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首页> 外文期刊>Biomedical signal processing and control >Heartbeat evoked potentials (HEP) capture brain activity affecting subsequent heartbeat
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Heartbeat evoked potentials (HEP) capture brain activity affecting subsequent heartbeat

机译:心跳诱发潜力(hep)捕获影响随后心跳的脑活动

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Beat-to-beat heart rate variability is known to be associated with neural activity not only in areas regulating reflexes but also in higher brain areas; however, temporal aspects of involvement of higher brain functions are not clear. The temporal dynamics of brain activity in relation to heart activity can be captured by heartbeat evoked potentials (HEP). The aim of this study is to investigate whether HEP amplitudes across the cardiac cycle could reflect brain activity which contribute to the regulation of the heart rate. We present a new method to analyse the human brain & ndash;heart interactions by contrasting EEG activity with respect to relative duration of EKG R-R intervals. Healthy participants were asked to sit still and fixate their gaze on the computer screen while EEG and EKG were recorded. EKG R peaks were identified and used for splitting EEG data into epochs. All epochs were classified into two groups depending on the difference between adjacent R-R intervals (RRI), i.e., whether the epoch-related RRI was longer (shorter) than the subsequent RRI. HEPs associated with prolongation vs. shortening of RRI were compared by the permutation test. HEP amplitudes in the middle of diastole were more positive at centro-parietal scalp sites before prolongation of RRI (i.e., before deceleration of the heart rate) compared to amplitudes before shortening of RRI (i.e., before acceleration of the heart rate). We show that the method of contrasting HEPs allows capturing brain activity, which contributes to the postponement of the subsequent heartbeat.
机译:众所周知,击败心率变异性不仅在调节反射的区域,而且在更高的脑区域中;然而,延长脑功能的时间的时间方面尚不清楚。与心脏活动相关的脑活动的时间动态可以通过心跳诱发电位(HEP)捕获。本研究的目的是探讨心动周期上的HEP振幅是否可以反映有助于调节心率的脑活动。我们提出了一种分析人脑和Ndash的新方法;通过对脑电图的相对持续时间对比EEG活性的心脏相互作用。要求健康的参与者静坐并在录制eeg和ekg时将他们的凝视固定在电脑屏幕上。识别EKG R峰,并用于将EEG数据分解为时期。根据相邻的R-R间隔(RRI)之间的差异,即,与随后的RRI相比,将所有时期分为两组。通过置换试验比较了与延长延长的肝脏与RRI缩短。在延长RRI(即,在心率速度之前)之前,舒张中间的舒张型在昏迷中间的肿瘤振振在升高(即,在心率下的减速之前)。我们表明,对比肝脏的方法允许捕获脑活动,这有助于推迟随后的心跳。

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