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An instrument for small-animal imaging using time-resolved diffuse and fluorescence optical methods

机译:使用时间分辨漫射和荧光光学方法进行小动物成像的仪器

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We describe time-resolved optical methods that use diffuse near-infrared photons to image the optical properties of tissues and their inner fluorescent probe distribution. The assembled scanner uses picosecond laser diodes at 4 wavelengths, an 8-anode photo-multiplier tube and time-correlated single photon counting. Optical absorption and reduced scattering images as well as fluorescence emission images are computed from temporal profiles of diffuse photons. This method should improve the spatial resolution and the quantification of fluorescence signals. We used the diffusion approximation of the radiation transport equation and the finite element method to solve the forward problem. The inverse problem is solved with an optimization algorithm such as ART or conjugate gradient. The scanner and its performances are presented, together with absorption, scattering and fluorescent images obtained with it.
机译:我们描述了时间分辨的光学方法,该方法使用漫反射近红外光子来成像组织的光学特性及其内部荧光探针分布。组装好的扫描仪使用4个波长的皮秒激光二极管,一个8阳极光电倍增管和与时间相关的单光子计数。光学吸收和减少散射的图像以及荧光发射图像是根据漫射光子的时间分布计算得出的。该方法应改善空间分辨率和荧光信号的定量。我们使用辐射输运方程的扩散近似和有限元方法来解决前向问题。反问题可以通过优化算法(例如ART或共轭梯度)来解决。介绍了扫描仪及其性能,以及由此获得的吸收,散射和荧光图像。

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