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Preliminary Results from a Multi-wavelength Time Domain Optical Molecular Imaging System

机译:多波长时域光学分子成像系统的初步结果

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摘要

In the last few years there has been a growing interest in the use of small animal optical molecular imaging systems to conduct preclinical studies. Most of these imaging systems are based on continuous wave (CW) technology to measure the bioluminescence or fluorescence light intensity from optical probes in small animals. The eXplore Optix~TM is currently the only commercially available imaging system based on time domain (TD) technology. In addition to measuring the light intensity, the TD approach provides extra information to help determine the depth and concentration of optical probes in small animals. Furthermore, the TD approach uniquely allows the fluorescence lifetime of a fluorophore-based optical probe to be measured. Recently, our single wavelength eXplore-Optix~TM system has been upgraded to a multi-wavelength (eXplore Optix~TM-MX) system with the addition of 3 laser wavelengths and corresponding filters. This has enabled us to image a variety of fluorophores for different preclinical applications. Preliminary results evaluating the performance of the eXplore-Optix~TM-MX are presented employing fluorophores with different spectral and lifetime characteristics.
机译:在过去的几年中,对使用小型动物光学分子成像系统进行临床前研究的兴趣日益浓厚。这些成像系统中的大多数都是基于连续波(CW)技术来测量小型动物中光学探针的生物发光或荧光强度。 eXplore OptixTM是目前唯一基于时域(TD)技术的商用成像系统。除了测量光强度外,TD方法还提供了额外的信息来帮助确定小型动物中光学探针的深度和浓度。此外,TD方法独特地允许测量基于荧光团的光学探针的荧光寿命。最近,我们的单波长eXplore-Optix〜TM系统已升级为多波长(eXplore Optix〜TM-MX)系统,增加了3个激光波长和相应的滤光片。这使我们能够为不同的临床前应用成像各种荧光团。给出了使用具有不同光谱和寿命特性的荧光团评估eXplore-Optix〜TM-MX性能的初步结果。

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