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SYSTEMS, METHODS, AND DEVICES FOR IMAGE RECONSTRUCTION USING COMBINED PDE-CONSTRAINED AND SIMPLIFIED SPHERICAL HARMONICS ALGORITHM

机译:使用结合PDE约束和简化的球谐算法进行图像重建的系统,方法和设备

摘要

Systems, methods, and devices for image reconstruction using combined PDE-constrained and simplified spherical harmonics (SPN) algorithm are presented herein. SPN equations can be used as the forward model in diffuse optical tomography (DOT) and employed in a PDE-constrained reduced space sequential quadratic programming (rSQP) optimization method to reconstruct spatially distributed optical properties, such as absorption, scattering, fat, oxygenated hemoglobin, de-oxygenated hemoglobin, fluorescent concentration, quantum yield, etc. The SPN algorithm with the PDE-constrained rSQP optimization method allows for DOT imaging that uses significantly less computational resources (e.g., time and random-access memory (RAM)) than methods employing the equation of radiative transfer (ERT). The techniques disclosed herein allow for more expeditious image processing as well as the potential for clinical diagnosis using DOT imaging. Diagnosis can be performed by a computer-aided diagnosis (CAD) system, which can provide clinically relevant analysis and interaction shortly after patient imaging.
机译:本文介绍了使用组合的PDE约束和简化的球谐(SPN)算法进行图像重建的系统,方法和设备。 SPN方程可用作漫射光学层析成像(DOT)中的正向模型,并用于PDE约束的缩小空间顺序二次规划(rSQP)优化方法中,以重建空间分布的光学特性,例如吸收,散射,脂肪,氧化血红蛋白,脱氧血红蛋白,荧光浓度,量子产率等。具有PDE约束的rSQP优化方法的SPN算法允许DOT成像比方法使用更少的计算资源(例如,时间和随机存取存储器(RAM))采用辐射传输方程(ERT)。本文公开的技术允许更快速的图像处理以及使用DOT成像进行临床诊断的潜力。可以通过计算机辅助诊断(CAD)系统执行诊断,该系统可以在患者成像后不久提供临床相关的分析和交互作用。

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