CAS Key Laboratory of Molecular Imaging, Institute of Automation, Chinese Academy of Sciences, No. 95 Zhongguancun East Road, Haidian District, Beijing, 100190, China.
The State Key Laboratory of Management and Control for Complex System, Institute of Automation, Chinese Academy of Sciences, No. 95 Zhongguancun East Road, Haidian District, Beijing, 100190, China.
Mol Imaging Biol. 2018 Feb;20(1):37-46. doi: 10.1007/s11307-017-1088-4.
Fluorescence molecular tomography (FMT) is a novel imaging modality for three-dimensional preclinical research and has many potential applications for drug therapy evaluation and tumor diagnosis. However, FMT presents an ill-conditioned and ill-posed inverse problem, which is a challenge for its tomography reconstruction. Due to the importance of FMT reconstruction, it is valuable and necessary to develop further practical reconstruction methods for FMT.
In this study, an efficient method using variable splitting strategy as well as alternating direction strategy (VSAD) was proposed for FMT reconstruction. In this method, the variable splitting strategy and the augmented Lagrangian function were first introduced to obtain an equivalent optimization formulation of the original problem. Then, the alternating direction scheme was used to solve the optimization problem and to accelerate its convergence. To examine the property of the VSAD method, three numerical simulation experiments (accuracy assessment experiment, robustness assessment experiment, and reconstruction speed assessment experiment) were performed and analyzed.
The results indicated that the reconstruction accuracy, the reconstruction robustness, and the reconstruction speed of FMT were satisfactory by using the proposed VSAD method. Two in vivo studies, which were conducted by using two nude mouse models, further confirmed the advantages of the proposed method.
The results indicated that the proposed VSAD algorithm is effective for FMT reconstruction. It was accurate, robust, and efficient for FMT imaging and was feasibly applied for in vivo FMT applications.
荧光分子断层成像(FMT)是一种用于三维临床前研究的新型成像方式,在药物治疗评估和肿瘤诊断方面具有许多潜在的应用。然而,FMT 提出了一个病态不适定的反问题,这对其断层成像重建构成了挑战。由于 FMT 重建的重要性,开发进一步的实用 FMT 重建方法具有重要价值和必要性。
在本研究中,提出了一种使用变量分裂策略和交替方向策略(VSAD)的高效 FMT 重建方法。在该方法中,首先引入变量分裂策略和增广拉格朗日函数,以获得原始问题的等效优化公式。然后,使用交替方向方案来解决优化问题并加速其收敛。为了检验 VSAD 方法的性质,进行了三个数值模拟实验(准确性评估实验、鲁棒性评估实验和重建速度评估实验)并进行了分析。
结果表明,使用所提出的 VSAD 方法,FMT 的重建准确性、重建鲁棒性和重建速度令人满意。两项在两个裸鼠模型上进行的体内研究进一步证实了该方法的优势。
结果表明,所提出的 VSAD 算法对 FMT 重建是有效的。它对于 FMT 成像准确、鲁棒且高效,并可实际应用于体内 FMT 应用。