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Forward model of Cerenkov luminescence tomography with the third-order simplified spherical harmonics approximation

机译:三阶简化球谐函数近似的切伦科夫发光层析成像正模型

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Applying Cerenkov luminescence tomography (CLT) to localizing Cerenkov light sources in situ is still in its nascent stage. One of the obstacles hindering the development of the CLT is the lack of dedicated imaging mode. In this contribution, the paper presented a Cerenkov optical imaging mode, in which the propagation of optical photons inside tissues generated by the Vavilov-Cerenkov effect is modeled based on simplified spherical harmonics approximation. As a significantly more transport-like and computational-efficient approximation theory, the performance of the third-order simplified spherical harmonics approximation (SP3) in the CLT forward is investigated in stages. Finally, the performance of the proposed forward model is validated using numerical phantoms and compared with the simulation data based on the Monte Carlo method.
机译:将切伦科夫发光体层摄影术(CLT)应用于原位定位切伦科夫光源仍处于起步阶段。阻碍CLT发展的障碍之一是缺乏专用的成像模式。在此贡献中,本文提出了切伦科夫光学成像模式,其中基于简化的球谐近似,对由Vavilov-Cerenkov效应产生的组织内部的光子传播进行建模。作为一种更具运输性和计算效率的逼近理论,我们分阶段研究了CLT正向系统中三阶简化球谐函数逼近(SP3)的性能。最后,使用数值模型对提出的正向模型的性能进行了验证,并与基于蒙特卡洛方法的仿真数据进行了比较。

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