Dynamic Measurement of Arterial Liver Perfusion With an Interventional C-Arm System

再现性 组内相关 医学 灌注 核医学 重复性 一致相关系数 血流 灌注扫描 一致性 放射科 栓塞 内科学 化学 数学 统计 色谱法
作者
Sanjit Datta,Kerstin Müller,T. Moore,Lior Molvin,Sonja Gehrisch,Jarrett Rosenberg,Yamil Sáenz,Michael Manhart,Yu Deuerling-Zheng,Nishita Kothary,Rebecca Fahrig
出处
期刊:Investigative Radiology [Lippincott Williams & Wilkins]
卷期号:52 (8): 456-461 被引量:8
标识
DOI:10.1097/rli.0000000000000368
摘要

Objective intraprocedural measurement of hepatic blood flow could provide a quantitative treatment end point for locoregional liver procedures. This study aims to validate the accuracy and reproducibility of cone-beam computed tomography perfusion (CBCTp) measurements of arterial liver perfusion (ALP) against clinically available computed tomography perfusion (CTp) measurements in a swine embolization model.Triplicate CBCTp measurements using a selective arterial contrast injection were performed before and after complete embolization of the left lobe of the liver in 5 swine. Two CBCTp protocols were evaluated that differed in sweep duration (3.3 vs 4.5 seconds) and the number of acquired projection images (166 vs 248). The mean ALP was measured within identical volumes of interest selected in the embolized and nonembolized regions of the perfusion map generated from each scan. Postembolization CBCTp values were also compared with CTp measurements.The 2 CBCTp protocols demonstrated high concordance correlation (0.90, P < 0.001). Both CBCTp protocols showed higher reproducibility than CTp in the nontarget lobe, with an intraclass correlation of 0.90 or greater for CBCTp and 0.83 for CTp (P < 0.001 for all correlations). The ALP in the embolized lobe was nearly zero and hence excluded for reproducibility. High concordance correlation was observed between the CTp and each CBCTp protocol, with the shorter CBCTp protocol reaching a concordance correlation of 0.75 and the longer achieving 0.87 (P < 0.001 for both correlations).Dynamic blood flow measurement using an angiographic C-arm system is feasible and produces quantitative results comparable to CTp.

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