扩散受限,而不是灌注受限,室室模型描述了脑血流量高和低时的脑氧化亚氮动力学。

D J Doolette, R N Upton, C Grant
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引用次数: 19

摘要

本研究旨在评估脑内血液组织惰性气体交换的室室模型中扩散限制与灌注限制机制的相对重要性。采用气相色谱法测定了氟烷麻醉下5只羊在吸入一氧化二氮15 min及15 min后,低、高稳定脑血流(CBF)状态下动脉和脑传出血中的一氧化二氮浓度。通过将模型与两种血流状态下观察到的脑流出物氧化亚氮平均浓度同时拟合,估计了各种灌注或扩散受限脑结构模型的参数和模型选择标准。灌注受限模型返回了精确、可信的表观脑容量估计,但与低脑流量数据拟合较差。扩散受限模型提供了更好的整体拟合数据,这是最好的描述在灌注受限的脑室和未灌注的脑室之间交换氧化亚氮。在个体动物中,在低CBF状态下,一氧化二氮的动力学表现为快速的、血流受限的行为或缓慢的、血流受限的行为。这种可变性在适用于单个动物数据集的扩散限制模型的不同参数估计中得到了例证。结果表明,扩散限制有助于脑氧化亚氮动力学。
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Diffusion-limited, but not perfusion-limited, compartmental models describe cerebral nitrous oxide kinetics at high and low cerebral blood flows.

This study aimed to evaluate the relative importance of diffusion-limited vs. perfusion-limited mechanisms in compartmental models of blood-tissue inert gas exchange in the brain. Nitrous oxide concentrations in arterial and brain efferent blood were determined using gas chromatographic analysis during and after 15 min of nitrous oxide inhalation, at separate low and high steady states of cerebral blood flow (CBF) in five sheep under halothane anesthesia. Parameters and model selection criteria of various perfusion- or diffusion-limited structural models of the brain were estimated by simultaneous fitting of the models to the mean observed brain effluent nitrous oxide concentration for both blood flow states. Perfusion-limited models returned precise, credible estimates of apparent brain volume but fit the low CBF data poorly. Diffusion-limited models provided better overall fit of the data, which was best described by exchange of nitrous oxide between a perfusion-limited brain compartment and an unperfused compartment. In individual animals, during the low CBF state, nitrous oxide kinetics displayed either fast, perfusion-limited behavior or slow, diffusion-limited behavior. This variability was exemplified in the different parameter estimates of the diffusion limited models fitted to the individual animal data sets. Results suggest that a diffusion limitation contributes to cerebral nitrous oxide kinetics.

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Edward R. Garrett 1920–1993 Edward R. Garrett: A biographical sketch Erratum to: Simple approximate formulas for calculating the time to clear drug and the time to accumulate drug when the plasma disposition curve of the drug is multiexponential Erratum to: Simplified methods for the evaluation of the parameters of the time course of plasma concentration in the one-compartment body model with first-order invasion and first-order drug elimination including methods for ascertaining when such rate constants are equal Erratum to: Comparative physiological pharmacokinetics of fenatyl and alfenatil in rats and humans based on parametric single-tissue models
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