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Quantification of Different Regulatory Pathways Contributing to Heartbeat Dynamics during Multiple Stimuli: a Proof of the Concept

机译:量化在多个刺激过程中有助于心跳动力学的不同调节途径:概念的证明。

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The dynamical interplay between brain and heart is mediated by several feedback mechanisms including the central autonomic network and baroreflex loop at a peripheral level, also for a short-term regulation. State of the art focused on the characterization of each regulatory pathway through a single stressor elicitation. However, no studies targeted the actual quantification of different mediating routes leading to the generation of heartbeat dynamics, particularly in case of combined exogenous stimuli. In this study, we propose a new approach based on computational modeling to quantify the contribution of multiple concurrent stimuli in modulating cardiovascular dynamics. In this preliminary attempt, the model estimates the high-frequency power of heartbeat dynamics, and derives disentangling coefficients quantifying the effect of multiple elicitations. Model evaluation is performed on healthy rate variability (HRV) series from fourteen healthy subjects undergoing physical (tilt-table) and mental stressors (aritmetics), as well as their combined administration. Results indicate that, at a group-wise level, in base of concurrent physical and mental elicitations, the physical stressor contributes for the 85% of the resulting heartbeat dynamics. These findings are in agreement with the current knowledge on heartbeat regulatory systems, providing valuable perspectives on the quantification of underlying generative mechanisms of HRV.
机译:大脑和心脏之间的动态相互作用是由几种反馈机制介导的,包括中央自主神经网络和外周水平的压力反射循环,这也是一种短期调节。现有技术集中于通过单个应激源诱导的每个调节途径的表征。然而,没有研究针对导致心跳动力学产生的不同介导途径的实际定量,特别是在组合外源性刺激的情况下。在这项研究中,我们提出了一种基于计算模型的新方法,以量化多个并行刺激在调节心血管动力学中的作用。在这种初步尝试中,该模型估算了心跳动力学的高频功率,并得出了量化多个激发效应的解缠结系数。模型评估是对十四名接受物理(倾斜表)和精神压力(镇静剂)治疗的健康受试者及其组合给药的健康速率变异性(HRV)系列进行的。结果表明,在团体层面上,在并发的身体和精神启发的基础上,身体压力源贡献了所产生心跳动力学的85%。这些发现与心跳调节系统的当前知识相一致,为量化HRV的潜在生成机制提供了有价值的观点。

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