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朝向触觉目标的受限和不受限目标导向运动之间的曲率差异。

Differences in curvature between constrained and unconstrained goal-directed movements to haptic targets.

作者信息

van der Graaff Marieke C W, Brenner Eli, Smeets Jeroen B J

机构信息

MOVE Research Institute Amsterdam, Faculty of Human Movement Sciences, VU University, Amsterdam, The Netherlands,

出版信息

Exp Brain Res. 2014 Nov;232(11):3445-51. doi: 10.1007/s00221-014-4030-x. Epub 2014 Jul 10.

Abstract

Trajectories of goal-directed movements are less curved for movements over a surface (constrained) than for movements in empty space (unconstrained). To study whether this difference arises from feeling the surface slip across the skin or having to control the movements in a third dimension, we manipulated the available tactile information and the compliance of the surface. Participants were instructed to make straight movements towards haptic targets in the mid-sagittal plane. We found that constrained movements were less curved than unconstrained movements. The reduction of curvature was also visible with strongly reduced tactile information and for very compliant surfaces, so feeling the surface slip across the skin and having to control the movements in the third dimension are not critical. The reduced curvature when moving over a surface might arise from the extra information that the surface gives about the third dimension or from the extra information about the direction of the movement provided by the additional force needed to overcome friction.

摘要

与在空空间中(无约束)的动作相比,在表面上(受约束)的目标导向动作轨迹的弯曲度更小。为了研究这种差异是否源于感觉到表面在皮肤上滑动或必须在三维空间中控制动作,我们操纵了可用的触觉信息和表面的顺应性。参与者被指示在矢状面中部朝着触觉目标进行直线动作。我们发现受约束的动作比无约束的动作弯曲度更小。在触觉信息大幅减少以及表面非常柔顺的情况下,可以看到弯曲度的降低,因此感觉到表面在皮肤上滑动以及必须在三维空间中控制动作并非关键因素。在表面上移动时弯曲度降低可能源于表面提供的关于三维空间的额外信息,或者源于克服摩擦力所需的额外力所提供的关于动作方向的额外信息。

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