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首页> 外文期刊>Physics in medicine and biology. >A parallel adaptive finite element simplified spherical harmonics approximation solver for frequency domain fluorescence molecular imaging.
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A parallel adaptive finite element simplified spherical harmonics approximation solver for frequency domain fluorescence molecular imaging.

机译:用于频域荧光分子成像的并行自适应有限元简化球形谐波近似求解器。

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摘要

Fluorescence molecular imaging/tomography may play an important future role in preclinical research and clinical diagnostics. Time- and frequency-domain fluorescence imaging can acquire more measurement information than the continuous wave (CW) counterpart, improving the image quality of fluorescence molecular tomography. Although diffusion approximation (DA) theory has been extensively applied in optical molecular imaging, high-order photon migration models need to be further investigated to match quantitation provided by nuclear imaging. In this paper, a frequency-domain parallel adaptive finite element solver is developed with simplified spherical harmonics (SP(N)) approximations. To fully evaluate the performance of the SP(N) approximations, a fast time-resolved tetrahedron-based Monte Carlo fluorescence simulator suitable for complex heterogeneous geometries is developed using a convolution strategy to realize the simulation of the fluorescence excitation and emission. The validation results show that high-order SP(N) can effectively correct the modeling errors of the diffusion equation, especially when the tissues have high absorption characteristics or when high modulation frequency measurements are used. Furthermore, the parallel adaptive mesh evolution strategy improves the modeling precision and the simulation speed significantly on a realistic digital mouse phantom. This solver is a promising platform for fluorescence molecular tomography using high-order approximations to the radiative transfer equation.
机译:荧光分子成像/断层扫描可能在临床前研究和临床诊断中扮演重要的未来角色。与连续波(CW)相比,时域和频域荧光成像可获取更多的测量信息,从而改善了荧光分子断层扫描的图像质量。尽管扩散近似(DA)理论已广泛应用于光学分子成像,但仍需要进一步研究高阶光子迁移模型以匹配核成像提供的定量。在本文中,开发了一种具有简化球谐函数(SP(N))近似的频域并行自适应有限元求解器。为了充分评估SP(N)逼近的性能,使用卷积策略开发了一种适用于复杂异质几何结构的基于时间的快速四面体Monte Carlo荧光模拟器,以实现荧光激发和发射的模拟。验证结果表明,高阶SP(N)可以有效地校正扩散方程的建模误差,尤其是当组织具有高吸收特性或使用高调制频率测量值时。此外,并行自适应网格演化策略可在现实的数字鼠标幻象上显着提高建模精度和仿真速度。该求解器是使用辐射转移方程的高阶近似进行荧光分子层析成像的有前途的平台。

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