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The Effect of Temporal Impulse Response on Experimental Reduction of Photon Scatter in Time-Resolved Diffuse Optical Tomography

机译:光子散射的实验还原态脉冲响应的时间分辨扩散光层析成像的影响

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摘要

New fast detector technology has driven significant renewed interest in time-resolved measurement of early photons in improving imaging resolution in diffuse optical tomography and fluorescence mediated tomography in recent years. In practice, selection of early photons results in significantly narrower instrument photon density sensitivity functions (PDSFs) than the continuous wave case, resulting in a better conditioned reconstruction problem. In this work, we studied the quantitative impact of instrument temporal impulse response function (TIRF) on experimental PDSFs in tissue mimicking optical phantoms. We used a multi-mode fiber dispersion method to vary the system TIRF over a range of representative literature values. Substantial disagreement in PDSF width – by up to 40% - was observed between experimental measurements and Monte Carlo (MC) models of photon propagation over the range of TIRFs studied. On average, PDSFs were broadened by about 0.3 mm at the center plane of the 2 cm wide imaging chamber per 100 ps of instrument TIRF at early times. Further, this broadening was comparable on both the source and detector sides. Results were confirmed by convolution of instrument TIRFs with MC simulations. These data also underscore the importance of correcting imaging PDSFs for instrument TIRF when performing tomographic image reconstruction to ensure accurate data-model agreement.
机译:近年来,新的快速检测器技术引起了人们对早期光子的时间分辨测量的极大兴趣,以提高散射光学层析成像和荧光介导层析成像的成像分辨率。实际上,与连续波情况相比,选择早期光子会导致仪器光子密度灵敏度函数(PDSF)明显狭窄,从而导致更好的条件重建问题。在这项工作中,我们研究了在模拟光学体模的组织中,仪器时间脉冲响应函数(TIRF)对实验PDSF的定量影响。我们使用了一种多模光纤色散方法来在一系列代表性文献值上改变系统TIRF。实验测量结果和蒙特卡罗(MC)模型在研究的TIRF范围内的光子传播之间,观察到PDSF宽度存在很大差异-高达40%。平均而言,在早期,每100 ps的仪器TIRF,PDSF在2 cm宽成像腔室的中心平面处展宽约0.3 mm。此外,这种扩展在源侧和检测器侧都是可比的。通过仪器TIRF与MC模拟的卷积确认了结果。这些数据还强调了在执行断层图像重建以确保准确的数据模型一致性时,校正仪器TIRF的成像PDSF的重要性。

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