Clinical Neurotechnology Laboratory, Department of Psychiatry and Psychotherapy, Neuroscience Research Center (NWFZ), Charité - University Medicine Berlin, Berlin, Germany.
Applied Neurotechnology Laboratory, Department of Psychiatry and Psychotherapy, University Hospital of Tübingen, Tübingen, Germany.
Sci Rep. 2019 Feb 19;9(1):2243. doi: 10.1038/s41598-018-38447-w.
Self-initiated voluntary acts, such as pressing a button, are preceded by a surface-negative electrical brain potential, the Bereitschaftspotential (BP), that can be recorded over the human scalp using electroencephalography (EEG). While the BP's early component (BP1, generated in the supplementary and cingulate motor area) was linked to motivational, intentional and timing properties, the BP's late component (BP2, generated in the primary motor cortex) was found to be linked to motor execution and performance. Up to now, the BP required to initiate voluntary acts has only been recorded under well-controlled laboratory conditions, and it was unknown whether possible life-threatening decision making, e.g. required to jump into a 192-meter abyss, would impact this form of brain activity. Here we document for the first time pre-movement brain activity preceding 192-meter bungee jumping. We found that the BP's spatiotemporal dynamics reflected by BP1 and BP2 are comparable before 192-meter bungee jumping and jumping from 1-meter. These results, possible through recent advancements in wireless and portable EEG technology, suggest that possible life-threatening decision-making has no impact on the BP's spatiotemporal dynamics.
自发性自愿行为,如按下按钮,先于准备电位(BP),可通过脑电图(EEG)记录在人类头皮上。虽然 BP 的早期成分(BP1,在补充和扣带运动区产生)与动机、意图和时间属性有关,但 BP 的晚期成分(BP2,在初级运动皮层产生)与运动执行和表现有关。到目前为止,只有在控制良好的实验室条件下才记录到启动自愿行为所需的 BP,而且还不知道是否可能危及生命的决策,例如跳入 192 米的深渊,会影响这种形式的大脑活动。在这里,我们首次记录了 192 米蹦极前的运动前大脑活动。我们发现,BP1 和 BP2 反映的 BP 时空动态在 192 米蹦极和 1 米蹦极之前是可比的。这些结果可能得益于无线和便携式 EEG 技术的最新进展,表明可能危及生命的决策对 BP 的时空动态没有影响。