Patlak C S, Blasberg R G
J Cereb Blood Flow Metab. 1985 Dec;5(4):584-90. doi: 10.1038/jcbfm.1985.87.
The method of graphical analysis for the evaluation of sequential data (e.g., tissue and blood concentrations over time) in which the test substance is irreversibly trapped in the system has been expanded. A simpler derivation of the original analysis is presented. General equations are derived that can be used to analyze tissue uptake data when the blood-plasma concentration of the test substance cannot be easily measured. In addition, general equations are derived for situations when trapping of the test substance is incomplete and for a combination of these two conditions. These derivations are independent of the actual configuration of the compartmental system being analyzed and show what information can be obtained for the period when the reversible compartments are in effective steady state with the blood. This approach is also shown to result in equations with at least one less nonlinear term than those derived from direct compartmental analysis. Specific applications of these equations are illustrated for a compartmental system with one reversible region (with or without reversible binding) and one irreversible region.
用于评估序列数据(例如,随时间变化的组织和血液浓度)的图形分析方法已得到扩展,其中测试物质不可逆地滞留在系统中。给出了原始分析的更简单推导。推导了通用方程,当难以测量测试物质的血浆浓度时,这些方程可用于分析组织摄取数据。此外,还针对测试物质滞留不完全的情况以及这两种情况的组合推导了通用方程。这些推导与所分析的房室系统的实际构型无关,并显示了在可逆房室与血液处于有效稳态期间可获得的信息。还表明,这种方法得出的方程比直接房室分析得出的方程至少少一个非线性项。针对具有一个可逆区域(有或没有可逆结合)和一个不可逆区域的房室系统说明了这些方程的具体应用。