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Assessment of using ultrasound images as prior for diffuse optical tomography regularization matrix

机译:使用超声图像的评估为弥漫性光学断层扫描正规矩阵

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Imaging of tissue with Ultrasound-guided diffuse optical tomography (DOT) is a rising imaging technique to map hemoglobin concentrations within tissue for breast cancer detection and diagnosis. Near-infrared optical imaging received a lot of attention in research as a possible technique to be used for such purpose especially for breast tumors. Since DOT images contrast is closely related to oxygenation and deoxygenating of the hemoglobin, which is an important factor in differentiating malignant and benign tumors. One of the optical imaging modalities used is the diffused optical tomography (DOT); which probes deep scattering tissue (l-5cm) by NIR optical source-detector probe and detects NIR photons in the diffusive regime. The photons in the diffusive regime usually reach the detector without significant information about their source direction and the propagation path. Because of that, the optical reconstruction problem of the medium characteristics is ill-posed even with the tomography and Back-projection techniques. The accurate recovery of images requires an effective image reconstruction method. Here, we illustrate a method in which ultrasound images are encoded as prior for regularization of the inversion matrix. Results were evaluated using phantom experiments of low and high absorption contrasts. This method improves differentiation between the low and the high contrasts targets. Ultimately, this method could improve malignant and benign cases by increasing reconstructed absorption ratio of malignant to benign. Besides that, the phantom results show improvements in target shape as well as the spatial resolution of the DOT reconstructed images.
机译:用超声引导漫射光学断层扫描(DOT)的组织成像是一种上升的成像技术,用于映射血红蛋白浓度在组织内进行乳腺癌检测和诊断。近红外光学成像在研究中接受了很多关注,作为用于这种目的的可能技术,特别是对于乳腺肿瘤。由于点图像对比度与血红蛋白的氧合和脱氧密切相关,这是区分恶性和良性肿瘤的重要因素。使用的光学成像模式之一是漫射光学断层扫描(点);由NIR光源检测器探针探测深散射组织(L-5CM)并检测漫射状态中的NIR光子。扩散制度中的光子通常在没有关于它们的源方向和传播路径的重要信息的情况下到达检测器。因此,即使通过断层扫描和背投技术,介质特性的光学重建问题也是不均匀的。图像的精确恢复需要有效的图像重建方法。这里,我们示出了一种方法,其中超声图像被编码为在反演矩阵的正则化之前被编码。使用低和高吸收对比的幻影实验评估结果。该方法改善了低对比度目标之间的差异。最终,这种方法可以通过增加恶性对良性的重建吸收比来改善恶性和良性病例。此外,幻影结果显示了目标形状的改进以及点重建图像的空间分辨率。

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