肾脏影像和功能研究的基础知识。

E Durand, A Prigent
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引用次数: 0

摘要

许多放射性示踪剂可用于肾脏研究。它们分为肾小球示踪剂(DTPA、EDTA)、小管示踪剂(OIH、MAG3)和皮质示踪剂(DMSA、GHA)。肾功能最好通过肾小球滤过率来评估。相机研究提供了相对的功能评估,而清除率技术提供了精确可靠的绝对肾功能评估。因此,两者的结合对肾小球功能进行了全面的研究。从相机研究中评估绝对功能的尝试只会导致严重的不准确性。管状示踪剂提取率较高。这可用于估计肾血浆流量(通过评估有效肾血浆流量),或在肾功能低下时确定相对功能,或研究尿路中的尿流。皮质示踪剂提供高成像质量。它们更适合于感染评估和相关功能测量。本文综述了最常用的示踪剂及其与肾脏生理的关系。详细介绍了相机静态和动态研究以及血浆和尿液清除率的技术。程序遵循最近关于这些主题的国际协商一致会议的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The basics of renal imaging and function studies.

Many radiotracers are available for kidney studies. They are classified into glomerular tracers (DTPA, EDTA), tubular tracers (OIH, MAG3) and cortical tracers (DMSA, GHA). Renal function is best assessed by glomerular filtration rate. Camera studies provide a relative function assessment, whereas clearance techniques provide a precise and reliable assessment of absolute renal function. The combination of both therefore gives a comprehensive study of glomerular function. Attempts to assess absolute function from camera studies only resulted in gross inaccuracy. Tubular tracers have a higher extraction rate. This could be used to estimate renal plasma flow (by assessing the effective renal plasma flow), or to determine relative function when renal function is low, or to study the urine flow in the urinary tract. Cortical tracers provide a high imaging quality. They are more adapted to infection assessment and relative function measurements. This paper reviews the most commonly used tracers and their relationship with renal physiology. Techniques for camera static and dynamic studies and plasma and urinary clearances are detailed. Procedures follow the recommendations of the most recent international consensus conferences on the topics.

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