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在具有不同方向和大小交互扭矩的伸手动作过程中皮质和皮质脊髓输出的调制。

Cortical and corticospinal output modulations during reaching movements with varying directions and magnitudes of interaction torques.

作者信息

Asmussen M J, Bailey A Z, Nelson A J

机构信息

Department of Kinesiology, McMaster University, Hamilton L8S 4K1, Canada.

出版信息

Neuroscience. 2015 Dec 17;311:268-83. doi: 10.1016/j.neuroscience.2015.10.032. Epub 2015 Oct 23.

Abstract

The neural command required to coordinate a multi-joint movement is inherently complex. During multi-joint movement of the limb, the force created from movement at one joint may create a torque at a second joint known as an interaction torque. Interaction torques may be assistive or resistive thereby aiding or opposing the motion of the second joint, respectively. For movement to be effectively controlled, the central nervous system should modulate neural output to the muscles to appropriately account for interaction torques. The present study examined the neural output from the primary motor cortex before and during reaching movements that required different combinations of assistive and resistive interaction torques occurring at the shoulder and elbow joints. Using transcranial magnetic stimulation to probe neural output from the primary motor cortex, results indicate that corticospinal output controlling the upper arm is related to resistive interaction torques occurring at the shoulder joint. Further, cortical output to bi-articular muscles is associated with interaction torque and this may be driven by the fact that these muscles are in an advantageous position to control torques produced between inter-connection segments. Humans have a tendency to avoid reaching movements that involve resistive interaction torques and this may be driven by the requirement of increased neural output associated with these movements.

摘要

协调多关节运动所需的神经指令本质上是复杂的。在肢体的多关节运动过程中,一个关节运动产生的力可能会在第二个关节产生一个扭矩,称为相互作用扭矩。相互作用扭矩可能是辅助性的或抵抗性的,从而分别辅助或对抗第二个关节的运动。为了有效地控制运动,中枢神经系统应该调节对肌肉的神经输出,以适当地考虑相互作用扭矩。本研究检查了在涉及肩部和肘部关节处不同组合的辅助性和抵抗性相互作用扭矩的伸展运动之前和期间,初级运动皮层的神经输出。使用经颅磁刺激来探测初级运动皮层的神经输出,结果表明控制上臂的皮质脊髓输出与肩关节处的抵抗性相互作用扭矩有关。此外,对双关节肌肉的皮质输出与相互作用扭矩相关,这可能是由于这些肌肉处于控制相互连接节段之间产生的扭矩的有利位置这一事实所驱动。人类倾向于避免涉及抵抗性相互作用扭矩的伸展运动,这可能是由与这些运动相关的神经输出增加的需求所驱动的。

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