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Volumetric contrast-enhanced ultrasound for characterizing tumor vascularity: Preliminary studies in an animal model

机译:容积对比增强超声用于表征肿瘤血管:动物模型的初步研究

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This paper describes a volumetric strategy for characterization of tumor blood flow using microbubble (MB) contrast agents and ultrasound (US) imaging. Volumetric contrast-enhanced US (VCEUS) imaging was implemented on a SONIX RP US system (Ultrasonix Medical Corp) equipped with a broadband 4DL14-5/38 probe. Acquisition of VCEUS data was achieved at a volume rate of 1 Hz using a MB sensitive harmonic imaging mode. Following MB infusion, custom Matlab programs were used to compute MB time-intensity curve-specific parameters: blood volume (IPK), transit time (T1/2PK), flow rate (SPK), and tumor perfusion (AUC). Using a xenograft model of human breast cancer, it is shown that millimeter-sized deviations in transducer positioning can have profound implications on US-based blood flow estimators with errors ranging from 6.4 to 40.3% and dependent on both degree of misalignment and particular blood flow estimator. These errors indicate that VCEUS imaging should be considered in tumor analyses because they incorporate the entire mass and not just a representative planar cross-section.
机译:本文介绍了使用微泡(MB)造影剂和超声(US)成像表征肿瘤血流的体积策略。体积对比增强US(VCEUS)成像是在配备宽带4DL14-5 / 38探头的SONIX RP US系统(Ultrasonix Medical Corp)上实现的。使用MB敏感谐波成像模式以1 Hz的体积速率采集VCEUS数据。 MB注入后,使用定制的Matlab程序来计算MB时间强度曲线的特定参数:血量(IPK),通过时间(T1 / 2PK),流速(SPK)和肿瘤灌注(AUC)。使用人类乳腺癌的异种移植模型,结果表明,换能器定位的毫米大小偏差可能会对基于美国的血流估计量产生深远的影响,其误差范围为6.4%至40.3%,并取决于未对准的程度和特定的血流估算器。这些错误表明,在肿瘤分析中应考虑使用VCEUS成像,因为它们包含了整个质量,而不仅仅是代表性的平面横截面。

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