NeXT: Neurophysiology and Neuroengineering of Human-Technology Interaction Research Unit, Campus Bio-Medico University , Rome, Italy.
The BioRobotics Institute, Scuola Superiore Sant'Anna , Pisa, Italy.
Cogn Neurosci. 2020 Jul-Oct;11(4):216-228. doi: 10.1080/17588928.2020.1793751. Epub 2020 Aug 4.
Over a lifetime of experience, the representation of the body is built upon congruent integration of multiple elements constituting the sensorimotor loop. To investigate its robustness against the rupture of congruency between senses and with motor command, we selectively manipulated in healthy subjects the binds between sight, proprioception, and efferent motor command. Two experiments based on the Moving Hand Illusion were designed employing Tendon Vibration Illusion to modulate proprioception and generate illusory altered feedback of movement. In Experiment A, visuomotor congruency was modulated by introducing adelay between complex multifingered movements performed by arobotic hand and real movement of each participant's hand. In the presence of the motor command, visuomotor congruency enhanced ownership, agency, and skin conductance, while proprioceptive-motor congruency was not effective, confirming the prevalence of vision upon proprioception. In Experiment B, the impact of visuo-proprioceptive congruency was tested in the absence of motor command because the robotic hand moved autonomously. Intersensory congruency compensated for the absence of motor command only for ownership. Skin conductance in Exp Band Proprioceptive Drift in both experiments did not change. Results suggest that ownership and agency are independently processed, and presence of the efferent component modulates sensory feedbacks salience. The brain seems to require the integration of at least two streams of congruent information. Bodily awareness can be generated from sensory information alone, but to feel in charge of the body, senses must be double-checked with the prediction generated from efference copy, which is treated as an additional sensory modality.
在一生的经验中,身体的表现是基于构成感觉运动回路的多个元素的一致整合建立的。为了研究其对感觉和运动指令之间一致性破裂的稳健性,我们在健康受试者中选择性地操纵了视觉、本体感觉和传出运动指令之间的联系。设计了两个基于运动手错觉的实验,使用肌腱振动错觉来调节本体感觉并产生运动的错觉改变反馈。在实验 A 中,通过在机器人手执行的复杂多指运动和每个参与者的手的实际运动之间引入延迟来调节视动一致性。在存在运动指令的情况下,视动一致性增强了所有权、代理权和皮肤电导,而本体感觉运动一致性无效,这证实了视觉对本体感觉的主导地位。在实验 B 中,由于机器人手自主移动,因此在没有运动指令的情况下测试了视知觉一致性的影响。仅在所有权方面,感觉间一致性补偿了运动指令的缺失。实验 B 和实验 B 中的皮肤电导和本体感觉漂移都没有变化。结果表明,所有权和代理权是独立处理的,传出成分的存在调节了感觉反馈的显著性。大脑似乎需要整合至少两条一致信息的流。身体意识可以仅从感觉信息中产生,但要感觉到对身体的控制,感觉必须与来自传出副本的预测进行双重检查,传出副本被视为一种额外的感觉模态。