Weiser-Bitoun Ido, Davoodi Moran, Rosenberg Aviv A, Alexandrovich Alexandra, Yaniv Yael
Biomedical Engineering Faculty, Technion-IIT, Haifa, Israel.
Computer Science Faculty Technion-IIT, Haifa, Israel.
Front Physiol. 2021 Jun 30;12:665709. doi: 10.3389/fphys.2021.665709. eCollection 2021.
The interactions between the autonomic nervous system (ANS), intrinsic systems (e.g., endocrine), and internal pacemaker mechanisms govern short (milliseconds-seconds)- and long (seconds-minutes)-range heart rate variability (HRV). However, there is a debate regarding the identity of the mechanism underlying HRV on each time scale. We aim to design a general method that accurately differentiates between the relative contribution of the ANS and pacemaker mechanisms to HRV in various mammals, without the need for drug perturbations or organ isolation. Additionally, we aim to explore the universality of the relative contribution of the ANS and pacemaker system of different mammals.
This work explored short- and long-range HRVs using published ECG data from dogs, rabbits, and mice. To isolate the effects of ANS on HRV, ECG segments recorded before and after ANS-blockade were compared.
Differentiation of the ANS from extrinsic and intrinsic pacemaker mechanisms was successfully achieved. In dogs, the internal pacemaker mechanisms were the main contributors to long-range and the ANS to short-range HRV. In rabbits and mice, the ANS and the internal pacemaker mechanisms affected both time scales, and anesthesia changed the relative contribution of the pacemaker mechanism to short- and long-range HRVs. In mice, the extrinsic mechanisms affected long-range HRV, while their effect was negligible in rabbits.
We offer a novel approach to determine the relative contributions of ANS and extrinsic and intrinsic pacemaker mechanisms to HRV and highlight the importance of selecting mammalian research models with HRV mechanisms representative of the target species of interest.
自主神经系统(ANS)、内在系统(如内分泌系统)和内部起搏器机制之间的相互作用控制着短(毫秒至秒)和长(秒至分钟)范围的心率变异性(HRV)。然而,关于每个时间尺度上HRV潜在机制的身份存在争议。我们旨在设计一种通用方法,无需药物干扰或器官分离就能准确区分ANS和起搏器机制对各种哺乳动物HRV的相对贡献。此外,我们旨在探索不同哺乳动物ANS和起搏器系统相对贡献的普遍性。
这项研究使用已发表的狗、兔子和小鼠的心电图数据来探究短程和长程HRV。为了分离ANS对HRV的影响,比较了ANS阻断前后记录的心电图片段。
成功实现了ANS与外在和内在起搏器机制的区分。在狗中,内部起搏器机制是长程HRV的主要贡献者,而ANS是短程HRV的主要贡献者。在兔子和小鼠中,ANS和内部起搏器机制在两个时间尺度上都有影响,并且麻醉改变了起搏器机制对短程和长程HRV的相对贡献。在小鼠中,外在机制影响长程HRV,而在兔子中其影响可忽略不计。
我们提供了一种新方法来确定ANS以及外在和内在起搏器机制对HRV的相对贡献,并强调了选择具有目标感兴趣物种代表性HRV机制的哺乳动物研究模型的重要性。