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Optimization of the conical mirror design based on Monte Carlo simulations for fluorescence molecular tomography

机译:基于蒙特卡罗模拟的荧光分子层析成像锥形镜设计的优化

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Conical mirror is a preferred choice for fluorescence molecular tomography (FMT) because of its ability to collect fluorescent emission photons from the whole surface of the imaged object such as mice. Conical mirror, however, would lead to a fraction of photons to be reflected back to the mice surface, including excitation photons and emission photons, which result in inaccurate source positions and measurements errors in the FMT forward modeling and reconstruction. Based on Monte Carlo simulations, we have studied systematically the effects of multiple reflections of different conical mirror designs. We first generated a multiple reflected photon map for each design of the conical mirror, and then we applied Monte Carlo simulations to model photon propagation inside tissues. Finally, we evaluated the ratio of the multiple reflected photons to the total photons, and figured out the optimized size of the conical mirror. Our simulations demonstrated that a single conical mirror configuration could eliminate the multiple reflection issue while keep the imaging system setup simple when its small aperture radius is larger than 5 centimeters. We then fabricated a conical mirror with the optimized size according to the Monte Carlo simulation results, and performed phantom experiments with both the optimized conical mirror and the non-optimized one. Phantom experiment results show that noises in the reconstructed images are reduced with the optimized conical mirror, and the reconstruction accuracy is improved as well.
机译:锥形镜是荧光分子层析成像(FMT)的首选,因为它能够从成像对象(例如小鼠)的整个表面收集荧光发射光子。但是,锥形镜会导致一部分光子被反射回小鼠表面,包括激发光子和发射光子,这会导致FMT正向建模和重建中的光源位置和测量错误。基于蒙特卡洛模拟,我们系统地研究了不同锥形镜设计的多次反射的影响。我们首先为锥形镜的每种设计生成了一个多次反射的光子图,然后应用蒙特卡罗模拟对组织内部光子的传播进行建模。最后,我们评估了多个反射光子与总光子的比率,并得出了锥形反射镜的最佳尺寸。我们的仿真表明,单个圆锥镜配置可以消除多重反射问题,同时当其小孔径半径大于5厘米时,使成像系统的安装过程变得简单。然后,我们根据蒙特卡罗模拟结果制作了具有优化尺寸的锥形反射镜,并使用优化的锥形反射镜和未优化的锥形反射镜进行了幻像实验。幻影实验结果表明,采用优化的锥形反射镜可以减少重建图像中的噪声,提高重建精度。

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