Department of Clothing, Faculty of Human Sciences and Design, Japan Women's University, Tokyo, 112-8681, Japan.
Graduate School of Arts and Sciences, The University of Tokyo, Tokyo, 153-8902, Japan.
Sci Rep. 2023 Feb 2;13(1):1909. doi: 10.1038/s41598-023-29231-6.
Walking with pulling force fields acting at the body center of mass (in the forward or backward directions) is compatible with inclined walking and is used in clinical practice for gait training. From the perspective of known differences in the motor strategies that underlie walking with the respective force fields, the present study elucidated whether the adaptation acquired by walking on a split-belt treadmill with either one of the force fields affects subsequent walking in a force field in the opposite directions. Walking with the force field induced an adaptive and de-adaptive behavior of the subjects, with the aspect evident in the braking and propulsive impulses of the ground reaction force (difference in the peak value between the left and right sides for each stride cycle) as parameters. In the parameters, the adaptation acquired during walking with a force field acting in one direction was transferred to that in the opposite direction only partially. Furthermore, the adaptation that occurred while walking in a force field in one direction was rarely washed out by subsequent walking in a force field in the opposite direction and thus was maintained independently of the other. These results demonstrated possible independence in the neural functional networks capable of controlling walking in each movement task with an opposing force field.
人体质心(向前或向后)受到拉力场作用的行走与倾斜行走兼容,并且在步态训练中用于临床实践。从已知的在各自力场下行走的运动策略的差异来看,本研究阐明了在带有任一个力场的分割带跑步机上行走所获得的适应性是否会影响随后在相反方向的力场中的行走。使用力场行走会引起受试者的适应性和去适应性行为,这一点在地面反作用力的制动和推进冲量(每个步周期左右两侧峰值的差异)作为参数方面表现明显。在这些参数中,在一个方向上使用力场行走时获得的适应性仅部分转移到相反方向。此外,在一个方向的力场中行走时发生的适应性很少被相反方向的力场中的后续行走所消除,因此它独立于其他适应性而存在。这些结果表明,在能够控制每个具有相反力场的运动任务的行走的神经功能网络中存在可能的独立性。