Van Eenige M J, Visser F C, Duwel C M, Bezemer P D, Westera G, Karreman A J, Roos J P
Department of Cardiology, Free University, Amsterdam, The Netherlands.
Nuklearmedizin. 1987 Dec;26(6):241-7.
Myocardial time-activity curves can be described by two or more parameters. To establish the optimal curve fitting method 33 myocardial time-activity curves were analyzed with different curve fitting methods: monoexponential, biexponential and monoexponential plus constant. A background correction was not applied. Biexponential curve fitting resulted in redundancy of parameters. Optimal curve fitting was obtained with monoexponential plus constant. The constant represents the background activity together with the stored radiolabelled lipids and the half-time value represents the wash-out of radioiodide from the myocardium. A strong relation was found between the constant and the half-time value: small errors in the determination of the constant (background activity) resulted in considerable errors of the half-time value. It is concluded that optimal analysis of a myocardial time-activity curve can be performed with a monoexponential plus constant without earlier correction for background activity.
心肌时间-活性曲线可用两个或更多参数来描述。为确定最佳曲线拟合方法,采用不同的曲线拟合方法(单指数、双指数以及单指数加常数)对33条心肌时间-活性曲线进行了分析。未进行背景校正。双指数曲线拟合导致参数冗余。单指数加常数的方法获得了最佳曲线拟合。该常数代表背景活性以及储存的放射性标记脂质,半衰期值代表放射性碘从心肌中的洗脱。在常数和半衰期值之间发现了很强的相关性:常数(背景活性)测定中的小误差会导致半衰期值出现相当大的误差。结论是,心肌时间-活性曲线的最佳分析可采用单指数加常数的方法,而无需事先对背景活性进行校正。