Dpt. de Ing. de Sistemas y Automatica, E.T.S.I. Industriales, Campus de Teatinos, 29071 Malaga, Spain.
Dpt. de Tecnologia Electronica, E.T.S.I. Informatica, Av. Reina Mercedes, 41010 Sevilla, Spain.
Comput Biol Med. 2014 Apr;47:104-12. doi: 10.1016/j.compbiomed.2014.01.006. Epub 2014 Jan 28.
A mathematical model that provides an overall description of both the short- and long-term mechanisms of arterial pressure regulation is presented. Short-term control is exerted through the baroreceptor reflex while renal elimination plays a role in long-term control. Both mechanisms operate in an integrated way over the compartmental model of the cardiovascular system. The whole system was modelled in MODELICA, which uses a hierarchical object-oriented modelling strategy, under the DYMOLA simulation environment. The performance of the controlled system was analysed by simulation in light of the existing hypothesis and validation tests previously performed with physiological data, demonstrating the effectiveness of both regulation mechanisms under physiological and pathological conditions.
本文提出了一个既能全面描述短期、又能全面描述长期血压调节机制的数学模型。短期控制是通过压力感受器反射实现的,而肾脏排泄在长期控制中发挥作用。这两种机制在心血管系统的隔室模型中以集成的方式运作。整个系统是在 DYMOLA 仿真环境下使用分层面向对象建模策略的 MODELICA 建模的。根据现有的假设和先前使用生理数据进行的验证测试,通过仿真分析了控制系统的性能,证明了这两种调节机制在生理和病理条件下的有效性。