s):10次睁眼(EO)的试验,10次闭眼(EC)的试验,15个参与者从EO开始并闭眼(条件EO→EC)并在试验期间传递声音信号,然后15从EC开始并响应相同的信号闭上眼睛(EC→EO)。没有给出其他具体说明。记录下大腿,髋部和头部的位移以及腿部和轴向肌肉的肌电图。计算A-P头和髋关节摆动的幅度以及EMG活动幅度的指标。 EC的所有变量均大于EO。在试验过程中视觉条件发生变化时,头部和臀部运动以及肌肉活动的模式会在大约1到2.5 s的时间间隔内转变为适合新视觉条件的模式。对于每个受试者,通过统计方法评估平衡行为变化的平均潜伏期。平均而言,对于EO→EC条件,运动学和EMG变化的潜伏期要长于反之。此外,还对所有EO→EC和EC→EO个人试验测量了变化的延迟。这些值聚集在视觉条件发生变化后的最初几个振荡周期的特定时期附近。结果表明,受试者可以快速地使其平衡行为适应新的视觉条件。但是,他们似乎不愿意发布这种不合适的新行为,并在下一个平台翻译周期的适当时间取消紧固。这些发现揭示了新的平衡策略自动释放的时空特征,以响应进行中的感觉集合的变化,并强调当受试者从非视觉参照物转移到视觉参照物时,平衡行为变化的迅速性。帧。

著录项

  • 来源
    《Experimental Brain Research》 |2007年第1期|18-36|共19页
  • 作者单位

    Centro Studi Attività Motorie (CSAM) Fondazione Salvatore Maugeri Istituto di Ricovero e Cura a Carattere Scientifico (IRCSS) Scientific Institute of Pavia Via Salvatore Mugeri 10 27100 Pavia Italy;

    Department of Experimental Medicine Section of Human Physiology University of Pavia Via Forlanini 6 27100 Pavia Italy;

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

    Vision; Dynamic equilibrium; Processing time;

    机译:视觉;动态平衡;处理时间;

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