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骨骼血流:对骨扫描解读的影响。

Skeletal blood flow: implications for bone-scan interpretation.

作者信息

Charkes N D

出版信息

J Nucl Med. 1980 Jan;21(1):91-8.

PMID:7356747
Abstract

The dispersion of the skeleton throughout the body and its complex vascular anatomy require indirect methods for the measurement of skeletal blood flow. The results of one such method, compartmental analysis of skeletal tracer kinetics, are presented. The assumptions underlying the models were tested in animals and found to be in agreement with experimental observations. Based upon the models and the experimental results, inferences concerning bone-scan interpretation can be drawn: decreased cardiac output produces low-contrast ("technically poor") scans; decreased skeletal flow produces "photon-deficient" lesions; increase of cardiac output or of generalized systemic blood flow is undetectable 1--2 hr after dose; increased local skeletal blood flow results from disturbance of the bone microvasculature and can occur from neurologic (sympatholytic) disorders or in association with focal abnormalities that also incite the formation of reactive bone (e.g., metastasis, fracture, etc.). Mathematical solutions of tracer kinetic data thus become relevant to bone-scan interpretation.

摘要

骨骼遍布全身且其血管解剖结构复杂,这就需要采用间接方法来测量骨骼血流量。本文介绍了其中一种方法——骨骼示踪剂动力学的房室分析的结果。这些模型所依据的假设在动物身上进行了检验,结果发现与实验观察结果相符。基于这些模型和实验结果,可以得出有关骨扫描解读的推论:心输出量降低会产生低对比度(“技术质量差”)的扫描结果;骨骼血流量降低会产生“光子缺乏”病变;给药后1至2小时无法检测到心输出量或全身总体血流量的增加;局部骨骼血流量增加是由骨微血管系统紊乱引起的,可能发生于神经(抗交感神经)疾病,或与也会刺激反应性骨形成的局灶性异常情况(如转移瘤、骨折等)有关。因此,示踪剂动力学数据的数学解与骨扫描解读相关。

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