Gao E, Young W L, Pile-Spellman J, Ornstein E, Ma Q
Department of Electrical Engineering, Columbia University, New York, New York 10032, USA.
Am J Physiol. 1998 Mar;274(3):H1023-31. doi: 10.1152/ajpheart.1998.274.3.H1023.
The shape of the autoregulation curve for cerebral blood flow (CBF) vs. pressure is depicted in a variety of ways to fit experimentally derived data. However, there is no general empirical description to reproduce CBF changes resulting from systemic arterial pressure variations that is consistent with the reported data. We analyzed previously reported experimental data used to construct autoregulation curves. To improve on existing portrayals of the fitting of the observed data, a compartmental model was developed for synthesis of the autoregulation curve. The resistive arterial and arteriolar network was simplified as an autoregulation device (ARD), which consists of four compartments in series controlling CBF. Each compartment consists of a group of identical vessels in parallel. The response of each vessel category to changes in perfusion pressure was simulated using reported experimental data. The CBF-pressure curve was calculated from the resistance of the ARD. The predicted autoregulation curve was consistent with reported experimental data. The lower and upper limits of autoregulation (LLA and ULA) were predicted as 69 and 153 mmHg, respectively. The average value of the slope of the CBF-pressure curve below LLA and beyond ULA was predicted as 1.3 and 3.3% change in CBF per mmHg, respectively. Our four-compartment ARD model, which simulated small arteries and arterioles, predicted an autoregulation function similar to experimental data with respect to the LLA, ULA, and average slopes of the autoregulation curve below LLA and above ULA.
脑血流量(CBF)与压力的自动调节曲线形状有多种呈现方式以拟合实验得出的数据。然而,对于因体循环动脉压变化导致的CBF变化,目前尚无一种通用的经验描述能与已报道的数据相一致。我们分析了先前用于构建自动调节曲线的实验数据。为改进对观测数据拟合的现有描述,我们开发了一种用于合成自动调节曲线的房室模型。将阻力性动脉和小动脉网络简化为一个自动调节装置(ARD),它由四个串联的房室组成,控制着CBF。每个房室由一组并联的相同血管组成。利用已报道的实验数据模拟了各类血管对灌注压变化的反应。根据ARD的阻力计算出CBF - 压力曲线。预测的自动调节曲线与已报道的实验数据一致。预测的自动调节下限(LLA)和上限(ULA)分别为69 mmHg和153 mmHg。预测LLA以下和ULA以上CBF - 压力曲线斜率的平均值分别为每mmHg CBF变化1.3%和3.3%。我们的四房室ARD模型模拟了小动脉和微动脉,在LLA、ULA以及LLA以下和ULA以上自动调节曲线的平均斜率方面,预测出的自动调节功能与实验数据相似。