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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Head motion in humans alternating between straight and curved walking path: combination of stabilizing and anticipatory orienting mechanisms.
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Head motion in humans alternating between straight and curved walking path: combination of stabilizing and anticipatory orienting mechanisms.

机译:人类的头部运动在直线和弯曲的步行路径之间交替:稳定和预期的定向机制的结合。

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摘要

Anticipatory head orientation relative to walking direction was investigated in humans. Subjects were asked to walk along a 20 m perimeter, figure of eight. The geometry of this path required subjects to steer their body according to both curvature variations (alternate straight with curved walking) and walking direction (clock wise and counter clock wise). In agreement with previous results obtained during different locomotor tasks [R. Grasso, S. Glasauer, Y. Takei, A. Berthoz, The predictive brain: anticipatory control of head direction for the steering of locomotion, NeuroReport 7 (1996) 1170-1174; R. Grasso, P. Prevost, Y.P. Ivanenko, A. Berthoz, Eye-head coordination for the steering of locomotion in humans: an anticipatory synergy, Neurosci. Lett. 253 (2) (1998) 115-118; T. Imai, S.T. Moore, T. Raphan, B. Cohen, Interaction of body, head, and eyes during walking and turning, Exp. Brain Res. 136 (2001) 1-18; P. Prevost, Y. Ivanenko, R. Grasso, A. Berthoz, Spatial invariance in anticipatory orienting behaviour during human navigation, Neurosci. Lett. 339 (2002) 243-247; G. Courtine, M. Schieppati, Human walking along a curved path. I. Body trajectory, segment orientation and the effect of vision, Eur. J. Neurosci. 18 (2003) 177-190], the head turned toward the future walking direction. This anticipatory head behaviour was continuously modulated by the geometrical variations of the path. Two main components were observed in the anticipatory head behaviour. One was related to the geometrical form of the path, the other to the transfer of body mass from one foot to the other during stepping. A clear modulation of the head deviation pattern was observed between walking on curved versus straight parts of the path: head orientation was influenced to a lesser extent by step alternation for curved path where a transient head fixation was observed. We also observed good symmetry in the head deviation profile, i.e. the head tended to anticipate the future walking direction with the same amplitude when turning to the left (29.75 +/- 7.41 degrees of maximum head deviation) or to the right (30.86 +/- 9.92 degrees ). These findings suggest a combination of motor strategies underlying head stabilization in space and more global orienting mechanisms for steering the whole body in the desired direction.
机译:在人类中研究了相对于行走方向的预期头部方向。要求受试者沿着20 m的周长(八位数字)行走。该路径的几何形状要求受试者根据曲率变化(交替弯曲的笔直直线)和步行方向(顺时针和逆时针)操纵他们的身体。与先前在不同运动任务中获得的结果一致[R. Grasso,S.Glasauer,Y.Takei,A.Berthoz,预测性的大脑:用于运动控制的头部方向的预期控制,NeuroReport 7(1996)1170-1174。 R.Grasso,P.Prevost,Y.P。伊万年科(Ivanenko),A。贝索斯(A.Berthoz),指导人类运动的眼头协调:预期的协同作用,神经科学。来吧253(2)(1998)115-118;今井T. Moore,T。Raphan,B。Cohen,行走和转弯过程中身体,头部和眼睛的相互作用,实验。脑水库。 136(2001)1-18; P. Prevost,Y。Ivanenko,R。Grasso,A。Berthoz,人类导航过程中预期定向行为的空间不变性,Neurosci。来吧339(2002)243-247; G. Courtine,M。Schieppati,人类沿着弯曲的路径行走。 I.身体运动轨迹,节段方向和视觉效果,Eur。 J.神经科学。 18(2003)177-190],头转向未来的行走方向。这种预期的头部行为被路径的几何变化连续地调节。在预期的头部行为中观察到两个主要成分。一个与路径的几何形式有关,另一个与踩踏过程中体重从一只脚转移到另一只脚有关。在路径的弯曲部分与笔直部分之间行走时,观察到头部偏离模式的清晰调制:弯曲路径的阶跃交替在较小的程度上影响了头部的方向,其中观察到了短暂的头部固定。我们还观察到头部偏离轮廓具有良好的对称性,即,当向左(最大头部偏离29.75 +/- 7.41度)或向右(30.86 + / -9.92度)。这些发现表明,在头部空间稳定的基础上,采取了一系列运动策略,并采用了更全面的定向机制,可以使整个身体朝着理想的方向发展。

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