arXiv:2503.18342physics.med-pheess.IV2025-03

用深度图像先验修复有限角度SPECT图像失真

Limited-angle SPECT image reconstruction using deep image prior

  • 将投影数据缺失信息以二值掩码融入损失函数,指导网络重建
  • 在数值模拟中PSNR和SSIM均优于传统方法,频率响应更完整
  • 适合临床有限角度成像场景,尤其对高频结构还原有优势

在有限角度(LA)SPECT成像中,由于未采集投影角度范围导致频谱成分丢失,造成断层图像畸变。尽管传统迭代重建方法有所改善,但图像质量仍难以满足临床需求。本文提出一种基于端到端深度图像先验(DIP)的LA SPECT重建方法,将前向投影模型嵌入损失函数,并引入二值掩码指示测量数据是否被采集,以恢复缺失投影数据并重建低畸变图像。使用20个数值体模和临床患者数据进行评估。数值仿真显示,该方法在PSNR和SSIM指标上优于基于反投影的方法。通过对象特异性调制传递函数(MTF)分析,验证其在不同空间频率下的响应,结果表明该方法显著提升了几乎所有空间频率的响应能力,包括未采集角度范围内的频率。实验表明,该方法能有效恢复丢失的频谱成分,减轻图像畸变。

原文摘要 · Abstract (English)

In SPECT image reconstruction, limited-angle (LA) conditions lead to a loss of frequency components, which distort the reconstructed tomographic image along directions corresponding to the non-collected projection angle range. Although conventional iterative image reconstruction methods have been used to improve the reconstructed images in LA conditions, the image quality is still unsuitable for clinical use. We propose a LA SPECT image reconstruction method that uses an end-to-end deep image prior (DIP) framework to improve reconstructed image quality. The proposed LA SPECT image reconstruction is an end-to-end DIP framework which incorporates a forward projection model into the loss function to optimise the neural network. By also incorporating a binary mask that indicates whether each data point in the measured projection data has been collected, the proposed method restores the non-collected projection data and reconstructs a less distorted image. The proposed method was evaluated using 20 numerical phantoms and clinical patient data. In numerical simulations, the proposed method outperformed existing back-projection-based methods in terms of PSNR and SSIM. We analysed the reconstructed tomographic images in the frequency domain using an object-specific modulation transfer function, in simulations and on clinical patient data, to evaluate the response of the reconstruction method to different frequencies of the object. The proposed method significantly improved the response to almost all spatial frequencies, even in the non-collected projection angle range. The results demonstrate that the proposed method reconstructs a less distorted tomographic image. The proposed end-to-end DIP-based reconstruction method restores lost frequency components and mitigates image distortion under LA conditions by incorporating a binary mask into the loss function.

SPECT重建深度先验有限角度图像修复

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