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Effect of optical property estimation accuracy on tomographic bioluminescence imaging: simulation of a combined optical–PET (OPET) system

机译:光学性质估计精度对层析生物发光成像的影响:光学-PET(OPET)组合系统的仿真

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摘要

Inevitable discrepancies between the mouse tissue optical properties assumed by an experimenter and the actual physiological values may affect the tomographic localization of bioluminescent sources. In a previous work, the simplifying assumption of optically homogeneous tissues led to inaccurate localization of deep sources. Improved results may be obtained if a mouse anatomical map is provided by a high-resolution imaging modality and optical properties are assigned to segmented tissues. In this work, the feasibility of this approach was explored by simulating the effect of different magnitude optical property errors on the image formation process of a combined optical–PET system. Some comparisons were made with corresponding simulations using higher spatial resolution data that are typically attainable by CCD cameras. In addition, simulation results provided insights on some of the experimental conditions that could lead to poor localization of bioluminescent sources. They also provided a rough guide on how accurately tissue optical properties need to be known in order to achieve correct localization of point sources with increasing tissue depth under low background noise conditions.
机译:实验人员假设的小鼠组织光学特性与实际生理值之间不可避免的差异可能会影响生物发光源的层析成像定位。在先前的工作中,光学均质组织的简化假设导致深层光源的定位不准确。如果通过高分辨率成像模式提供鼠标解剖图并且将光学属性分配给分割的组织,则可以获得改进的结果。在这项工作中,通过模拟不同幅度的光学性能误差对光学-PET组合系统成像过程的影响,探索了该方法的可行性。使用通常由CCD相机获得的更高空间分辨率的数据,与相应的模拟进行了一些比较。此外,仿真结果提供了一些可能导致生物发光源定位不良的实验条件的见解。他们还提供了一个粗略的指南,说明在低背景噪声条件下,如何准确地了解组织的光学特性,以便随着组织深度的增加实现点源的正确定位。

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