首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Sensorimotor adaptation to inertial forces in a multi-force environment does not depend on the number of targets: indirect validation of the altered-proprioception hypothesis.
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Sensorimotor adaptation to inertial forces in a multi-force environment does not depend on the number of targets: indirect validation of the altered-proprioception hypothesis.

机译:在多力环境中,感觉运动对惯性力的适应性并不取决于目标的数量:改变本体感觉假说的间接验证。

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摘要

The ability of our sensorimotor system to adapt to changing and complex environmental demands has been under experimental scrutiny for more than a century. Previous works have shown that aimed arm movements adapt quickly and completely to Coriolis force, but incompletely to the combination of Coriolis and centrifugal forces without visual cues. Two hypotheses may be advanced to explain this discrepancy: the workspace-exploration hypothesis, and the degraded-proprioception hypothesis. The aim of this study was to distinguish between the above two alternatives by comparing adaptive improvement during off-axis rotation in subjects pointing at one, three or seven different targets in complete darkness. Two main results emerge: (a) off-axis rotation led initially to errors in the direction of Coriolis force and in the opposite direction of the centrifugal force; (b) the size of the visited workspace has no effect on the way the subjects adapt to a multi-force environment. The lack of a target-number effect and the persistence of lateral errors in the pointing movements performed during rotation of the platform, support the degraded-proprioception rather than the workspace-exploration hypothesis of adaptation to a multi-force environment.
机译:我们的感觉运动系统适应不断变化的复杂环境需求的能力已经经历了一个多世纪的实验研究。以前的工作表明,有针对性的手臂运动可以快速,完全地适应科里奥利力,但不能完全适应科里奥利力和离心力的结合,而没有视觉提示。可以提出两个假设来解释这种差异:工作空间探索假设和降级本体感受假设。这项研究的目的是通过比较在完全黑暗中指向一个,三个或七个不同目标的对象在离轴旋转过程中的适应性改善来区分上述两种选择。出现两个主要结果:(a)轴外旋转最初导致科里奥利力方向和离心力相反方向的误差; (b)所访问的工作空间的大小对受试者适应多力环境的方式没有影响。在平台旋转期间执行的指向运动中,目标数量效应的缺乏和横向误差的持续存在,支持了退化的本体感觉而不是适应多力环境的工作空间探索假设。

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