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婴儿期不同步态的出现:发育中的神经回路与生物力学变化之间的关系。

Emergence of Different Gaits in Infancy: Relationship Between Developing Neural Circuitries and Changing Biomechanics.

作者信息

Dewolf Arthur Henri, Sylos-Labini Francesca, Cappellini Germana, Lacquaniti Francesco, Ivanenko Yury

机构信息

Department of Systems Medicine and Center of Space Biomedicine, University of Rome Tor Vergata, Rome, Italy.

Laboratory of Neuromotor Physiology, IRCCS Santa Lucia Foundation, Rome, Italy.

出版信息

Front Bioeng Biotechnol. 2020 May 19;8:473. doi: 10.3389/fbioe.2020.00473. eCollection 2020.

Abstract

How does gait-specific pattern generation evolve in early infancy? The idea that neural and biomechanical mechanisms underlying mature walking and running differ to some extent and involve distinct spinal and supraspinal neural circuits is supported by various studies. Here we consider the issue of human gaits from the developmental point of view, from neonate stepping to adult mature gaits. While differentiating features of the walk and run are clearly distinct in adults, the gradual and progressive developmental bifurcation between the different gaits suggests considerable sharing of circuitry. Gaits development and their biomechanical determinants also depend on maturation of the musculoskeletal system. This review outlines the possible overlap in the neural and biomechanical control of walking and running in infancy, supporting the idea that gaits may be built starting from common, likely phylogenetically conserved elements. Bridging connections between movement mechanics and neural control of locomotion could have profound clinical implications for technological solutions to understand better locomotor development and to diagnose early motor deficits. We also consider the neuromuscular maturation time frame of gaits resulting from active practice of locomotion, underlying plasticity of development.

摘要

特定步态模式生成在婴儿早期是如何演变的?各种研究支持这样一种观点,即成熟行走和跑步背后的神经和生物力学机制在一定程度上有所不同,并且涉及不同的脊髓和脊髓上神经回路。在这里,我们从发育的角度来考虑人类步态的问题,从新生儿的踏步到成人的成熟步态。虽然行走和跑步的区别特征在成年人中明显不同,但不同步态之间逐渐的、渐进的发育分歧表明神经回路有相当大的共享。步态发展及其生物力学决定因素也取决于肌肉骨骼系统的成熟。这篇综述概述了婴儿期行走和跑步在神经和生物力学控制方面可能存在的重叠,支持了步态可能从共同的、可能在系统发育上保守的元素开始构建的观点。运动力学与运动神经控制之间的桥梁联系可能对理解运动发育和诊断早期运动缺陷的技术解决方案具有深远的临床意义。我们还考虑了因积极练习运动而导致的步态神经肌肉成熟时间框架,这是发育可塑性的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83f8/7248179/8aee102e1da6/fbioe-08-00473-g0001.jpg

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