回声
微气泡
放射科
血管造影
医学
超声波
数字减影血管造影
灌注
肾动脉
生物医学工程
核医学
肾
内科学
作者
Jian An,Jiabin Zhang,Feihong Dong,Jingyi Yin,Feng Feng,Wenyu Guo,Shuo Huang,Di Wang,Jie Dang,Jue Zhang,Heping Cheng
出处
期刊:Small
[Wiley]
日期:2022-01-27
卷期号:18 (12)
被引量:13
标识
DOI:10.1002/smll.202105989
摘要
Biomedical imaging technology (like digital subtraction angiography (DSA)) based on contrast agents has been widely employed in the diagnosis of vascular-related diseases. While the DSA achieves the high-resolution observation of specified vessels and their downstream perfusion at the cost of invasive, radioactive operation and hepatorenal toxicity. To address those problems, this study develops arterial labeling ultrasound (US) subtraction angiography (ALUSA) based on a new perfluorobutane (PFB) nanodroplets with a lower vaporization threshold through spontaneous nucleation. The nanodroplets can be selectively vaporized to microbubbles, indicating a highly echogenic signal at B-mode images only using a diagnostic transducer. By labeling a single blood vessel for nanodroplets vaporization and tracking its downstream blood perfusion in segmental renal arteries at a frame rate of 500 Hz. The results demonstrate the color-coded super-resolution ALUSA image, exhibiting the downstream arcuate and interlobular arteries of each segmental renal artery with a resolution of 36 µm in a rabbit kidney. Furthermore, ALUSA could offer the vascular structures, blood flow velocity, and direction of their primary supply vessels in the mouse breast tumor. ALUSA fills the gap of noninvasive labeling angiography in US and opens a broad vista in the diagnosis and treatment of tumor and vascular-related diseases.
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