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Alignment of sources and detectors on breast surface for noncontact diffuse correlation tomography of breast tumors

机译:乳房表面上的源和检测器对准,以进行非接触式乳腺肿瘤弥散相关层析成像

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Noncontact diffuse correlation tomography (ncDCT) is an emerging technology for 3D imaging of deep tissue blood flow distribution without distorting hemodynamic properties. To adapt the ncDCT for imaging in vivo breast tumors, we designed a motorized ncDCT probe to scan over the breast surface. A computer-aided design (CAD)-based approach was proposed to create solid volume mesh from arbitrary breast surface obtained by a commercial 3D camera. The sources and detectors of ncDCT were aligned on the breast surface through ray tracing to mimic the ncDCT scanning with CAD software. The generated breast volume mesh along with the boundary data of ncDCT at the aligned source and detector pairs were used for finite-element-method-based flow image reconstruction. We evaluated the accuracy of source alignments on mannequin and human breasts; largest alignment errors were less than 10% in both tangential and radial directions of scanning. The impact of alignment errors (assigned 10%) on the tumor reconstruction was estimated using computer simulations. The deviations of simulated tumor location and blood flow contrast resulted from the alignment errors were 0.77 mm (less than the node distance of 1 mm) and 1%, respectively, which result in minor impact on flow image reconstruction. Finally, a case study on a human breast tumor was conducted and a tumor-to-normal flow contrast was reconstructed, demonstrating the feasibility of ncDCT in clinical application. (c) 2015 Optical Society of America
机译:非接触式扩散相关断层扫描(ncDCT)是一种新兴的技术,可用于深层组织血流分布的3D成像,而不会影响血液动力学特性。为了使ncDCT适用于体内乳腺肿瘤的成像,我们设计了一个电动ncDCT探针以扫描整个乳房表面。提出了一种基于计算机辅助设计(CAD)的方法,以通过商用3D相机获得的任意乳房表面创建实体网格。 ncDCT的源和检测器通过射线追踪在乳房表面对齐,以模拟使用CAD软件的ncDCT扫描。在对齐的源和检测器对处,将生成的乳房体积网格以及ncDCT的边界数据用于基于有限元方法的流图像重建。我们评估了人体模型和人类乳房上源对准的准确性;在扫描的切线方向和径向方向上最大的对准误差均小于10%。使用计算机模拟评估对准误差(分配的10%)对肿瘤重建的影响。对准误差导致的模拟肿瘤位置和血流对比度的偏差分别为0.77 mm(小于1 mm的节距)和1%,对流图像重建的影响较小。最后,对人乳腺肿瘤进行了案例研究,并重建了肿瘤与正常血流的对比,证明了ncDCT在临床应用中的可行性。 (c)2015年美国眼镜学会

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