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Dual-mesh optical tomography reconstruction method with a depth correction that uses a priori ultrasound information

机译:具有先验超声信息的深度校正的双网格光学层析成像重建方法

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摘要

A dual-mesh reconstruction method with a depth correction for near-infrared diffused wave imaging with ultrasound localization is demonstrated by use of phantoms and clinical cancer cases. Column normalization is applied to the weight matrix obtained from the Born approximation to correct the depth-dependent problem in the reconstructed absorption maps as well as in the total hemoglobin concentration maps. With the depth correction, more uniform absorption maps for target layers at different depths are obtained from the phantoms, and the correlation between the reconstructed hemoglobin concentration maps of deeply located, large cancers and the histological microvessel density counts are dramatically improved.
机译:通过使用体模和临床癌症病例,证明了一种具有深度校正的双网格重建方法,用于具有超声定位的近红外扩散波成像。将列归一化应用于从Born逼近获得的权重矩阵,以校正重构的吸收图以及总血红蛋白浓度图中的深度相关问题。通过深度校正,可以从体模中获得不同深度的目标层的更均匀的吸收图,并且可以大大改善深处定位的大型癌症的血红蛋白浓度图与组织学微血管密度计数之间的相关性。

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