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Optimal Analysis Method for Dynamic Contrast-Enhanced Diffuse Optical Tomography

机译:动态对比度增强漫射光学层析成像的最佳分析方法

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Diffuse Optical Tomography (DOT) is an optical imaging modality that has various clinical applications. However, the spatial resolution and quantitative accuracy of DOT is poor due to strong photon scatting in biological tissue. Structurala prioriinformation from another high spatial resolution imaging modality such as Magnetic Resonance Imaging (MRI) has been demonstrated to significantly improve DOT accuracy. In addition, a contrast agent can be used to obtain differential absorption images of the lesion by using dynamic contrast enhanced DOT (DCE-DOT). This produces a relative absorption map that consists of subtracting a reconstructed baseline image from reconstructed images in which optical contrast is included. In this study, we investigated and compared different reconstruction methods and analysis approaches for regular endogenous DOT and DCE-DOT with and without MR anatomicala prioriinformation for arbitrarily-shaped objects. Our phantom and animal studies have shown that superior image quality and higher accuracy can be achieved using DCE-DOT together with MR structurala prioriinformation. Hence, implementation of a combined MRI-DOT system to image ICG enhancement can potentially be a promising tool for breast cancer imaging.
机译:漫射光学层析成像(DOT)是一种具有多种临床应用的光学成像设备。但是,由于生物组织中强烈的光子散布,DOT的空间分辨率和定量精度很差。来自另一种高空间分辨率成像模式(例如磁共振成像(MRI))的先验信息已被证明可以显着提高DOT的准确性。另外,可以通过使用动态对比度增强DOT(DCE-DOT)将造影剂用于获得病变的差分吸收图像。这产生了相对吸收图,该相对吸收图包括从包括光学对比度的重建图像中减去重建基线图像。在这项研究中,我们调查并比较了针对任意形状物体的常规内源性DOT和DCE-DOT(带有或不带有MR解剖学先验信息)的不同重建方法和分析方法。我们的幻像和动物研究表明,结合使用DCE-DOT和MR结构先验信息,可以实现卓越的图像质量和更高的精度。因此,实施组合的MRI-DOT系统来成像ICG增强可能是乳腺癌成像的有前途的工具。

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