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本文引用的文献

1
The role of anticipatory postural adjustments in compensatory control of posture: 1. Electromyographic analysis.姿势预备性调整在姿势代偿控制中的作用:1. 肌电图分析。
J Electromyogr Kinesiol. 2010 Jun;20(3):388-97. doi: 10.1016/j.jelekin.2009.06.006. Epub 2009 Aug 5.
2
Evaluation of ankle joint proprioception following injection of the anterior talofibular ligament*.评价距腓前韧带注射后踝关节本体感觉。
J Orthop Sports Phys Ther. 1986;8(2):70-6. doi: 10.2519/jospt.1986.8.2.70.
3
Can prepared anticipatory postural adjustments be updated by proprioception?预先准备好的预期姿势调整能否通过本体感觉进行更新?
Neuroscience. 2008 Aug 26;155(3):640-8. doi: 10.1016/j.neuroscience.2008.06.021. Epub 2008 Jun 17.
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The effect of short-term changes in body mass distribution on feed-forward postural control.体重分布的短期变化对前馈姿势控制的影响。
J Electromyogr Kinesiol. 2009 Oct;19(5):931-41. doi: 10.1016/j.jelekin.2008.05.003. Epub 2008 Jul 9.
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Possible factors related to functional ankle instability.与功能性踝关节不稳相关的可能因素。
J Orthop Sports Phys Ther. 2008 Mar;38(3):150-7. doi: 10.2519/jospt.2008.2524.
6
Dependence of anticipatory postural adjustments for step initiation on task movement features: a study based on dynamometric and accelerometric data.步起始预期姿势调整对任务运动特征的依赖性:一项基于测力和加速度测量数据的研究
Conf Proc IEEE Eng Med Biol Soc. 2006;2006:1489-92. doi: 10.1109/IEMBS.2006.260731.
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Role of lateral muscles and body orientation in feedforward postural control.外侧肌肉和身体方位在前馈姿势控制中的作用。
Exp Brain Res. 2008 Feb;184(4):547-59. doi: 10.1007/s00221-007-1123-9. Epub 2007 Oct 2.
8
Musculature and biomechanics of the trunk in the maintenance of upright posture.维持直立姿势时躯干的肌肉组织与生物力学
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The effect of short-term changes in the body mass on anticipatory postural adjustments.体重短期变化对预期姿势调整的影响。
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10
Muscle synergies during voluntary body sway: combining across-trials and within-a-trial analyses.自主身体摆动过程中的肌肉协同作用:结合跨试验和试验内分析
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姿势预备性调整在姿势补偿控制中的作用:2. 生物力学分析。

The role of anticipatory postural adjustments in compensatory control of posture: 2. Biomechanical analysis.

机构信息

Department of Physical Therapy, University of Illinois at Chicago, IL 60612, USA.

出版信息

J Electromyogr Kinesiol. 2010 Jun;20(3):398-405. doi: 10.1016/j.jelekin.2010.01.002. Epub 2010 Feb 13.

DOI:10.1016/j.jelekin.2010.01.002
PMID:20156693
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2859839/
Abstract

The central nervous system (CNS) utilizes anticipatory (APAs) and compensatory (CPAs) postural adjustments to maintain equilibrium while standing. It is known that these postural adjustments involve displacements of the center of mass (COM) and center of pressure (COP). The purpose of the study was to investigate the relationship between APAs and CPAs from a kinetic and kinematic perspective. Eight subjects were exposed to external predictable and unpredictable perturbations induced at the shoulder level while standing. Kinematic and kinetic data were recorded and analyzed during the time duration typical for anticipatory and compensatory postural adjustments. When the perturbations were unpredictable, the COM and COP displacements were larger compared to predictable conditions with APAs. Thus, the peak of COM displacement, after the pendulum impact, in the posterior direction reached 28+/-9.6mm in the unpredictable conditions with no APAs whereas it was 1.6 times smaller, reaching 17+/-5.5mm during predictable perturbations. Similarly, after the impact, the peak of COP displacement in the posterior direction was 60+/-14 mm for unpredictable conditions and 28+/-3.6mm for predictable conditions. Finally, the times of the peak COM and COP displacements were similar in the predictable and unpredictable conditions. This outcome provides additional knowledge about how body balance is controlled in presence and in absence of information about the forthcoming perturbation. Moreover, it suggests that control of posture could be enhanced by better utilization of APAs and such an approach could be considered as a valuable modality in the rehabilitation of individuals with balance impairment.

摘要

中枢神经系统(CNS)利用预期性(APAs)和补偿性(CPAs)姿势调整来维持站立时的平衡。已知这些姿势调整涉及质心(COM)和压力中心(COP)的位移。本研究的目的是从动力学和运动学的角度研究 APAs 和 CPAs 之间的关系。8 名受试者在站立时暴露于肩部水平的可预测和不可预测的外部扰动。在典型的预期性和补偿性姿势调整时间范围内记录和分析运动学和动力学数据。当扰动是不可预测的时,COM 和 COP 的位移与具有 APAs 的可预测条件相比更大。因此,在没有 APAs 的不可预测条件下,COM 位移峰值在向后方向上达到 28+/-9.6mm,而在可预测的扰动下,其峰值为 17+/-5.5mm,小了 1.6 倍。类似地,在冲击后,COP 位移峰值在向后方向上为不可预测条件下的 60+/-14mm,而在可预测条件下为 28+/-3.6mm。最后,可预测和不可预测条件下 COM 和 COP 位移峰值的时间相似。这一结果提供了关于在存在和不存在即将到来的扰动的信息的情况下,身体平衡是如何控制的更多知识。此外,它表明通过更好地利用 APAs 可以增强对姿势的控制,并且这种方法可以被认为是平衡障碍个体康复的一种有价值的方式。