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Optimization of scan delay for multi-phase computed tomography by using bolus tracking in normal canine kidney

机译:正常犬肾推注追踪技术优化多相计算机断层扫描的扫描延迟

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摘要

This study was performed to optimize scan delays for canine kidney by using a bolus-tracking technique. In six beagle dogs, computed tomography (CT) of the kidney was performed three times in each dog with different scan delays after a bolus-tracking trigger of 100 Hounsfield units (HU) of aortic enhancement. Delays were 5, 20, 35, and 50 sec for the first scan, 10, 25, 40, and 55 sec for the second scan, and 15, 30, 45, and 60 sec for the third scan. The renal artery-to-vein contrast difference peaked at 5 sec, and the renal cortex-to-medulla contrast difference peaked at 10 sec. The renal cortex-to-medulla contrast difference approached zero at a scan delay of 30 sec after the bolus trigger. For the injection protocol used in this study, the optimal scan delay times for renal arterial, corticomedullary, and nephrographic phases were 5, 10, and 30 sec after triggering at 100 HU of aortic enhancement using the bolus-tracking technique. The bolus-tracking technique is useful in multi-phase renal CT study as it compensates for different transit times to the kidney among different animals, requires a small dose of contrast media, and does not require additional patient radiation exposure.
机译:进行这项研究的目的是通过推注追踪技术来优化犬肾脏的扫描延迟。在六只比格犬中,在以100个Hounsfield单位(HU)主动脉增强的推注追踪触发后,对每只狗进行了3次肾脏的CT扫描(CT),扫描延迟不同。第一次扫描的延迟时间为5、20、35和50秒,第二次扫描的延迟时间为10、25、40和55秒,第三次扫描的延迟时间为15、30、45和60秒。肾动脉与静脉的对比差异在5秒达到峰值,而肾皮质与髓质的对比差异在10秒达到峰值。推注触发后30秒的扫描延迟时,肾皮质与髓质的对比差接近零。对于本研究中使用的注射方案,使用推注追踪技术在触发100 HU主动脉增强后,肾动脉,皮质肾小管和肾病相的最佳扫描延迟时间为5、10和30秒。大剂量追踪技术在多阶段肾脏CT研究中很有用,因为它可以补偿不同动物之间不同的肾脏转运时间,需要少量的造影剂,并且不需要额外的患者放射线照射。

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