Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science and Technology, Xi'an Jiaotong University, 710049 Xi'an, China.
Int J Psychophysiol. 2013 Nov;90(2):143-8. doi: 10.1016/j.ijpsycho.2013.06.021. Epub 2013 Jun 26.
The heart rate is largely under control of the autonomic nervous system. The aim of the present study is to investigate the interactions between the brain and heart underlying volitional control of the heart and to explore the effectiveness of volition as a strategy to control the heart rate without biofeedback. Twenty seven healthy male subjects voluntarily participated in the study and were instructed to decrease and increase their heart beats according to rhythmic, computer generated sound either 10% faster or slower than the subjects' measured heart rate. Sympathetic and parasympathetic activities were estimated with the heart rate variability (HRV) obtained by power spectral analysis of RR intervals. Functional coupling patterns of cerebral cortex with the heart were determined by Partial directed coherence (PDC). In HR(slow) task; HR and sympathetic activity significantly decreased. However parasympathetic activity and power spectral density of EEG in low Alpha (8-10.5 Hz) band significantly increased. Moreover information flow from parietal area (P3 and P4) to RR interval significantly increased. During HR(quick) task; HR, sympathetic activity and power spectral density of EEG in low Beta (14-24 Hz) band significantly increased. Parasympathetic activity significantly decreased. Information flow from FT8, CZ and T8 electrodes to RR interval significantly increased. Our findings suggested that the heart beat can be controlled by volition and is related to some special areas in the cortex.
心率在很大程度上受自主神经系统的控制。本研究旨在探讨大脑与心脏之间的相互作用,这些相互作用是意志控制心脏的基础,并探索在没有生物反馈的情况下,意志作为控制心率的策略的有效性。27 名健康男性自愿参加了这项研究,并被指示根据节奏、计算机生成的声音,将他们的心跳比他们测量的心率快或慢 10%。通过对 RR 间期的功率谱分析来估计自主神经活动,得到心率变异性(HRV)。通过部分定向相干性(PDC)确定大脑皮层与心脏的功能耦合模式。在 HR(慢)任务中,HR 和交感神经活动显著降低。然而,副交感神经活动和低α(8-10.5Hz)频段的 EEG 功率谱密度显著增加。此外,来自顶叶区域(P3 和 P4)到 RR 间隔的信息流显著增加。在 HR(快)任务中,HR、交感神经活动和低β(14-24Hz)频段的 EEG 功率谱密度显著增加,副交感神经活动显著降低。FT8、CZ 和 T8 电极到 RR 间隔的信息流显著增加。我们的研究结果表明,心跳可以通过意志控制,并且与大脑的某些特定区域有关。