Suppr超能文献

不对称和对称双足步态的常见运动模式。

Common motor patterns of asymmetrical and symmetrical bipedal gaits.

作者信息

Pequera Germán, Ramírez Paulino Ignacio, Biancardi Carlo M

机构信息

Ingeniería Biológica, CENUR Litoral Norte, Universidad de la República, Paysandú, Uruguay.

Biomechanics Lab., Dept. de Ciencias Biológicas, CENUR Litoral Norte, Universidad de la República, Paysandú, Uruguay.

出版信息

PeerJ. 2021 Aug 16;9:e11970. doi: 10.7717/peerj.11970. eCollection 2021.

Abstract

BACKGROUND

Synergy modules have been used to describe activation of lower limb muscles during locomotion and hence to understand how the system controls movement. Walking and running have been shown shared synergy patterns suggesting common motor control of both symmetrical gaits. Unilateral skipping, an equivalent gait to the quadrupedal gallop in humans, has been defined as the third locomotion paradigm but the use by humans is limited due to its high metabolic cost. Synergies in skipping have been little investigated. In particular, to the best of our knowledge, the joint study of both trailing and leading limbs has never been addressed before.

RESEARCH QUESTION

How are organized muscle activation patterns in unilateral skipping? Are they organized in the same way that in symmetrical gaits? If yes, which are the muscle activation patterns in skipping that make it a different gait to walking or running? In the present research, we investigate if there are shared control strategies for all gaits in locomotion. Addressing these questions in terms of muscle synergies could suggest possible determinants of the scarce use of unilateral skipping in humans.

METHODS

Electromyographic data of fourteen bilateral muscles were collected from volunteers while performing walking, running and unilateral skipping on a treadmill. Also, spatiotemporal gait parameters were computed from 3D kinematics. The modular composition and activation timing extracted by non-negative matrix factorization were analyzed to detect similarities and differences among symmetrical gaits and unilateral skipping.

RESULTS

Synergy modules showed high similarity throughout the different gaits and between trailing and leading limbs during unilateral skipping. The synergy associated with the propulsion force operated by calf muscles was anticipated in bouncing gaits. Temporal features of synergies in the leading leg were very similar to those observed for running. The different role of trailing and leading legs in unilateral skipping was reflected by the different timing in two modules. Activation for weight acceptance was anticipated and extended in the trailing leg, preparing the body for landing impact after the flight phase. A different behaviour was detected in the leading leg, which only deals with a pendular weight transference.

SIGNIFICANCE

The evidence gathered in this work supports the hypothesis of shared modules among symmetrical and asymmetrical gaits, suggesting a common motor control despite of the infrequent use of unilateral skipping in humans. Unilateral skipping results from phase-shifted activation of similar muscular groups used in symmetrical gaits, without the need for new muscular groups. The high and anticipated muscle activation in the trailing leg for landing could be the key distinctive event of unilateral skipping.

摘要

背景

协同模块已被用于描述运动过程中下肢肌肉的激活情况,从而了解系统如何控制运动。研究表明,行走和跑步具有共同的协同模式,这表明两种对称步态存在共同的运动控制机制。单侧跳跃,相当于人类的四足飞奔步态,已被定义为第三种运动范式,但由于其高代谢成本,人类对其使用有限。关于跳跃中的协同作用研究较少。特别是,据我们所知,此前从未对后肢和前肢进行过联合研究。

研究问题

单侧跳跃中肌肉激活模式是如何组织的?它们的组织方式与对称步态相同吗?如果是,那么在跳跃中哪些肌肉激活模式使其成为与行走或跑步不同的步态?在本研究中,我们探究运动中的所有步态是否存在共同的控制策略。从肌肉协同作用的角度解决这些问题,可能会揭示人类很少使用单侧跳跃的潜在决定因素。

方法

从志愿者在跑步机上行走、跑步和单侧跳跃时采集了14块双侧肌肉的肌电图数据。此外,还从三维运动学中计算了时空步态参数。分析通过非负矩阵分解提取的模块组成和激活时间,以检测对称步态和单侧跳跃之间的异同。

结果

协同模块在不同步态以及单侧跳跃的后肢和前肢之间表现出高度相似性。在跳跃步态中,与小腿肌肉产生的推进力相关的协同作用提前出现。前腿协同作用的时间特征与跑步时观察到的非常相似。后肢和前肢在单侧跳跃中的不同作用体现在两个模块的不同时间上。后肢在着地承重时的激活提前并延长,为飞行阶段后的着地冲击做好身体准备。在前腿中检测到不同的行为,它只负责摆动式的体重转移。

意义

本研究收集的证据支持对称和不对称步态之间存在共享模块的假设,这表明尽管人类很少使用单侧跳跃,但存在共同的运动控制机制。单侧跳跃是由对称步态中使用的类似肌肉群的相移激活导致的,无需新的肌肉群。后肢为着地而产生的高度且提前的肌肉激活可能是单侧跳跃的关键独特事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd29/8375508/ceb410e15d95/peerj-09-11970-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验