Albanese Antonio, Cheng Limei, Ursino Mauro, Chbat Nicolas W
Philips Research North America, Briarcliff Manor, New York;
Department of Electrical, Electronic, and Information Engineering, University of Bologna, Bologna, Italy; and.
Am J Physiol Heart Circ Physiol. 2016 Apr 1;310(7):H899-921. doi: 10.1152/ajpheart.00230.2014. Epub 2015 Dec 18.
Several cardiovascular and pulmonary models have been proposed in the last few decades. However, very few have addressed the interactions between these two systems. Our group has developed an integrated cardiopulmonary model (CP Model) that mathematically describes the interactions between the cardiovascular and respiratory systems, along with their main short-term control mechanisms. The model has been compared with human and animal data taken from published literature. Due to the volume of the work, the paper is divided in two parts. The present paper is on model development and normophysiology, whereas the second is on the model's validation on hypoxic and hypercapnic conditions. The CP Model incorporates cardiovascular circulation, respiratory mechanics, tissue and alveolar gas exchange, as well as short-term neural control mechanisms acting on both the cardiovascular and the respiratory functions. The model is able to simulate physiological variables typically observed in adult humans under normal and pathological conditions and to explain the underlying mechanisms and dynamics.
在过去几十年里,已经提出了几种心血管和肺部模型。然而,很少有模型涉及这两个系统之间的相互作用。我们团队开发了一种综合心肺模型(CP模型),该模型用数学方法描述了心血管系统和呼吸系统之间的相互作用,以及它们主要的短期控制机制。该模型已与从已发表文献中获取的人体和动物数据进行了比较。由于工作量较大,本文分为两部分。本文介绍模型的开发和正常生理学,而第二部分则介绍模型在缺氧和高碳酸血症条件下的验证。CP模型包括心血管循环、呼吸力学、组织和肺泡气体交换,以及作用于心血管和呼吸功能的短期神经控制机制。该模型能够模拟在正常和病理条件下成年人体内通常观察到的生理变量,并解释其潜在机制和动态变化。