Department of Neurology, Christian Doppler Klinik, Paracelsus Medical University, Salzburg, Austria.
Karl Landsteiner Institut für Neurorehabilitation und Raumfahrtneurologie, Salzburg, Austria.
Brain Behav. 2021 Aug;11(8):e02124. doi: 10.1002/brb3.2124. Epub 2021 Jul 21.
Many researchers took advantage of the well-established rubber hand illusion (RHI) paradigm to explore the link between the sense of body ownership and the different brain structures and networks. Here, we aimed to review the studies that have investigated this phenomenon by means of neurophysiological techniques.
The MEDLINE, accessed by Pubmed and EMBASE electronic databases, was searched using the medical subject headings: "Rubber hand illusion" AND "Transcranial magnetic stimulation (TMS)" OR "Evoked potentials (EP)" OR "Event related potentials (ERP)" OR "Electroencephalography (EEG)".
Transcranial magnetic stimulation studies revealed a significant excitability drop in primary motor cortex hand circuits accompanying the disembodiment of the real hand during the RHI experience and that the perceived ownership over the rubber hand is associated with normal parietal-motor communication. Moreover, TMS provided causal evidence that the extrastriate body area is involved in the RHI and subsequently in body representation, while neuromodulation of ventral premotor area and the inferior parietal lobe did not result in an enhancement of embodiment. EP and ERP studies suggest that pre-existing body representations may affect larger stages of tactile processing and support predictive coding models of the functional architecture of multisensory integration in bodily perceptual experience. High-frequency oscillations on EEG play a role in the integrative processing of stimuli across modalities, and EEG activity in γ band activity in the parietal area reflects the visuotactile integration process. EEG studies also revealed that RHI is associated with the neural circuits underlying motor control and that premotor areas play a crucial role in mediating illusory body ownership.
Neurophysiological studies shed new light on our understanding of the different aspects that contribute to the formation of a coherent self-awareness in humans.
许多研究人员利用成熟的橡胶手错觉(RHI)范式来探索身体所有权的感觉与不同的大脑结构和网络之间的联系。在这里,我们旨在通过神经生理技术来回顾研究这种现象的研究。
通过 Pubmed 和 EMBASE 电子数据库检索 MEDLINE,使用医学主题词检索:“橡胶手错觉”和“经颅磁刺激(TMS)”或“诱发电位(EP)”或“事件相关电位(ERP)”或“脑电图(EEG)”。
经颅磁刺激研究表明,在 RHI 体验中,真实手的脱体伴随着初级运动皮层手部回路的兴奋性显著下降,并且对橡胶手的感知所有权与正常的顶叶-运动通讯有关。此外,TMS 提供了因果证据,表明外纹状体区参与了 RHI 随后参与了身体表现,而对腹侧运动前区和下顶叶的神经调节并没有导致体现的增强。EP 和 ERP 研究表明,预先存在的身体表现可能会影响触觉处理的更大阶段,并支持多感觉整合的功能架构的预测编码模型在身体知觉体验中的作用。EEG 上的高频振荡在跨模态的刺激整合处理中起作用,并且顶叶区域中的 γ 波段活动反映了视触整合过程。EEG 研究还表明,RHI 与运动控制的神经回路有关,而运动前区在介导幻觉身体所有权方面起着至关重要的作用。
神经生理学研究为我们理解人类形成一致自我意识的不同方面提供了新的认识。