Improving multi-pinhole CZT myocardial perfusion imaging specificity without changing sensibility by using adapted filter parameters.

IF 3.1 3区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Fabien Vauchot, Julien Dubois, Aurélie Bourdon
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引用次数: 0

Abstract

Background: Meta-analysis show the diagnostic performance of cardiac dedicated multi-pinhole cadmium-zinc-telluride myocardial perfusion imaging (MPI) with a sensibility around 0.9 and a specificity around 0.7. The aim of the present study is to explore a simple method to generate less artefact on MPI using single photon emission computed tomography (SPECT) and to enhance specificity without changing sensibility.

Results: From October 2018 to March 2019, 200 patients who underwent SPECT with [99mTc]Tc-tetrofosmin were prospectively recruited: 100 patients with ischemia or necrosis diagnosis (first arm), and 100 patients with myocardial reversible SPECT artefact (second arm). Each SPECT was explored using two image process based on a Butterworth prefilter and post-filter: the original image processing (reconstruction A) with a cut-off frequency equals to 37% of the Nyquist frequency and order equals to 7, and a second image processing (reconstruction B) with a cut-off frequency equals to 25% of the Nyquist frequency and order equals to 5. For each patient, sum stress or rest score with and without septum (SSRS and SSRSws) were calculated with the two reconstructions. No significant statistical difference between SSRSa and SSRSb was identified for the first arm (P = 0.54) and the relative difference ∆r was - 0.5 ± 11.1% (95% CI - 2.7 to 1.7). We found a significant statistical difference between SSRSa and SSRSb for the second arm (p < 0.0001) and the relative difference ∆r was 69.7 ± 16.2% (95% CI 66.6-72.9).

Conclusion: In conclusion, using a Butterworth prefilter and post-filter cut-off frequency equal to 25% of the Nyquist frequency before iterative reconstruction generates less artefact and improves myocardial SPECT specificity without affecting sensibility compared with the original reconstruction.

通过调整滤波器参数,在不改变灵敏度的情况下提高多针孔 CZT 心肌灌注成像的特异性。
背景:荟萃分析表明,心脏专用多针孔镉锌碲心肌灌注成像(MPI)的诊断性能约为 0.9,特异性约为 0.7。本研究旨在探索一种简单的方法,在使用单光子发射计算机断层扫描(SPECT)的 MPI 上产生较少的伪影,并在不改变灵敏度的情况下提高特异性:从2018年10月至2019年3月,前瞻性地招募了200名接受[99mTc]锝-四磷酸盐SPECT检查的患者:100名诊断为缺血或坏死的患者(第一组)和100名心肌可逆SPECT伪影患者(第二组)。每个 SPECT 都使用基于巴特沃斯前滤波和后滤波的两种图像处理方法进行检测:原始图像处理(重建 A)的截止频率等于奈奎斯特频率的 37%,阶数等于 7;第二种图像处理(重建 B)的截止频率等于奈奎斯特频率的 25%,阶数等于 5。通过两种重建计算出每位患者有隔膜和无隔膜时的应力或静息总分(SSRS 和 SSRSws)。第一臂的 SSRSa 和 SSRSb 之间无明显统计学差异(P = 0.54),相对差异 ∆r 为 - 0.5 ± 11.1% (95% CI - 2.7 to 1.7)。我们发现,第二臂的 SSRSa 和 SSRSb 之间存在明显的统计学差异(P 结论:SSRSa 和 SSRSb 之间存在明显的统计学差异:总之,与原始重建相比,在迭代重建前使用巴特沃斯前滤波器和相当于奈奎斯特频率 25% 的后滤波器截止频率可减少伪影并提高心肌 SPECT 特异性,同时不影响灵敏度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
EJNMMI Research
EJNMMI Research RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING&nb-
CiteScore
5.90
自引率
3.10%
发文量
72
审稿时长
13 weeks
期刊介绍: EJNMMI Research publishes new basic, translational and clinical research in the field of nuclear medicine and molecular imaging. Regular features include original research articles, rapid communication of preliminary data on innovative research, interesting case reports, editorials, and letters to the editor. Educational articles on basic sciences, fundamental aspects and controversy related to pre-clinical and clinical research or ethical aspects of research are also welcome. Timely reviews provide updates on current applications, issues in imaging research and translational aspects of nuclear medicine and molecular imaging technologies. The main emphasis is placed on the development of targeted imaging with radiopharmaceuticals within the broader context of molecular probes to enhance understanding and characterisation of the complex biological processes underlying disease and to develop, test and guide new treatment modalities, including radionuclide therapy.
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