Causal influence of brainstem response to transcutaneous vagus nerve stimulation on cardiovagal outflow

脑干 迷走神经电刺激 流出 医学 神经科学 迷走神经 传出的 自主神经系统 刺激 心脏病学 心率 内科学 心理学 传入的 物理 气象学 血压
作者
Nicola Toschi,Andrea Duggento,Riccardo Barbieri,Ronald G. García,Harrison Fisher,Norman W. Kettner,Vitaly Napadow,Roberta Sclocco
出处
期刊:Brain Stimulation [Elsevier BV]
卷期号:16 (6): 1557-1565 被引量:7
标识
DOI:10.1016/j.brs.2023.10.007
摘要

The autonomic response to transcutaneous auricular vagus nerve stimulation (taVNS) has been linked to the engagement of brainstem circuitry modulating autonomic outflow. However, the physiological mechanisms supporting such efferent vagal responses are not well understood, particularly in humans.We present a paradigm for estimating directional brain-heart interactions in response to taVNS. We propose that our approach is able to identify causal links between the activity of brainstem nuclei involved in autonomic control and cardiovagal outflow.We adopt an approach based on a recent reformulation of Granger causality that includes permutation-based, nonparametric statistics. The method is applied to ultrahigh field (7T) functional magnetic resonance imaging (fMRI) data collected on healthy subjects during taVNS.Our framework identified taVNS-evoked functional brainstem responses with superior sensitivity compared to prior conventional approaches, confirming causal links between taVNS stimulation and fMRI response in the nucleus tractus solitarii (NTS). Furthermore, our causal approach elucidated potential mechanisms by which information is relayed between brainstem nuclei and cardiovagal, i.e., high-frequency heart rate variability, in response to taVNS. Our findings revealed that key brainstem nuclei, known from animal models to be involved in cardiovascular control, exert a causal influence on taVNS-induced cardiovagal outflow in humans.Our causal approach allowed us to noninvasively evaluate directional interactions between fMRI BOLD signals from brainstem nuclei and cardiovagal outflow.
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