首页> 外文会议>World congress on medical physics and biomedical engineering;International congress of the IUPESM >Probing Development and Molecular Function in Diffusive Living Organisms with Multispectral Optoacoustic Tomography (MSOT)
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Probing Development and Molecular Function in Diffusive Living Organisms with Multispectral Optoacoustic Tomography (MSOT)

机译:用多光谱光声层析成像(MSOT)探测扩散生物中的发育和分子功能

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Optical interrogation of biological tissues offers great variety of intrinsic probing mechanisms as well as highly specific contrast approaches based on tissue-specific expression of fluorescent proteins and extrinsically administered moleculal biomarkers. Yet, most of the important living organisms and tissues remain inaccessible by the current optical imaging techniques due to complications arising from intense light scattering in tissues. In this work, a selective-plane illumination multispectral optoacoustic tomography (MSOT) technique was developed and applied for high-resolution whole-body visualization of intact mesoscopic-scale optically diffusive organisms whose sizes may vary from sub-millimeter up to a centimeter range and beyond. Utility of the method is demonstrated on several intact living organisms and small animal extremities. Furthermore, by combining multi-wavelength illumination, the method is shown capable of resolving tissue-specific expression of fluorescent proteins located deep in optically diffuse tissues.
机译:对生物组织的光学询问提供了多种内在的探测机制,以及基于荧光蛋白的组织特异性表达和外在施用的分子生物标记物的高度特异性的对比方法。然而,由于组织中强烈的光散射引起的并发症,当前的光学成像技术仍无法接近大多数重要的活生物体和组织。在这项工作中,开发了选择性平面照明多光谱光声层析成像(MSOT)技术,并将其应用于完整的介观尺度光学扩散生物的高分辨率全身可视化,其大小可能从亚毫米到一个厘米范围不等。超过。该方法的实用性已在几种完整的活生物体和小动物肢体上得到证明。此外,通过组合多波长照明,显示了该方法能够解析位于光学扩散组织深处的荧光蛋白的组织特异性表达。

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