Department of Kinesiology, University of Wisconsin - Milwaukee, Milwaukee, WI, 53201, USA.
Department of Kinesiology, University of Wisconsin - Milwaukee, Milwaukee, WI, 53201, USA.
Brain Cogn. 2021 Feb;147:105653. doi: 10.1016/j.bandc.2020.105653. Epub 2020 Nov 20.
There is a controversy regarding whether visuomotor adaptation heavily involves both implicit and explicit learning processes or not. Likewise, another controversy exists regarding whether interlimb transfer of visuomotor adaptation is related to explicit processes or not. To address the latter issue, we examined interlimb transfer of visuomotor adaptation in an individual with congenital mirror movements, 'DB'. DB has been tested previously using an experimental paradigm in which neurologically intact individuals demonstrated substantial transfer. DB, however, showed no transfer due to impaired interhemispheric communications. In that study, DB was unaware of the visuomotor perturbation. Here, we informed him of the perturbation prior to the experiment to determine whether providing the information would increase interlimb transfer. DB first adapted to a visuomotor rotation with the left arm, then with the right arm during reaching movements. Data from the present study were compared against those from our previous study. Results indicate no transfer across the arms despite the fact that he was aware of the perturbation. Considering overall findings in the literature, we suggest that interlimb transfer does not depend on one's awareness, although its extent can increase when individuals rely on cognitive strategies to deal with perturbations (c.f., Werner et al., 2019).
关于是否强烈涉及内隐和外显学习过程,存在着争议。同样,关于是否涉及显过程,存在着另一个争议。为了解决后者的问题,我们检查了个体的视觉运动适应的肢体间转移,'DB'。DB 以前已经使用一种实验范式进行了测试,其中神经完整的个体表现出了大量的转移。然而,由于半球间通讯受损,DB 没有显示出转移。在这项研究中,DB 不知道视觉运动的干扰。在这里,我们在实验前告诉他这个干扰,以确定提供信息是否会增加肢体间的转移。DB 首先用左臂适应视觉运动旋转,然后在手臂伸展运动中用右臂适应。本研究的数据与我们以前的研究进行了比较。结果表明,尽管他知道干扰,但双臂之间没有转移。考虑到文献中的整体发现,我们认为,尽管其程度可以增加,当个体依赖认知策略来处理干扰时(例如,Werner 等人,2019),肢体间的转移不依赖于个体的意识。