Campbell K B, Ringo J A, Neti C, Alexander J E
Ann Biomed Eng. 1984;12(2):209-31. doi: 10.1007/BF02584231.
Studies of left ventricle (LV) and systemic arterial (SA) interaction can be grouped into four categories: 1) prediction of pressure and flow waveforms, 2) changes in LV/SA function with changes in SA properties, 3) identification of criteria that reveal matching between LV and SA properties, 4) definition of LV afterload. Whereas results from studies in categories 1, 2, and 3 reveal the consequences of interaction, results from studies in category 4 come closest to revealing the true character of LV/SA interaction. A useful description arising from category 4 is that of a circular feedback path connecting LV outflow, SA input-impedance, LV pressure, and LV pump properties. The identification of a node in this scheme results in the separation of LV functions into active functions and loading functions and the separation of LV/SA load into LV load and SA loading elements. The time-varying LV elastance participates in both LV active functions and LV loading functions, with the former dominating the latter. Total peripheral resistance dominates all other LV and SA loading elements in its loading effects. Although an elastance-resistance LV model coupled with a simple second-order SA load model accounts for many reported observations on LV/SA interaction, data from sudden aortic occlusion studies indicate a need to consider yet another interaction action. Evidence is presented to suggest the existence of an LV pump element that couples ejection events with relaxation and filling events.
对左心室(LV)与体循环动脉(SA)相互作用的研究可分为四类:1)压力和血流波形预测;2)SA特性改变时LV/SA功能的变化;3)揭示LV与SA特性匹配的标准识别;4)LV后负荷的定义。虽然第1、2和3类研究的结果揭示了相互作用的后果,但第4类研究的结果最接近揭示LV/SA相互作用的真实特性。第4类研究产生的一个有用描述是,一条循环反馈路径连接LV流出、SA输入阻抗、LV压力和LV泵特性。在该方案中识别一个节点会导致LV功能分离为主动功能和负荷功能,以及LV/SA负荷分离为LV负荷和SA负荷元件。时变LV弹性参与LV主动功能和LV负荷功能,前者占主导地位。总外周阻力在其负荷效应中主导所有其他LV和SA负荷元件。尽管一个弹性-阻力LV模型与一个简单的二阶SA负荷模型相结合,可以解释许多关于LV/SA相互作用的报道观察结果,但来自突然主动脉闭塞研究的数据表明,需要考虑另一种相互作用机制。有证据表明存在一个LV泵元件,它将射血事件与舒张和充盈事件联系起来。