Department of Physical Therapy, University of Illinois at Chicago, Chicago, IL 60612, USA.
Clin Neurophysiol. 2012 May;123(5):1016-26. doi: 10.1016/j.clinph.2011.09.014. Epub 2011 Oct 7.
The purpose was to investigate two types of feed-forward postural adjustments associated with preparation to predictable external perturbations.
Nine subjects stood on a wedge, toes-up or toes-down while a pendulum impacted their shoulders. EMGs of leg and trunk muscles were analyzed within the framework of the uncontrolled manifold hypothesis.
Early postural adjustments (EPAs) were seen 400-500 ms and anticipatory postural adjustments (APAs), 100-150 ms prior to the impact. EPAs and APAs were also seen in the time profiles of muscle modes representing muscle groups with linear scaling of the activation levels. Center of pressure shifts were stabilized by co-varied adjustments in muscle mode magnitudes across trials. The index of these multi-muscle synergies showed two drops (anticipatory synergy adjustments, ASAs), prior to EPA and APA in each subject. The findings were consistent between the two conditions.
The results show that feed-forward postural adjustments represent a sequence of two phenomena, EPAs and APAs. Each of those is preceded by ASAs that reduce stability of a variable that is to be adjusted during the EPAs and APAs. The findings fit a hierarchical scheme with synergic few-to-many mappings at each level of the hierarchy based on the referent body configuration hypothesis.
The results show the complexity of the postural preparation to action. Potentially, they have implications for the current strategies of rehabilitation of patients with neuro-motor disorders characterized by impaired postural control.
目的是研究与准备可预测的外部干扰相关的两种前馈姿势调整。
9 名受试者站在楔形物上,脚趾向上或向下,同时摆锤撞击他们的肩膀。在非控制流形假说的框架内分析腿部和躯干肌肉的肌电图。
在冲击前 400-500ms 出现早期姿势调整(EPAs),在 100-150ms 出现预期姿势调整(APAs)。在代表肌肉群的肌肉模式的时间曲线中也可以看到 EPAs 和 APAs,这些肌肉群的激活水平呈线性比例。在整个试验中,通过肌肉模式幅度的协变调整稳定了压力中心的偏移。这些多肌肉协同作用的指标在每个受试者的 EPA 和 APA 之前显示出两个下降(预期协同调整,ASAs)。这一发现与两种情况都一致。
结果表明,前馈姿势调整代表了两个现象的序列,即 EPAs 和 APAs。在每个现象之前,都有 ASAs 会降低在 EPAs 和 APAs 期间要调整的变量的稳定性。这些发现符合基于参照身体配置假说的层次结构中每一级协同少数到多数映射的分层方案。
结果显示了对动作的姿势准备的复杂性。它们可能对目前神经运动障碍患者的康复策略有影响,这些患者的姿势控制受损。