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Hierarchical Bayesian estimation improves depth accuracy and spatial resolution of diffuse optical tomography.分层贝叶斯估计提高了扩散光学层析成像的深度精度和空间分辨率。
Opt Express. 2012 Aug 27;20(18):20427-46. doi: 10.1364/OE.20.020427.
3
Sparsity enhanced spatial resolution and depth localization in diffuse optical tomography.稀疏性增强了扩散光学层析成像中的空间分辨率和深度定位。
Biomed Opt Express. 2012 May 1;3(5):943-57. doi: 10.1364/BOE.3.000943. Epub 2012 Apr 12.
4
Multilevel, hybrid regularization method for reconstruction of fluorescent molecular tomography.用于荧光分子断层成像重建的多级混合正则化方法。
Appl Opt. 2012 Mar 1;51(7):975-86. doi: 10.1364/AO.51.000975.
5
Joint L1 and total variation regularization for fluorescence molecular tomography.基于 L1 和全变差正则化的荧光分子断层成像。
Phys Med Biol. 2012 Mar 21;57(6):1459-76. doi: 10.1088/0031-9155/57/6/1459. Epub 2012 Mar 5.
6
Improvement of image quality of time-domain diffuse optical tomography with l sparsity regularization.基于l0稀疏正则化的时域漫射光学层析成像图像质量改善
Biomed Opt Express. 2011 Dec 1;2(12):3334-48. doi: 10.1364/BOE.2.003334. Epub 2011 Nov 21.
7
Efficient reconstruction method for L1 regularization in fluorescence molecular tomography.荧光分子断层成像中L1正则化的高效重建方法
Appl Opt. 2010 Dec 20;49(36):6930-7. doi: 10.1364/AO.49.006930.
8
Total variation regularization for nonlinear fluorescence tomography with an augmented Lagrangian splitting approach.基于增广拉格朗日分裂法的非线性荧光层析成像的全变差正则化
Appl Opt. 2010 Jul 1;49(19):3741-7. doi: 10.1364/AO.49.003741.
9
A fast reconstruction algorithm for fluorescence molecular tomography with sparsity regularization.一种具有稀疏正则化的荧光分子断层扫描快速重建算法。
Opt Express. 2010 Apr 12;18(8):8630-46. doi: 10.1364/OE.18.008630.
10
Reconstruction of fluorescence/bioluminescence sources in biological medium with spatial filter.利用空间滤波器重建生物介质中的荧光/生物发光源。
Opt Express. 2010 Jun 7;18(12):13151-72. doi: 10.1364/OE.18.013151.

基于lp稀疏正则化从小动物多视角连续波表面图像重建局部荧光目标。

Reconstruction of localized fluorescent target from multi-view continuous-wave surface images of small animal with lp sparsity regularization.

作者信息

Okawa Shinpei, Ikehara Tatsuya, Oda Ichiro, Yamada Yukio

机构信息

Department of Medical Engineering, National Defense Medical College, 3-2 Namiki, Tokorozawa, Saitama 359-8513, Japan.

Shimadzu Corporation, 3-9-4 Hikaridai, Seikachou, Souraku-gun, Kyoto 619-0237, Japan ;

出版信息

Biomed Opt Express. 2014 May 19;5(6):1839-60. doi: 10.1364/BOE.5.001839. eCollection 2014 Jun 1.

DOI:10.1364/BOE.5.001839
PMID:24940544
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4052914/
Abstract

Fluorescence diffuse optical tomography using a multi-view continuous-wave and non-contact measurement system and an algorithm incorporating the lp (0 < p ≤ 1) sparsity regularization reconstructs a localized fluorescent target in a small animal. The measurement system provides a total of 25 fluorescence surface 2D-images of an object, which are acquired by a CCD camera from five different angles of view with excitation from five different angles. Fluorescence surface emissions from five different angles of view are simultaneously imaged on the CCD sensor, thus leading to fast acquisition of the 25 images within three minutes. The distributions of the fluorophore are reconstructed by solving the inverse problem based on the photon diffusion equations. In the reconstruction process incorporating the lp sparsity regularization, the regularization term is reformulated as a differentiable function for gradient-based non-linear optimization. Numerical simulations and phantom experiments show that the use of the lp sparsity regularization improves the localization of the target and quantitativeness of the fluorophore concentration. A mouse experiment demonstrates that a localized fluorescent target in a mouse is successfully reconstructed.

摘要

使用多视图连续波非接触测量系统和包含lp(0 < p ≤ 1)稀疏正则化的算法的荧光漫射光学层析成像技术,可在小动物体内重建局部荧光目标。该测量系统提供物体的总共25张荧光表面二维图像,这些图像由电荷耦合器件(CCD)相机从五个不同视角采集,激发光来自五个不同角度。来自五个不同视角的荧光表面发射光同时在CCD传感器上成像,从而在三分钟内快速采集到这25张图像。通过求解基于光子扩散方程的逆问题来重建荧光团的分布。在包含lp稀疏正则化的重建过程中,正则化项被重新表述为可微函数,用于基于梯度的非线性优化。数值模拟和模型实验表明,使用lp稀疏正则化可提高目标定位和荧光团浓度的定量分析。小鼠实验证明,成功重建了小鼠体内的局部荧光目标。