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Visuo-tactile integration and body ownership during self-generated action

机译:自发动作中的视触觉融合和身体所有权

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摘要

Although there is increasing knowledge about how visual and tactile cues from the hands are integrated, little is known about how self-generated hand movements affect such multisensory integration. Visuo-tactile integration often occurs under highly dynamic conditions requiring sensorimotor updating. Here, we quantified visuo-tactile integration by measuring cross-modal congruency effects (CCEs) in different bimanual hand movement conditions with the use of a robotic platform. We found that classical CCEs also occurred during bimanual self-generated hand movements, and that such movements lowered the magnitude of visuo-tactile CCEs as compared to static conditions. Visuo-tactile integration, body ownership and the sense of agency were decreased by adding a temporal visuo-motor delay between hand movements and visual feedback. These data show that visual stimuli interfere less with the perception of tactile stimuli during movement than during static conditions, especially when decoupled from predictive motor information. The results suggest that current models of visuo-tactile integration need to be extended to account for multisensory integration in dynamic conditions.
机译:尽管关于如何整合来自手的视觉和触觉提示的知识越来越多,但是关于自我产生的手部运动如何影响这种多感官融合的知识却鲜为人知。视触觉融合通常发生在需要动态感觉更新的高度动态条件下。在这里,我们通过使用机器人平台测量不同双手双手运动条件下的交叉模态一致性效应(CCE)来量化视觉-触觉整合。我们发现经典的CCE也发生在双手自身产生的双手运动中,并且与静态条件相比,这种运动降低了视觉触觉CCE的大小。通过在手部运动和视觉反馈之间增加时间上的视觉-运动延迟,可以减少视觉-触觉融合,身体所有权和代理感。这些数据表明,与静止状态相比,运动过程中视觉刺激对触觉刺激的感知影响较小,尤其是在与预测性运动信息分离时。结果表明,需要扩展当前的视觉-触觉整合模型,以解决动态条件下的多感官整合。

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