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具有生物物理详细传入通路的闭环压力反射模型。

Closed-loop baroreflex model with biophysically detailed afferent pathway.

作者信息

Fernandes Luciano Gonçalves, Müller Lucas Omar, Feijóo Raúl Antonino, Blanco Pablo Javier

机构信息

Instituto de Ciências Biológicas e da Saúde, Universidade Federal Rural do Rio de Janeiro, Rio de Janeiro, Brazil.

Instituto Nacional de Ciência e Tecnologia em Medicina Assistida por Computação Científica, Rio de Janeiro, Brazil.

出版信息

Int J Numer Method Biomed Eng. 2024 Sep;40(9):e3849. doi: 10.1002/cnm.3849. Epub 2024 Jul 25.

Abstract

In this work, we couple a lumped-parameter closed-loop model of the cardiovascular system with a physiologically-detailed mathematical description of the baroreflex afferent pathway. The model features a classical Hodgkin-Huxley current-type model for the baroreflex afferent limb (primary neuron) and for the second-order neuron in the central nervous system. The pulsatile arterial wall distension triggers a frequency-modulated sequence of action potentials at the afferent neuron. This signal is then integrated at the brainstem neuron model. The efferent limb, representing the sympathetic and parasympathetic nervous system, is described as a transfer function acting on heart and blood vessel model parameters in order to control arterial pressure. Three in silico experiments are shown here: a step increase in the aortic pressure to evaluate the functionality of the reflex arch, a hemorrhagic episode and an infusion simulation. Through this model, it is possible to study the biophysical dynamics of the ionic currents proposed for the afferent limb components of the baroreflex during the cardiac cycle, and the way in which currents dynamics affect the cardiovascular function. Moreover, this system can be further developed to study in detail each baroreflex loop component, helping to unveil the mechanisms involved in the cardiovascular afferent information processing.

摘要

在这项工作中,我们将心血管系统的集总参数闭环模型与压力反射传入通路的生理学详细数学描述相结合。该模型的特点是采用经典的霍奇金 - 赫胥黎电流型模型来描述压力反射传入支(初级神经元)和中枢神经系统中的二级神经元。搏动性动脉壁扩张在传入神经元处触发调频动作电位序列。然后该信号在脑干神经元模型处进行整合。传出支代表交感和副交感神经系统,被描述为一个传递函数,作用于心脏和血管模型参数以控制动脉血压。这里展示了三个计算机模拟实验:主动脉压力的阶跃增加以评估反射弧的功能、出血事件和输液模拟。通过这个模型,可以研究心动周期中压力反射传入支成分所提出的离子电流的生物物理动力学,以及电流动力学影响心血管功能的方式。此外,该系统可以进一步开发以详细研究每个压力反射环组件,有助于揭示心血管传入信息处理所涉及的机制。

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