首页> 外文会议>Optical Technologies in Biophysics and Medicine VI; Progress in Biomedical Optics and Imaging; vol.6 no.34 >A multi-projection non-contact Tomography setup for imaging arbitrary geometries
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A multi-projection non-contact Tomography setup for imaging arbitrary geometries

机译:用于投影任意几何形状的多投影非接触式层析成像设置

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Optical imaging and tomography in tissues can facilitate the quantitative study of several important chromophores and fluorophores in-vivo. Due to this fact, there has been great interest in developing imaging systems offering quantitative information on the location and concentration of chromophores and fluorescent probes. However, most imaging systems currently used in reasearch make use of fiber technology for delivery and detection, which restricts the size of the photon collecting arrays leading to insufficient spatial sampling and field of view. To enable large data sets and full 360° angular measurements, we developed a novel imaging system that enables 3D imaging of fluorescent signals in bodies of arbitrary shapes in a non-contact geometry in combination with a 3D surface reconstruction algorithm. The system is appropriate for in-vivo small animal imaging of fluorescent probes. The system consists of a rotating sample holder and a lens coupled CCD camera in combination with a fiber coupled scanning device. The accuracy of the system in obtaining the surface reconstruction was measured to be in the order of 1μm.
机译:组织中的光学成像和层析成像可以促进体内几种重要发色团和荧光团的定量研究。由于这个事实,人们对开发提供有关生色团和荧光探针的位置和浓度的定量信息的成像系统非常感兴趣。但是,当前在研究中使用的大多数成像系统都利用光纤技术进行传输和检测,这限制了光子收集阵列的大小,从而导致空间采样和视野不足。为了实现大数据集和完整的360°角测量,我们开发了一种新颖的成像系统,结合3D表面重建算法,可以对非接触几何体中任意形状的主体中的荧光信号进行3D成像。该系统适用于荧光探针的体内小动物成像。该系统由一个旋转的样品架和一个镜头耦合的CCD摄像机以及一个光纤耦合的扫描设备组成。该系统在获得表面重建中的精度被测量为大约1μm。

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