Deán-Ben Xosé, Fehm Thomas Felix, Razansky Daniel
Institute for Biological and Medical Imaging (IBMI), Helmholtz Zentrum München.
Institute for Biological and Medical Imaging (IBMI), Helmholtz Zentrum München; Faculty of Medicine, Technische Universität München.
J Vis Exp. 2014 Nov 4(93):e51864. doi: 10.3791/51864.
The exclusive combination of high optical contrast and excellent spatial resolution makes optoacoustics (photoacoustics) ideal for simultaneously attaining anatomical, functional and molecular contrast in deep optically opaque tissues. While enormous potential has been recently demonstrated in the application of optoacoustics for small animal research, vast efforts have also been undertaken in translating this imaging technology into clinical practice. We present here a newly developed optoacoustic tomography approach capable of delivering high resolution and spectrally enriched volumetric images of tissue morphology and function in real time. A detailed description of the experimental protocol for operating with the imaging system in both hand-held and stationary modes is provided and showcased for different potential scenarios involving functional and molecular studies in murine models and humans. The possibility for real time visualization in three dimensions along with the versatile handheld design of the imaging probe make the newly developed approach unique among the pantheon of imaging modalities used in today's preclinical research and clinical practice.
高光对比度与出色空间分辨率的独特结合,使光声成像在深度光学不透明组织中同时实现解剖、功能和分子对比度方面具有理想的表现。虽然光声成像在小动物研究中的应用潜力近来已得到充分展示,但将这种成像技术转化为临床实践也付出了巨大努力。我们在此展示一种新开发的光声断层扫描方法,它能够实时提供高分辨率且富含光谱信息的组织形态和功能的体积图像。本文详细描述了在手持和固定模式下使用成像系统的实验方案,并针对涉及小鼠模型和人体功能及分子研究的不同潜在场景进行了展示。三维实时可视化的可能性以及成像探头的通用手持设计,使这种新开发的方法在当今临床前研究和临床实践中使用的众多成像方式中独树一帜。