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为对抗预期和非预期的扰动,预先设定皮质和脊髓的活动状态。

Preparatory cortical and spinal settings to counteract anticipated and non-anticipated perturbations.

机构信息

Department of Medicine, Movement and Sport Sciences, University of Fribourg, Bd de Pérolles, 1700 Fribourg, Switzerland.

Department of Kinesiology, Brock University, St. Catharines, Ontario, Canada.

出版信息

Neuroscience. 2017 Dec 4;365:12-22. doi: 10.1016/j.neuroscience.2017.09.032. Epub 2017 Sep 23.

Abstract

Little is known about how the central nervous system prepares postural responses differently in anticipated compared to non-anticipated perturbations. To investigate this, participants were exposed to translational and rotational perturbations presented in a blocked (anticipated) and a random (non-anticipated) design. The preparatory setting ('central set') was measured by H-reflexes, motor-evoked potentials (MEPs), and short-interval intracortical inhibition (SICI) shortly before perturbation onset in the soleus of 15 healthy adults. Additionally, the behavioral consequences of differential preparatory settings were analyzed by comparing the short- (SLR), medium- (MLR), and long-latency response (LLR) of the soleus after anticipated and non-anticipated rotations and translations. H-reflexes elicited before perturbation were different between conditions (p=0.023) with larger amplitudes in anticipated translations compared to anticipated rotations (37.0%; p=0.048). Reduced SICI was found in the three conditions containing perturbations compared to static standing (p<0.001). Muscular responses assessed after perturbations remained unchanged for the SLR and MLR, whereas the LLR was decreased in anticipated rotations (-36.2%; p=0.002) and increased in anticipated translations (16.7%; p=0.046) compared to the corresponding non-anticipated perturbation. As the SLR and MLR are organized at the spinal and the LLR at the cortical level, the preparatory setting seems to mainly influence cortically mediated postural responses. However, the modulation of the H-reflex before anticipated perturbations indicates that supraspinal centers adjusted Ia-afferent transmission for the soleus in a perturbation-specific manner. Intracortical inhibition was also modulated but differentiates to a lesser extent only between perturbation conditions and unperturbed stance.

摘要

人们对于中枢神经系统如何在预期和非预期的姿势变化中产生不同的姿势反应知之甚少。为了研究这个问题,参与者在一个块(blocked,预期)和随机(random,非预期)设计中暴露于平移和旋转的扰动。在 15 名健康成年人的比目鱼肌中,在扰动发生前的很短时间内,通过 H 反射、运动诱发电位 (MEP) 和短潜伏期内皮质内抑制 (SICI) 来测量预备设置(“中枢设置”)。此外,通过比较预期和非预期旋转和平移后的比目鱼肌的短潜伏期反应(SLR)、中潜伏期反应(MLR)和长潜伏期反应(LLR),分析了不同预备设置的行为后果。在预期的平移中比预期的旋转中,H 反射在条件之间存在差异 (p=0.023),振幅更大 (37.0%;p=0.048)。与静态站立相比,在包含扰动的三种条件下,SICI 降低 (p<0.001)。在三种含有扰动的条件下,评估的肌肉反应对 SLR 和 MLR 保持不变,而在预期的旋转中,LLR 减少(-36.2%;p=0.002),在预期的平移中增加(16.7%;p=0.046),与相应的非预期扰动相比。由于 SLR 和 MLR 是在脊髓水平组织的,而 LLR 是在皮质水平组织的,预备设置似乎主要影响皮质介导的姿势反应。然而,预期扰动前 H 反射的调制表明,脊髓上中枢以特定于扰动的方式调整了 Ia 传入传输到比目鱼肌。皮质内抑制也被调节,但在扰动条件和未受扰的姿势之间差异较小。

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