Menger Rudmer, De Haan Alyanne M, Van der Stigchel Stefan, Dijkerman H Chris
Experimental Psychology, Helmholtz Institute, Utrecht University, Heidelberglaan 1, 3508 TC, Utrecht, The Netherlands.
Exp Brain Res. 2021 Jun;239(6):1715-1726. doi: 10.1007/s00221-021-06072-1. Epub 2021 Mar 29.
Multisensory coding of the space surrounding our body, the peripersonal space, is crucial for motor control. Recently, it has been proposed that an important function of multisensory coding is that it allows anticipation of the tactile consequences of contact with a nearby object. Indeed, performing goal-directed actions (i.e. pointing and grasping) induces a continuous visuotactile remapping as a function of on-line sensorimotor requirements. Here, we investigated whether visuotactile remapping can be induced by obstacles, e.g. objects that are not the target of the grasping movement. In the current experiment, we used a cross-modal obstacle avoidance paradigm, in which participants reached past an obstacle to grasp a second object. Participants indicated the location of tactile targets delivered to the hand during the grasping movement, while a visual cue was sometimes presented simultaneously on the to-be-avoided object. The tactile and visual stimulation was triggered when the reaching hand passed a position that was drawn randomly from a continuous set of predetermined locations (between 0 and 200 mm depth at 5 mm intervals). We observed differences in visuotactile interaction during obstacle avoidance dependent on the location of the stimulation trigger: visual interference was enhanced for tactile stimulation that occurred when the hand was near the to-be-avoided object. We show that to-be-avoided obstacles, which are relevant for action but are not to-be-interacted with (as the terminus of an action), automatically evoke the tactile consequences of interaction. This shows that visuotactile remapping extends to obstacle avoidance and that this process is flexible.
对我们身体周围空间,即个人周边空间的多感官编码,对运动控制至关重要。最近,有人提出多感官编码的一个重要功能是它允许人们预测与附近物体接触的触觉后果。事实上,执行目标导向动作(即指向和抓握)会根据在线感觉运动需求引发连续的视觉触觉重映射。在这里,我们研究了视觉触觉重映射是否可以由障碍物诱发,例如不是抓握动作目标的物体。在当前实验中,我们使用了一种跨模态避障范式,参与者伸手越过一个障碍物去抓握另一个物体。参与者指出在抓握动作过程中手部所接收触觉目标的位置,同时有时会在要避开的物体上同时呈现一个视觉提示。当伸手的手经过从一组连续的预定位置(深度在0到200毫米之间,间隔5毫米)中随机抽取的一个位置时,触发触觉和视觉刺激。我们观察到在避障过程中视觉触觉交互的差异取决于刺激触发的位置:当手靠近要避开的物体时发生的触觉刺激会增强视觉干扰。我们表明,与动作相关但不作为动作终点与之交互的要避开的障碍物会自动引发交互的触觉后果。这表明视觉触觉重映射扩展到了避障,并且这个过程是灵活的。