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Multiple-slice imaging of a tissue-equivalent phantom by use of time-resolved optical tomography

机译:通过时间分辨光学层析成像对组织等效体模进行多层成像

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摘要

Following several years of development the construction of a multichannel time-resolved imaging device for medical optical tomography has been completed. Images are reconstructed from time-resolved measurements by use of a scheme that employs a finite-element diffusion-based forward model and an iterative reconstruction solver. Prior to testing on clinical subjects the fully automated instrument and the reconstruction software are evaluated with tissue-equivalent phantoms. We describe our first attempt to generate multiple-slice images of a phantom without uniform properties along the axial direction, while still using a computationally fast two-dimensional reconstruction algorithm. The image quality is improved by the employment of an approximate correction method that uses scaling factors derived from the ratios of finite-element forward simulations in two and three spatial dimensions. The 32-channel system was employed to generate maps of the internal scattering and the absorption properties at 14 different transverse planes across the phantom. The images clearly reveal the locations of small inhomogeneous regions embedded within the phantom. These results were obtained by use of purely temporal data and without resource to reference measurements.
机译:经过几年的发展,用于医学光学层析成像的多通道时间分辨成像设备的建设已经完成。通过使用采用基于有限元扩散的正向模型和迭代重建求解器的方案,从时间分辨的测量中重建图像。在对临床受试者进行测试之前,使用组织等效体模对全自动仪器和重建软件进行评估。我们描述了我们第一次尝试生成幻影的多切片图像而沿轴向方向没有均匀属性,同时仍使用计算快速的二维重建算法的尝试。通过使用近似校正方法可以改善图像质量,该方法使用比例因子,该比例因子是从二维空间维度和三维空间维度的有限元正向模拟比率中得出的。使用32通道系统生成内部散射和在幻像上14个不同横向平面上的吸收特性的图。这些图像清楚地揭示了幻影中嵌入的不均匀小区域的位置。这些结果是通过使用纯时间数据获得的,没有资源可用于参考测量。

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