Kim S G, Ackerman J J
Department of Chemistry, Washington University, St. Louis, Missouri 63130.
Magn Reson Med. 1988 Dec;8(4):410-26. doi: 10.1002/mrm.1910080405.
Deuterium NMR is employed in concert with multicompartment kinetic analysis for measurement of tissue blood flow and perfusion through a bolus administration of D2O as a freely diffusible tracer. The traditional single-compartment and two-compartment in-parallel flow models with no tracer recirculation are briefly discussed. The two-compartment in-series flow model with recirculation is developed to account for reflow of the stable (slowly excreted) deuterium tracer. With this model a monoexponential tracer washout curve is predicted. The rate of blood flow and tissue perfusion is readily extracted by three-parameter monoexponential analysis of the residue decay curve. A three-compartment model with recirculation, incorporating one compartment in-series with two compartments in-parallel, is developed for analysis of biexponential tracer washout curves. With this model the flow rates through the two in-parallel compartments (i.e., fast and slow) and the volume fractions of these two compartments are obtained by five-parameter biexponential analysis of the residue decay curve. Application of these multicompartment tracer-recirculation flow models is demonstrated with in situ determinations of murine RIF-1 tumor blood flow and tissue perfusion. The blood flow rates determined by deuterium NMR and analyzed by the multicompartment flow models agree well with those determined by others using radiolabels. A companion article (S.-G. Kim and J.J.H. Ackerman, Cancer Res. 48, 3449-3453, 1988) discusses in more depth the practical aspects of applying these multicompartment models to tumor blood flow measurement.
通过静脉注射可自由扩散的示踪剂重水(D2O),利用氘核磁共振(Deuterium NMR)结合多房室动力学分析来测量组织血流量和灌注。简要讨论了传统的无示踪剂再循环的单房室和双房室平行流模型。开发了具有再循环的双房室串联流模型,以解释稳定(排泄缓慢)氘示踪剂的回流。利用该模型可预测单指数示踪剂洗脱曲线。通过对残留衰变曲线进行三参数单指数分析,可轻松提取血流量和组织灌注率。开发了一个具有再循环的三房室模型,该模型包含一个与两个平行房室串联的房室,用于分析双指数示踪剂洗脱曲线。利用该模型,通过对残留衰变曲线进行五参数双指数分析,可获得通过两个平行房室(即快速和慢速)的流速以及这两个房室的体积分数。通过原位测定小鼠RIF - 1肿瘤血流量和组织灌注,证明了这些多房室示踪剂再循环流模型的应用。通过氘核磁共振测定并由多房室流模型分析得到的血流量与其他人使用放射性标记物测定的结果吻合良好。另一篇相关文章(S.-G. Kim和J.J.H. Ackerman,《癌症研究》48,3449 - 3453,1988)更深入地讨论了将这些多房室模型应用于肿瘤血流量测量的实际问题。