Hardesty Russell L, Motjabavi Helia, Gemoets Darren E, Wolpaw Jonathan R
National Center for Adaptive Neurotechnologies (NCAN), Albany, NY.
Department of Veterans Affairs, Samuel S. Stratton Medical Center, Albany, NY.
bioRxiv. 2024 Aug 23:2024.08.22.609228. doi: 10.1101/2024.08.22.609228.
Humans can acquire and maintain motor skills throughout their lives through motor learning. Motor learning and skill acquisition are essential for rehabilitation following neurological disease or injury. Adaptation, the initial stage of motor learning, involves short-term changes in motor performance in response to a new demand in the person's environment. Repeated adaptation can improve skill performance and result in long-term skill retention. Locomotor adaptation is extensively studied using split-belt treadmill paradigms. In this study we explored whether bidirectional walking (BDW) on a split-belt treadmill can induce short-term gait adaptations. Twelve healthy volunteers participated in our single session, starting with 2 minutes of normal walking (NW), followed by four 5-minute blocks of BDW with a 1-minute passive rest in between blocks, and ending with another 2-minute of NW. We recorded body kinematics and ground reaction forces throughout the experiment. Participants quickly adapted to BDW with both legs showing decreased step lengths. However, only the backward-walking leg exhibited aftereffects upon returning to NW, indicating short-term adaptation. Notable kinematic changes were observed, particularly in hip extension and pelvis tilt, though these varied among participants. Our findings suggest that BDW induces unilateral adaptations despite bilateral changes in gait, offering new insights into locomotor control and spinal CPG organization.
人类可以通过运动学习在一生中获得并保持运动技能。运动学习和技能习得对于神经疾病或损伤后的康复至关重要。适应是运动学习的初始阶段,涉及运动表现的短期变化,以响应个体环境中的新需求。反复适应可以提高技能表现并导致长期技能保持。使用分带式跑步机范式对运动适应进行了广泛研究。在本研究中,我们探讨了在分带式跑步机上双向行走(BDW)是否能诱导短期步态适应。12名健康志愿者参加了我们的单次实验,开始时进行2分钟的正常行走(NW),随后是四个5分钟的BDW阶段,每个阶段之间有1分钟的被动休息,最后再进行2分钟的NW。我们在整个实验过程中记录了身体运动学和地面反作用力。参与者迅速适应了BDW,双腿的步长均减小。然而,只有向后行走的腿在恢复到NW时表现出后效,表明存在短期适应。观察到了显著的运动学变化,特别是在髋关节伸展和骨盆倾斜方面,尽管这些变化在参与者之间有所不同。我们的研究结果表明,尽管步态存在双侧变化,但BDW诱导了单侧适应,为运动控制和脊髓中枢模式发生器组织提供了新的见解。