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Comprehensive investigation of three-dimensional diffuse optical tomography with depth compensation algorithm

机译:具有深度补偿算法的三维漫射光学层析成像技术的综合研究

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摘要

A depth compensation algorithm (DCA) can effectively improve the depth localization of diffuse optical tomography (DOT) by compensating the exponentially decreased sensitivity in the deep tissue. In this study, DCA is investigated based on computer simulations, tissue phantom experiments, and human brain imaging. The simulations show that DCA can largely improve the spatial resolution of DOT in addition to the depth localization, and DCA is also effective for multispectral DOT with a wide range of optical properties in the background tissue. The laboratory phantom experiment demonstrates that DCA can effectively differentiate two embedded objects at different depths in the medium. DCA is further validated by human brain imaging using a finger-tapping task. To our knowledge, this is the first demonstration to show that DCA is capable of accurately localizing cortical activations in the human brain in three dimensions.
机译:深度补偿算法(DCA)通过补偿深部组织中呈指数下降的灵敏度,可以有效地改善漫射光学层析成像(DOT)的深度定位。在这项研究中,基于计算机模拟,组织模型实验和人脑成像对DCA进行了研究。仿真表明,DCA不仅可以进行深度定位,而且可以大大提高DOT的空间分辨率,DCA对于背景组织中具有广泛光学特性的多光谱DOT也很有效。实验室幻象实验表明,DCA可以有效地区分介质中不同深度的两个嵌入式对象。 DCA通过使用手指轻敲任务的人脑成像得到进一步验证。据我们所知,这是第一个证明DCA能够在三个维度上准确定位人脑皮质激活的演示。

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