arXiv:2511.06203eess.IV2025-11

SPASHT提升稀疏视角心肌灌注SPECT图像质量,增强病灶检测能力。

SPASHT: An image-enhancement method for sparse-view MPI SPECT

  • 基于缺陷检测任务自适应训练,提升稀疏视角图像重建效果。
  • 在1/6、1/3、1/2投影视图下,AUC显著优于传统稀疏视角方法。
  • 临床回顾性研究与人工观察均验证其在病灶检测中的优越性。

心肌灌注显像单光子发射计算机断层扫描(MPI SPECT)是冠心病诊断的常用手段,但扫描时间长,易引发患者不适和运动伪影。减少投影视图数可缩短扫描时间,但会引入采样伪影和噪声,降低图像质量。为此,本文提出稀疏视角SPECT图像增强方法SPASHT,其训练目标直接面向缺陷检测任务。在包含真实临床病灶并人工插入缺陷的回顾性临床研究中,对1/6、1/3、1/2典型投影视图数下的性能进行评估,使用受试者工作特征曲线下面积(AUC)量化检测性能。结果表明,所有视图条件下SPASHT重建图像的AUC均显著优于稀疏视角协议。此外,人类观察者实验也显示SPASHT在病灶检测上表现更优。研究证明了SPASHT在提升稀疏视角MPI SPECT图像质量方面的有效性,为后续临床验证提供依据。

原文摘要 · Abstract (English)

Single-photon emission computed tomography for myocardial perfusion imaging (MPI SPECT) is a widely used diagnostic tool for coronary artery disease. However, the procedure requires considerable scanning time, leading to patient discomfort and the potential for motion-induced artifacts. Reducing the number of projection views while keeping the time per view unchanged provides a mechanism to shorten the scanning time. However, this approach leads to increased sampling artifacts, higher noise, and hence limited image quality. To address these issues, we propose sparseview SPECT image enhancement (SPASHT), inherently training the algorithm to improve performance on defect-detection tasks. We objectively evaluated SPASHT on the clinical task of detecting perfusion defects in a retrospective clinical study using data from patients who underwent MPI SPECT, where the defects were clinically realistic and synthetically inserted. The study was conducted for different numbers of fewer projection views, including 1/6, 1/3, and 1/2 of the typical projection views for MPI SPECT. Performance on the detection task was quantified using area under the receiver operating characteristic curve (AUC). Images obtained with SPASHT yielded significantly improved AUC compared to those obtained with the sparse-view protocol for all the considered numbers of fewer projection views. To further assess performance, a human observer study on the task of detecting perfusion defects was conducted. Results from the human observer study showed improved detection performance with images reconstructed using SPASHT compared to those from the sparse-view protocol. The results provide evidence of the efficacy of SPASHT in improving the quality of sparse-view MPI SPECT images and motivate further clinical validation.

医学成像图像增强SPECT缺陷检测

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