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房室分析中速率常数的生理意义。

Physiological significance of the rate constants in compartmental analysis.

作者信息

Charkes N D

机构信息

Section of Nuclear Medicine, Temple University Hospital, Philadelphia 19140, USA.

出版信息

Nucl Med Commun. 2001 Mar;22(3):331-9. doi: 10.1097/00006231-200103000-00011.

Abstract

Transfer (rate) constants in compartmental analysis are generally considered solely in operational terms, and little attention has been paid to their physiological interpretation. In this study we have examined the significance of their roles in physiological terms and the implications of this interpretation. When freely diffusible tracers are introduced into the blood stream by bolus injection, the sum of the exit rate constants from the blood compartment gives the number of blood volumes turned over per unit time; when multiplied by the blood volume, this value is the cardiac output. When corrected for body weight, the product yields the cardiac index, a biological constant for large mammals. The ratio of the rate constant supplying an organ to the exit-constant sum gives fractional cardiac output, and when multiplied by the cardiac output the ratio gives organ blood flow, independent of diffusibility. For freely diffusible tracers, organ blood flow can be calculated directly from the product of the organ rate constant and blood volume. At equilibrium and at equal concentration, the ratio of rate constants between adjacent compartments gives their relative volumes; this interpretation is fundamental when partitioning compartments for detailed analysis. These considerations have been validated by testing in both animals and man. Multiple solution sets may occur in mammillary models. Knowledge of the physiological interpretation of intercompartmental rate constants is of importance not only in model interpretation but in model validation, where this information serves as an independent check on model structure and its realization.

摘要

房室分析中的转运(速率)常数通常仅从操作角度来考虑,而很少关注其生理学解释。在本研究中,我们从生理学角度研究了它们的作用意义以及这种解释的含义。当通过静脉推注将可自由扩散的示踪剂引入血流时,血液房室的流出速率常数之和给出了单位时间内周转的血容量数量;当乘以血容量时,该值就是心输出量。校正体重后,该乘积得出心脏指数,这是大型哺乳动物的一个生物学常数。供应某一器官的速率常数与流出常数总和的比值给出了心输出量分数,当乘以心输出量时,该比值给出器官血流量,与扩散性无关。对于可自由扩散的示踪剂,器官血流量可直接由器官速率常数与血容量的乘积计算得出。在平衡状态且浓度相等时,相邻房室之间的速率常数比值给出它们的相对容积;在划分房室进行详细分析时,这种解释是基础。这些考虑已通过在动物和人体中的测试得到验证。多室模型中可能会出现多个解集。了解房室间速率常数的生理学解释不仅在模型解释中很重要,在模型验证中也很重要,在模型验证中,这些信息可作为对模型结构及其实现的独立检验。

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