Leo Fabrizio, Nataletti Sara, Brayda Luca
Robotics, Brain, and Cognitive Sciences, Istituto Italiano di Tecnologia, Genoa, Italy.
DIBRIS, University of Genoa, Genoa, Italy.
Exp Brain Res. 2020 Dec;238(12):2865-2875. doi: 10.1007/s00221-020-05944-2. Epub 2020 Oct 13.
Vision of the body has been reported to improve tactile acuity even when vision is not informative about the actual tactile stimulation. However, it is currently unclear whether this effect is limited to body parts such as hand, forearm or foot that can be normally viewed, or it also generalizes to body locations, such as the shoulder, that are rarely before our own eyes. In this study, subjects consecutively performed a detection threshold task and a numerosity judgment task of tactile stimuli on the shoulder. Meanwhile, they watched either a real-time video showing their shoulder or simply a fixation cross as control condition. We show that non-informative vision improves tactile numerosity judgment which might involve tactile acuity, but not tactile sensitivity. Furthermore, the improvement in tactile accuracy modulated by vision seems to be due to an enhanced ability in discriminating the number of adjacent active electrodes. These results are consistent with the view that bimodal visuotactile neurons sharp tactile receptive fields in an early somatosensory map, probably via top-down modulation of lateral inhibition.
据报道,即使视觉信息与实际触觉刺激无关,对身体的视觉也能提高触觉敏锐度。然而,目前尚不清楚这种效应是否仅限于手部、前臂或足部等通常可以看到的身体部位,还是也适用于很少出现在我们眼前的身体部位,比如肩部。在本研究中,受试者连续在肩部执行触觉刺激的检测阈值任务和数量判断任务。同时,他们观看实时显示其肩部的视频,或者仅观看注视十字作为对照条件。我们发现,非信息性视觉改善了触觉数量判断,这可能涉及触觉敏锐度,但不涉及触觉敏感性。此外,视觉调节的触觉准确性的提高似乎是由于辨别相邻活动电极数量的能力增强。这些结果与以下观点一致,即双峰视觉触觉神经元可能通过自上而下的侧抑制调节,在早期体感图谱中锐化触觉感受野。