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Effect of a cognitive task on online adjustments when avoiding stepping on an obstacle and stepping on a target during walking in young adults

机译:认知任务对在线调整的影响避免避免障碍物,在年轻人走路时踩踏目标

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During locomotion, we respond to environmental and task changes by adjusting steps length and width. Different protocols involving stepping on targets and obstacle avoidance suggest the involvement of cortical and subcortical pathways in these online adjustments. The addition of a concomitant cognitive task (CT) can affect these online corrections depending on the neural pathway used. Thereby, we investigated the online adjustment using a target stepping task and a planar obstacle avoidance task in young adults and analyzed the effect of a CT on these adjustments. Twenty young adults executed two blocks of trials of walking performing the target task (TT) and obstacle avoidance task (OAT), with and without a concomitant CT. In the TT, participants stepped on a target projected on the ground, whereas in the OAT they avoided stepping on an obstacle projected on the ground. The target/obstacle could change its original position in four directions at contralateral foot contact on the ground. Overall, the CT did not affect the latency to start the adjustments due to target/obstacle change. The main changes were restricted to the frontal plane adjustments. The latency for the medial and lateral choices in the OAT was similar to 200 ms, whereas for the TT was similar to 150 ms. These results suggest the involvement of a slow cortical pathway in the OAT in the frontal plane modifications. In turn, the TT may be controlled by one of two fast adjustment neural pathways.
机译:在运动过程中,我们通过调整步长和宽度来响应环境和任务。涉及踩踏目标和障碍避免的不同协议表明皮质和皮质波动途径在这些在线调整中的累积。添加伴随的认知任务(CT)可以根据所使用的神经途径影响这些在线校正。因此,我们使用目标踏步任务和年轻成年人的平面障碍避免任务来调查在线调整,并分析了CT对这些调整的影响。二十名年轻的成年人执行了两种行走的试验,即行走了目标任务(TT)和障碍物避免任务(燕麦),没有伴随的CT。在TT中,参与者踏上了在地面投影的目标上,而在燕麦中,他们在燕麦中,他们避免踩踏地面投射的障碍物。目标/障碍物可以在地面上的对侧脚接触时在四个方向上改变其原始位置。总的来说,CT不影响启动由于目标/障碍物的调整的延迟。主要变化仅限于正面平面调整。燕麦内侧和横向选择的潜伏期类似于200毫秒,而TT类似于150毫秒。这些结果表明慢性皮质途径在燕麦中的常压修改中的参与。反过来,TT可以由两个快速调节神经途径中的一个控制。

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