A new reconstruction technique used in Diffuse Optical Tomography System

Gençay Sevim, T. Mercan, Yigit Ali Uncu, M. Canpolat
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引用次数: 3

Abstract

Several methods are used in the early diagnosis of breast cancer. Due to the disadvantages of these methods, the diffuse optical tomography (DOT) system is one of new methods have been developed to support these methods. In the DOT, the reconstruction technique used to create image is very important. Each reconstruction technique has some disadvantages. Thus, it is important to create an image by using the appropriate technique for DOT system. In this study, we have combined two algorithms called Truncated Conjugate Gradient (TCG) and Transpose Free Quasi Minimal Residual (TFQMR) to create a new algorithm named TCG-TFQMR. The reason of combining the two algorithms is low resolution of TCG and slow running of TFQMR. The new algorithm is first tested using simulation data created by Matlab. Then, in-vitro experiments were performed by acquiring DOT data from a breast phantom. The both reconstruction algorithms TCG and TCG-TFQMR were used to reconstruct the tissue phantom. It has been shown that TCG-TFQMR algorithm has better resolution than TCG.
漫射光学层析成像系统中一种新的重建技术
乳腺癌的早期诊断有几种方法。由于这些方法的缺点,漫射光学层析成像(DOT)系统是支持这些方法的新方法之一。在DOT中,用于生成图像的重建技术是非常重要的。每种重建技术都有一些缺点。因此,重要的是要创建一个图像,使用适当的技术为DOT系统。在这项研究中,我们结合了截断共轭梯度(TCG)和转置自由拟最小残差(TFQMR)两种算法,创建了一个名为TCG-TFQMR的新算法。两种算法结合的原因是TCG的分辨率低,TFQMR的运行速度慢。新算法首先使用Matlab创建的仿真数据进行测试。然后,通过获取乳房假体的DOT数据进行体外实验。采用TCG和TCG- tfqmr两种重建算法重建组织模体。实验表明,TCG- tfqmr算法比TCG算法具有更好的分辨率。
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