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基于反向传播神经网络的漫射光学层析成像重建算法。

Back-propagation neural network-based reconstruction algorithm for diffuse optical tomography.

机构信息

Beijing Univ. of Technology, China.

Beijing Lab. of Advanced Information Networks, China.

出版信息

J Biomed Opt. 2018 Dec;24(5):1-12. doi: 10.1117/1.JBO.24.5.051407.

Abstract

Diffuse optical tomography (DOT) is a promising noninvasive imaging modality and is capable of providing functional characteristics of biological tissue by quantifying optical parameters. The DOT image reconstruction is ill-posed and ill-conditioned, due to the highly diffusive nature of light propagation in biological tissues and limited boundary measurements. The widely used regularization technique for DOT image reconstruction is Tikhonov regularization, which tends to yield oversmoothed and low-quality images containing severe artifacts. It is necessary to accurately choose a regularization parameter for Tikhonov regularization. To overcome these limitations, we develop a noniterative reconstruction method, whereby optical properties are recovered based on a back-propagation neural network (BPNN). We train the parameters of BPNN before DOT image reconstruction based on a set of training data. DOT image reconstruction is achieved by implementing a single evaluation of the trained network. To demonstrate the performance of the proposed algorithm, we compare with the conventional Tikhonov regularization-based reconstruction method. The experimental results demonstrate that image quality and quantitative accuracy of reconstructed optical properties are significantly improved with the proposed algorithm.

摘要

漫射光学断层成像(DOT)是一种很有前途的非侵入性成像方式,通过量化光学参数,能够提供生物组织的功能特征。由于光在生物组织中的传播具有高度扩散性和有限的边界测量,因此 DOT 图像重建具有不适定性和不适定条件。DOT 图像重建中广泛使用的正则化技术是 Tikhonov 正则化,它往往会产生过度平滑和低质量的图像,其中包含严重的伪影。因此,需要准确选择 Tikhonov 正则化的正则化参数。为了克服这些限制,我们开发了一种非迭代重建方法,通过后向传播神经网络(BPNN)来恢复光学性质。我们在 DOT 图像重建之前,根据一组训练数据来训练 BPNN 的参数。通过对训练好的网络进行单次评估,来实现 DOT 图像重建。为了验证所提出算法的性能,我们将其与传统的基于 Tikhonov 正则化的重建方法进行了比较。实验结果表明,所提出的算法显著提高了重建光学性质的图像质量和定量准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15d3/6992907/27f1605d4a30/JBO-024-051407-g001.jpg

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