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首页> 外文期刊>Gait & posture >Muscle contributions to center of mass acceleration adapt to asymmetric walking in healthy subjects
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Muscle contributions to center of mass acceleration adapt to asymmetric walking in healthy subjects

机译:肌肉对质心加速度的贡献适合健康受试者的不对称步行

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摘要

Symmetrical limb movement requires complex muscle coordination patterns. Consequently, coordination impairments lead to asymmetric gait patterns, as often seen in stroke subjects. Split-belt walking has previously been used to induce limping-like walking in able-bodied adults. The goal of this study is to analyze how muscle coordination patterns that control the centre of mass are modulated during an asymmetric gait pattern imposed on healthy subjects. These modulations can be uniquely related to the biomechanics of limping as no pathology is present. Forward simulations of limping-like walking (split-belt) and corresponding symmetric conditions (tied-belt) were generated for twelve healthy subjects. Our results show that the differences between 'fast' and 'slow' leg contributions during split-belt walking are not attributable to simple differences in speed between the belts, because most split-belt muscle contributions differ from tied-belt walking. Different types of modulations, inducing increased, decreased or even reversed asymmetry (e.g. plantarflexors, biceps femoris short head, and quadriceps respectively), underlie limping-like walking in healthy subjects. In general, these patterns present large similarities with adaptations previously described in hemiplegic subjects. However, differences were found with gluteus medius and biceps femoris short head contributions in hemiplegic subjects, suggesting that the latter are not just related to limping, but to concomitant deficits.
机译:肢体对称运动需要复杂的肌肉协调模式。因此,协调障碍会导致步态不对称,这在中风受试者中很常见。以前,劈带式步行已被用来诱导身体健壮的成年人像行一样的步行。这项研究的目的是分析在施加于健康受试者的不对称步态模式期间,如何调节控制质心的肌肉协调模式。由于没有病理,这些调节可能与ly行的生物力学唯一相关。为十二名健康受试者生成了类似lim行的步行(腰带)和相应的对称条件(腰带)的模拟。我们的结果表明,在分开式皮带步行过程中,“快”和“慢”腿的贡献之所以不同,并不是由于皮带间速度的简单差异,因为大多数分开式皮带的肌肉贡献与捆绑式皮带的步行不同。在健康受试者中,不同类型的调节可引起不对称性的增加,减少甚至逆转(例如,plant屈肌,股二头肌短头和股四头肌)。通常,这些模式与先前在偏瘫受试者中描述的适应性表现出很大的相似性。然而,在偏瘫受试者中发现臀中肌和股二头肌短头贡献存在差异,这表明后者不仅与行有关,而且与伴随的赤字有关。

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