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An endoscopic diffuse optical tomographic method with high resolution based on the improved FOCUSS method

机译:基于改进的焦点法的高分辨率内窥镜漫射光学断层法

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Endoscopic DOT has the potential to apply to cancer-related imaging in tubular organs. Although the DOT has relatively large tissue penetration depth, the endoscopic DOT is limited by the narrow space of the internal tubular tissue, so as to the relatively small penetration depth. Because some adenocarcinomas including cervical adenocarcinoma are located in deep canal, it is necessary to improve the imaging resolution under the limited measurement condition. To improve the resolution, a new FOCUSS algorithm along with the image reconstruction algorithm based on the effective detection range (EDR) is developed. This algorithm is based on the region of interest (ROI) to reduce the dimensions of the matrix. The shrinking method cuts down the computation burden. To reduce the computational complexity, double conjugate gradient method is used in the matrix inversion. For a typical inner size and optical properties of the cervix-like tubular tissue, reconstructed images from the simulation data demonstrate that the proposed method achieves equivalent image quality to that obtained from the method based on EDR when the target is close the inner boundary of the model, and with higher spatial resolution and quantitative ratio when the targets are far from the inner boundary of the model. The quantitative ratio of reconstructed absorption and reduced scattering coefficient can be up to 70% and 80% under 5mm depth, respectively. Furthermore, the two close targets with different depths can be separated from each other. The proposed method will be useful to the development of endoscopic DOT technologies in tubular organs.
机译:内窥镜点具有潜力施加到管状器官中的癌症相关成像。尽管点的组织穿透深度具有相对大的组织穿透深度,但内窥镜点受到内部管状组织的狭窄空间的限制,从而透过较小的渗透深度。因为一些包括宫颈腺癌的腺癌位于深管中,所以有必要在有限的测量条件下改善成像分辨率。为了提高分辨率,开发了一种新的Focuss算法以及基于有效检测范围(EDR)的图像重建算法。该算法基于感兴趣的区域(ROI)来减少矩阵的尺寸。收缩方法减少了计算负担。为了降低计算复杂性,在矩阵反转中使用双共轭梯度方法。对于典型的子宫颈类管状组织的典型内尺寸和光学性质,来自仿真数据的重建图像表明,当目标是闭合时,所提出的方法实现了从基于EDR的方法获得的方法获得的等效图像质量当目标远离模型的内边界时,模型,具有较高的空间分辨率和定量比。重建的吸收和降低散射系数的定量比分别在5mm深度下可以高达70%和80%。此外,具有不同深度的两个接近目标可以彼此分开。该方法将对管状器官中的内窥镜点技术的开发有用。

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