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用于临床前小动物研究的全身光声成像技术。

Whole-Body Photoacoustic Imaging Techniques for Preclinical Small Animal Studies.

机构信息

Departments of Cogno-Mechatronics Engineering and Optics & Mechatronics Engineering, Pusan National University, Busan 46241, Korea.

Departments of Convergence IT Engineering, Mechanical Engineering, and Electrical Engineering, School of Interdisciplinary Bioscience and Bioengineering, Medical Device Innovation Center, Pohang University of Science and Technology (POSTECH), Pohang 37673, Korea.

出版信息

Sensors (Basel). 2022 Jul 8;22(14):5130. doi: 10.3390/s22145130.

Abstract

Photoacoustic imaging is a hybrid imaging technique that has received considerable attention in biomedical studies. In contrast to pure optical imaging techniques, photoacoustic imaging enables the visualization of optical absorption properties at deeper imaging depths. In preclinical small animal studies, photoacoustic imaging is widely used to visualize biodistribution at the molecular level. Monitoring the whole-body distribution of chromophores in small animals is a key method used in preclinical research, including drug-delivery monitoring, treatment assessment, contrast-enhanced tumor imaging, and gastrointestinal tracking. In this review, photoacoustic systems for the whole-body imaging of small animals are explored and summarized. The configurations of the systems vary with the scanning methods and geometries of the ultrasound transducers. The future direction of research is also discussed with regard to achieving a deeper imaging depth and faster imaging speed, which are the main factors that an imaging system should realize to broaden its application in biomedical studies.

摘要

光声成像是一种混合成像技术,在生物医学研究中受到了相当多的关注。与纯光学成像技术相比,光声成像是在更深的成像深度上可视化光学吸收特性。在临床前小动物研究中,光声成像被广泛用于在分子水平上可视化生物分布。监测小动物体内发色团的全身分布是临床前研究中使用的关键方法,包括药物输送监测、治疗评估、对比增强肿瘤成像和胃肠道追踪。在这篇综述中,探讨并总结了用于小动物全身成像的光声系统。系统的配置随超声换能器的扫描方法和几何形状而变化。还讨论了研究的未来方向,以实现更深的成像深度和更快的成像速度,这是成像系统应实现的主要因素,以拓宽其在生物医学研究中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/919f/9318812/ee2f575c1047/sensors-22-05130-g001.jpg

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