体操运动员的姿势控制:各向异性分形缩放揭示了前庭扰动中的本体感觉重新整合

M. Mangalam, Ivan Seleznov, E. Kolosova, Anton Popov, Damian G. Kelty-Stephen, Ken Kiyono
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引用次数: 0

摘要

灵巧的姿势控制巧妙地补充了运动的多变性与多种尺度的感官关联。体操运动员富有表现力的姿态就体现了这种从粗粒到细粒的释放与约束的抒情点缀。在二维支撑面上进行灵巧的姿势控制,可能会将压力中心(CoP)的变化折叠到一个相对一维的方向上--这个方向通常朝向视觉任务的焦点。灵巧姿势控制中的感觉修正可能表现为时间相关性,特别是分数布朗运动,其差异与分数高斯噪声(fGns)的相关性越来越大,赫斯特指数 H 则越来越小。睁眼和脸朝前的方向比 ML 轴产生更大的可变性,迄今为止,空间可变性的正交分布与 H 的正交分布齐头并进,例如,AP 较大,ML 较小。然而,扰乱任务焦点的方向可能会破坏姿势协同作用的稳定性,使其偏离一维分布,并使整个二维支撑面上的时间相关性趋于均匀,从而导致最大和最小 H 方向之间的夹角变窄。OFSCA 通过沿二维支撑面的所有方向对原始的二维 CoP 轨迹进行分解来建立模型,并对最大和最小 H 的方向进行拟合。我们研究了处于睁眼和脸朝前安静姿势的体操运动员样本,OFSCA 的结果证实,这种姿势表现出典型的时间相关性正交分布。转头会导致该角度Δθ同时减小,一旦体操运动员将头转向前方,该角度就会迅速逆转。然而,当视觉缺失时,Δθ只有明显的负趋势,表明角度方向发生了变化,但在统计学上并不显著。因此,Δθ的缩小可能是姿势控制的一种适应性策略。Δθ在恢复到面向前方的姿势后迅速恢复,这表明这种暂时性的缩小是头部转动所特有的,不会对姿势控制造成持久的负担。转头减少了这两个方向之间的夹角,促进了姿势自由度的释放,使 CoP 在支撑面的两个维度上分布得更加均匀。这项工作的创新之处在于,它展示了分形如何作为灵巧姿势控制适应机制的控制参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Postural control in gymnasts: anisotropic fractal scaling reveals proprioceptive reintegration in vestibular perturbation
Dexterous postural control subtly complements movement variability with sensory correlations at many scales. The expressive poise of gymnasts exemplifies this lyrical punctuation of release with constraint, from coarse grain to fine scales. Dexterous postural control upon a 2D support surface might collapse the variation of center of pressure (CoP) to a relatively 1D orientation—a direction often oriented towards the focal point of a visual task. Sensory corrections in dexterous postural control might manifest in temporal correlations, specifically as fractional Brownian motions whose differences are more and less correlated with fractional Gaussian noises (fGns) with progressively larger and smaller Hurst exponent H. Traditional empirical work examines this arrangement of lower-dimensional compression of CoP along two orthogonal axes, anteroposterior (AP) and mediolateral (ML). Eyes-open and face-forward orientations cultivate greater variability along AP than ML axes, and the orthogonal distribution of spatial variability has so far gone hand in hand with an orthogonal distribution of H, for example, larger in AP and lower in ML. However, perturbing the orientation of task focus might destabilize the postural synergy away from its 1D distribution and homogenize the temporal correlations across the 2D support surface, resulting in narrower angles between the directions of the largest and smallest H. We used oriented fractal scaling component analysis (OFSCA) to investigate whether sensory corrections in postural control might thus become suborthogonal. OFSCA models raw 2D CoP trajectory by decomposing it in all directions along the 2D support surface and fits the directions with the largest and smallest H. We studied a sample of gymnasts in eyes-open and face-forward quiet posture, and results from OFSCA confirm that such posture exhibits the classic orthogonal distribution of temporal correlations. Head-turning resulted in a simultaneous decrease in this angle Δθ, which promptly reversed once gymnasts reoriented their heads forward. However, when vision was absent, there was only a discernible negative trend in Δθ, indicating a shift in the angle’s direction but not a statistically significant one. Thus, the narrowing of Δθ may signify an adaptive strategy in postural control. The swift recovery of Δθ upon returning to a forward-facing posture suggests that the temporary reduction is specific to head-turning and does not impose a lasting burden on postural control. Turning the head reduced the angle between these two orientations, facilitating the release of postural degrees of freedom towards a more uniform spread of the CoP across both dimensions of the support surface. The innovative aspect of this work is that it shows how fractality might serve as a control parameter of adaptive mechanisms of dexterous postural control.
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