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Modeling in vivo fluorescence of small animals using TracePro~R software

机译:使用TracePro〜R软件模拟小动物的体内荧光

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摘要

The theoretical modeling of fluorescence excitation, emission, and propagation within living tissue has been a limiting factor in the development and calibration of in vivo small animal fluorescence imagers. To date, no definitive calibration standard, or phantom, has been developed for use with small animal fluorescence imagers. Our work in the theoretical modeling of fluorescence in small animals using solid modeling software is useful in optimizing the design of small animal imaging systems, and in predicting their response to a theoretical model. In this respect, it is also valuable in the design of a fluorescence phantom for use in in vivo small animal imaging. The use of phantoms is a critical step in the testing and calibration of most diagnostic medical imaging systems. Despite this, a realistic, reproducible, and informative phantom has yet to be produced for use in small animal fluorescence imaging. By modeling the theoretical response of various types of phantoms, it is possible to determine which parameters are necessary for accurately modeling fluorescence within inhomogenous scattering media such as tissue. Here, we present the model that has been developed, the challenges and limitations associated with developing such a model, and the applicability of this model to experimental results obtained in a commercial small animal fluorescence imager.
机译:活组织内荧光激发,发射和传播的理论模型一直是体内小动物荧光成像仪开发和校准的限制因素。迄今为止,尚未开发出可用于小型动物荧光成像仪的明确的校准标准或体模。我们使用固体建模软件对小动物的荧光进行理论建模的工作对于优化小动物成像系统的设计以及预测其对理论模型的响应非常有用。在这方面,在设计用于体内小动物成像的荧光体模中也很有价值。在大多数诊断医学成像系统的测试和校准中,幻像的使用是至关重要的一步。尽管如此,还没有生产出可用于小动物荧光成像的逼真的,可复制的和信息丰富的体模。通过对各种类型的体模的理论响应进行建模,可以确定哪些参数对于准确建模非均匀散射介质(例如组织)中的荧光是必需的。在这里,我们介绍已开发的模型,与开发此类模型相关的挑战和局限性,以及该模型对在商业小型动物荧光成像仪中获得的实验结果的适用性。

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