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QCard-NM:开发一种半自动分割方法,用于非门控心肌灌注单光子发射计算机断层显像(SPECT)成像中右心室的定量分析。

QCard-NM: Developing a semiautomatic segmentation method for quantitative analysis of the right ventricle in non-gated myocardial perfusion SPECT imaging.

作者信息

Entezarmahdi Seyed Mohammad, Faghihi Reza, Yazdi Mehran, Shahamiri Negar, Geramifar Parham, Haghighatafshar Mahdi

机构信息

Nuclear Engineering Department, Shiraz University, Shiraz, Iran.

Nuclear Medicine and Molecular Imaging Research Center, Namazi Teaching Hospital, Shiraz University of Medical Sciences, Shiraz, Iran.

出版信息

EJNMMI Phys. 2023 Mar 23;10(1):21. doi: 10.1186/s40658-023-00539-6.

Abstract

BACKGROUND

Recent studies have shown that the right ventricular (RV) quantitative analysis in myocardial perfusion imaging (MPI) SPECT can be beneficial in the diagnosis of many cardiopulmonary diseases. This study proposes a new algorithm for right ventricular 3D segmentation and quantification.

METHODS

The proposed Quantitative Cardiac analysis in Nuclear Medicine imaging (QCard-NM) algorithm provides RV myocardial surface estimation and creates myocardial contour using an iterative 3D model fitting method. The founded contour is then used for quantitative RV analysis. The proposed method was assessed using various patient datasets and digital phantoms. First, the physician's manually drawn contours were compared to the QCard-NM RV segmentation using the Dice similarity coefficient (DSC). Second, using repeated MPI scans, the QCard-NM's repeatability was evaluated and compared with the QPS (quantitative perfusion SPECT) algorithm. Third, the bias of the calculated RV cavity volume was analyzed using 31 digital phantoms using the QCard-NM and QPS algorithms. Fourth, the ability of QCard-NM analysis to diagnose coronary artery diseases was assessed in 60 patients referred for both MPI and coronary angiography.

RESULTS

The average DSC value was 0.83 in the first dataset. In the second dataset, the coefficient of repeatability of the calculated RV volume between two repeated scans was 13.57 and 43.41 ml for the QCard-NM and QPS, respectively. In the phantom study, the mean absolute percentage errors for the calculated cavity volume were 22.6% and 42.2% for the QCard-NM and QPS, respectively. RV quantitative analysis using QCard-NM in detecting patients with severe left coronary system stenosis and/or three-vessel diseases achieved a fair performance with the area under the ROC curve of 0.77.

CONCLUSION

A novel model-based iterative method for RV segmentation task in non-gated MPI SPECT is proposed. The precision, accuracy, and consistency of the proposed method are demonstrated by various validation techniques. We believe this preliminary study could lead to developing a framework for improving the diagnosis of cardiopulmonary diseases using RV quantitative analysis in MPI SPECT.

摘要

背景

近期研究表明,心肌灌注成像(MPI)单光子发射计算机断层扫描(SPECT)中的右心室(RV)定量分析对多种心肺疾病的诊断可能有益。本研究提出了一种用于右心室三维分割和定量分析的新算法。

方法

所提出的核医学成像定量心脏分析(QCard-NM)算法可进行右心室心肌表面估计,并使用迭代三维模型拟合方法创建心肌轮廓。然后将得到的轮廓用于右心室定量分析。使用各种患者数据集和数字体模对所提出的方法进行评估。首先,使用骰子相似系数(DSC)将医生手动绘制的轮廓与QCard-NM右心室分割结果进行比较。其次,使用重复的MPI扫描,评估QCard-NM的可重复性,并与定量灌注SPECT(QPS)算法进行比较。第三,使用31个数字体模,分析QCard-NM和QPS算法计算右心室腔容积的偏差。第四,在60例同时接受MPI和冠状动脉造影检查的患者中,评估QCard-NM分析诊断冠状动脉疾病的能力。

结果

在第一个数据集中,平均DSC值为0.83。在第二个数据集中,两次重复扫描之间计算得到的右心室容积的可重复性系数,QCard-NM为13.57 ml,QPS为43.41 ml。在体模研究中,QCard-NM和QPS计算腔容积的平均绝对百分比误差分别为22.6%和42.2%。使用QCard-NM进行右心室定量分析检测严重左冠状动脉系统狭窄和/或三支血管疾病患者时,表现良好,ROC曲线下面积为0.77。

结论

提出了一种用于非门控MPI SPECT中右心室分割任务的基于模型的新迭代方法。各种验证技术证明了所提出方法的精度、准确性和一致性。我们相信这项初步研究可能会促成一个利用MPI SPECT中的右心室定量分析来改进心肺疾病诊断的框架的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efdc/10036722/4d7d660cf309/40658_2023_539_Fig1_HTML.jpg

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