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使用磁动超声对比增强成像技术对 SPIO 标记血小板进行成像。

Contrast-enhanced imaging of SPIO-labeled platelets using magnetomotive ultrasound.

机构信息

Department of Physics and Astronomy, University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599-3255, USA.

出版信息

Phys Med Biol. 2013 Oct 21;58(20):7277-90. doi: 10.1088/0031-9155/58/20/7277. Epub 2013 Sep 27.

Abstract

The ability to image platelets in vivo can provide insight into blood clotting processes and coagulopathies, and aid in identifying sites of vascular endothelial damage related to trauma or cardiovascular disease. Toward this end, we have developed a magnetomotive ultrasound (MMUS) system that provides contrast-enhanced imaging of superparamagnetic iron oxide (SPIO) labeled platelets via magnetically-induced vibration. Platelets are a promising platform for functional imaging contrast because they readily take up SPIOs and are easily harvested from blood. Here we report a novel MMUS system that accommodates an arbitrarily thick sample while maintaining portability. We employed a frequency- and phase-locked motion detection algorithm based on bandpass filtering of the differential RF phase, which allows for the detection of sub-resolution vibration amplitudes on the order of several nanometers. We then demonstrated MMUS in homogenous tissue phantoms at SPIO concentrations as low as 0.09 mg ml(-1) Fe (p < 0.0001, n = 6, t-test). Finally, we showed that our system is capable of three-dimensional imaging of a 185 µL simulated clot containing SPIO-platelets. This highlights the potential utility for non-invasive imaging of platelet-rich clots, which would constitute a fundamental advance in technology for the study of hemostasis and detection of clinically relevant thrombi.

摘要

活体血小板成像能力可以深入了解血液凝固过程和凝血障碍,并有助于识别与创伤或心血管疾病相关的血管内皮损伤部位。为此,我们开发了一种磁驱动超声(MMUS)系统,该系统通过磁致振动提供超顺磁氧化铁(SPIO)标记血小板的对比增强成像。血小板是功能成像对比的有前途的平台,因为它们很容易摄取 SPIO,并且可以从血液中轻松收获。在这里,我们报告了一种新型的 MMUS 系统,该系统在保持便携性的同时可容纳任意厚度的样品。我们采用了基于差分 RF 相位带通滤波的频率和相位锁定运动检测算法,该算法允许检测几纳米量级的亚分辨率振动幅度。然后,我们在 SPIO 浓度低至 0.09 mg ml(-1)Fe(p < 0.0001,n = 6,t 检验)的同质组织体模中演示了 MMUS。最后,我们证明我们的系统能够对包含 SPIO-血小板的 185 µL 模拟凝块进行三维成像。这突出了非侵入性成像富含血小板凝块的潜在用途,这将是止血研究和检测临床相关血栓的技术的基本进步。

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