Development and initial application of a fully integrated photoacoustic micro-ultrasound system

生物医学中的光声成像 生物医学工程 超声波 体内 扫描仪 血容量 充氧 临床前影像学 超声成像 材料科学 医学 计算机科学 放射科 麻醉 光学 生物 物理 生物技术 人工智能
作者
A. Needles,Andrew Heinmiller,Jingru Sun,Christina Theodoropoulos,David O. Bates,D. Hirson,Melissa Yin,F. Stuart Foster
出处
期刊:IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control [Institute of Electrical and Electronics Engineers]
卷期号:60 (5): 888-897 被引量:213
标识
DOI:10.1109/tuffc.2013.2646
摘要

Photoacoustic (PA) imaging for biomedical applications has been under development for many years. Based on the many advances over the past decade, a new photoacoustic imaging system has been integrated into a micro-ultrasound platform for co-registered PA¿ultrasound (US) imaging. The design and implementation of the new scanner is described and its performance quantified. Beamforming techniques and signal processing are described, in conjunction with in vivo PA images of normal subcutaneous mouse tissue and selected tumor models. In particular, the use of the system to estimate the spatial distribution of oxygen saturation (sO 2 ) in blood and co-registered with B-mode images of the surrounding anatomy are investigated. The system was validated in vivo against a complementary technique for measuring partial pressure of oxygen in blood (pO 2 ). The pO 2 estimates were converted to sO 2 values based on a standard dissociation curve found in the literature. Preliminary studies of oxygenation effects were performed in a mouse model of breast cancer (MDA-MB-231) in which control mice were compared with mice treated with a targeted antiangiogenic agent over a 3 d period. Treated mice exhibited a >90% decrease in blood volume, an 85% reduction in blood wash-in rate, and a 60% decrease in relative tissue oxygenation.
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