...
首页> 外文期刊>Journal of Neurophysiology >Motor module generalization across balance and walking is impaired after stroke
【24h】

Motor module generalization across balance and walking is impaired after stroke

机译:跨越平衡和行走的电机模块泛化在中风后受损

获取原文
获取原文并翻译 | 示例
           

摘要

Muscle coordination is often impaired after stroke, leading to deficits in the control of walking and balance. In this study, we examined features of muscle coordination associated with reduced walking performance in chronic stroke survivors using motor module (a.k.a. muscle synergy) analysis. We identified differences between stroke survivors and age-similar neurotypical controls in the modular control of both overground walking and standing reactive balance. In contrast to previous studies that demonstrated reduced motor module number poststroke. our cohort of stroke survivors did not exhibit a reduction in motor module number compared with controls during either walking or reactive balance. Instead, the pool of motor modules common to walking and reactive balance was smaller, suggesting reduced generalizability of motor module function across behaviors. The motor modules common to walking and reactive balance tended to be less variable and more distinct, suggesting more reliable output compared with motor modules specific to either behavior. Greater motor module generalization in stroke survivors was associated with faster walking speed, more normal step length asymmetry, and narrower step widths. Our work is the first to show that motor module generalization across walking and balance may help to distinguish important and clinically relevant differences in walking performance across stroke survivors that would have been overlooked by examining only a single behavior. Finally, because similar relationships between motor module generalization and walking performance have been demonstrated in healthy young adults and individuals with Parkinson's disease, this suggests that motor module generalization across walking and balance may be important for well-coordinated walking.
机译:肌肉协调通常在中风后损害,导致行走和平衡控制缺陷。在这项研究中,我们使用电动机模块(A.K.A.肌肉协同作用)分析,检查了与慢性冲程幸存者中的步行性能降低的肌肉协调的特征。我们鉴定了中风幸存者与年龄相似的神经典型对照中的模块化控制中的差异,两者的行走和站立反应平衡。与先前的研究相比,展示了减少的电动机模块数目失败。与步行或反应平衡期间的控制相比,我们的行程幸存者的队列没有表现出电机模块数量的减少。相反,步行和无功平衡共同的电机模块池较小,表明电机模块功能的宽度跨越行为的普遍性。步行和反应平衡共同的电机模块趋于较小,变得较小,更为不同,而是与特定于任何行为的电机模块相比,更可靠的输出。行程幸存者中的更大的电动机模块泛化与更快的步行速度,更正常的步长不对称性和较窄的步长相关联。我们的作品是第一个显示电机模块横跨行走和平衡的泛化可能有助于区分跨行程幸存者的重要和临床相关差异,这些行动幸存者将仅通过检查单一行为来忽视。最后,由于电机模块概括和行走性能之间的类似关系都在健康的年轻人和个人与帕金森氏症被证实,这表明整个行走和平衡该电机模块的推广可能是协调良好的步行重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号