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在临床前啮齿动物模型中肾脏血管的体内三维光声成像。

In vivo three-dimensional photoacoustic imaging of the renal vasculature in preclinical rodent models.

机构信息

Department of Medical Physics and Biomedical Engineering, University College London , London , United Kingdom.

Centre for Advanced Biomedical Imaging, Division of Medicine, University College London , London , United Kingdom.

出版信息

Am J Physiol Renal Physiol. 2018 Jun 1;314(6):F1145-F1153. doi: 10.1152/ajprenal.00337.2017. Epub 2017 Dec 20.

Abstract

Noninvasive imaging of the kidney vasculature in preclinical murine models is important for the assessment of renal development, studying diseases and evaluating new therapies but is challenging to achieve using existing imaging modalities. Photoacoustic imaging is a promising new technique that is particularly well suited to visualizing the vasculature and could provide an alternative to existing preclinical imaging methods for studying renal vascular anatomy and function. To investigate this, an all-optical Fabry-Perot-based photoacoustic scanner was used to image the abdominal region of mice. High-resolution three-dimensional, noninvasive, label-free photoacoustic images of the mouse kidney and renal vasculature were acquired in vivo. The scanner was also used to visualize and quantify differences in the vascular architecture of the kidney in vivo due to polycystic kidney disease. This study suggests that photoacoustic imaging could be utilized as a novel preclinical imaging tool for studying the biology of renal disease.

摘要

在临床前的小鼠模型中,对肾脏血管系统进行非侵入性成像对于评估肾脏发育、研究疾病和评估新疗法非常重要,但使用现有的成像方式很难实现这一目标。光声成像是一种很有前途的新技术,特别适合于可视化血管,并且可以为研究肾脏血管解剖结构和功能提供替代现有的临床前成像方法。为了研究这一点,使用基于全光学法布里-珀罗的光声扫描仪来对小鼠的腹部区域进行成像。在体内获得了高分辨率的、三维的、非侵入性的、无标记的光声图像。该扫描仪还用于可视化和量化由于多囊肾病而导致的肾脏血管结构的体内差异。本研究表明,光声成像是一种可用于研究肾脏疾病生物学的新型临床前成像工具。

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