[1] SARRAJU A, NISSEN S E. Atherosclerotic plaque stabilization and regression: a review of clinical evidence[J].Nat Rev Cardiol, 2024, 21(7): 487-497. [2] 刘明波, 何新叶, 杨晓红, 等. 《中国心血管健康与疾病报告2024》要点解读[J]. 临床心血管病杂志, 2025, 41(7): 492-511. [3] DWECK M R, MAUROVICH-HORVAT P, LEINER T, et al. Contemporary rationale for non-invasive imaging of adverse coronary plaque features to identify the vulnerable patient: a Position Paper from the European Society of Cardiology Working Group on Atherosclerosis and Vascular Biology and the European Association of Cardiovascular Imaging[J].Eur Heart J Cardiovasc Imaging, 2020, 21(11): 1177-1183. [4] TZIMAS G, GULSIN G S, EVERETT R J, et al. Age-andsex-specific nomographic CT quantitative plaque data from a large international cohort[J]. JACC Cardiovasc Imaging, 2024, 17(2): 165-175. [5] VECSEY-NAGY M, TREMAMUNNO G, SCHOEPF U J, et al. Coronary plaque quantification with ultrahigh-spatial-resolution photon-counting detector CT: intraindividual comparison with energy-integrating detector CT[J]. Radiology, 2025, 314(3): e241479. [6] 张挽时. 光子计数CT成像技术和临床价值[J]. 中华放射学杂志, 2023, 57(10): 1133-1136. [7] SI-MOHAMED S A, BOCCALINI S, LACOMBE H, et al. Coronary CT angiography with photon-counting CT: first-in-human results[J]. Radiology, 2022, 303(2): 303-313. [8] SCHWARTZ F R, SODICKSON A D, PICKHARDT P J, et al. Photon-counting CT: technology, current and potential future clinical applications, and overview of approved systems and those in various stages of research and development[J]. Radiology, 2025, 314(3): e240662. [9] HAGAR M T, SOSCHYNSKI M, SAFFAR R, et al. Accuracy of ultrahigh-resolution photon-counting CT for detecting coronary artery disease in a high-risk population[J]. Radiology, 2023, 307(5): e223305. [10] AUSTEN W G, EDWARDS J E, FRYE R L, et al. A reporting system on patients evaluated for coronary artery disease. Report of the Ad Hoc Committee for Grading of Coronary Artery Disease, Council on Cardiovascular Surgery, American Heart Association[J]. Circulation, 1975, 51(4 Suppl): 5-40. [11] KNUUTI J, BALLO H, JUAREZ-OROZCO L E, et al. The performance of non-invasive tests to rule-in and rule-out significant coronary artery stenosis in patients with stable angina: a meta-analysis focused on post-test disease probability[J].Eur Heart J, 2018, 39(35): 3322-3330. [12] 赵明明, 薛月芹, 王艳, 等. 经远端桡动脉行冠状动脉介入诊疗可行性和安全性的Meta分析[J]. 中国循环杂志, 2021, 36(12): 1173-1179. [13] PATEL M R, PETERSON E D, DAI D, et al. Low diagnostic yield of elective coronary angiography[J]. N Engl J Med, 2010, 362(10): 886-895. [14] FUKUI R, HARASHIMA S, SAMEJIMA W, et al. Acquisition and reconstruction techniques for coronary CT angiography: current status and trends over the past decade[J]. Radiographics, 2025, 45(7): e240083. [15] BIAVATI F, SABA L, BOUSSOUSSOU M, et al. Coronary artery calcium score predicts major adverse cardiovascular events in stable chest pain[J]. Radiology, 2024, 310(3): e231557. [16] WILLIAMS M C, MOSS A J, DWECK M, et al. Coronary artery plaque characteristics associated with adverse outcomes in the SCOT-HEART study[J]. J Am Coll Cardiol, 2019, 73(3): 291-301. [17] KAY F U, CANAN A, KUKKAR V, et al. Diagnostic accuracy of on-premise automated coronary CT angiography analysis based on coronary artery disease reporting and data system 2.0[J]. Radiology, 2025, 315(2): e242087. [18] QI L, TANG L J, XU Y, et al. The diagnostic performance of coronary CT angiography for the assessment of coronary stenosis in calcified plaque[J]. PLoS One, 2016, 11(5): e0154852. [19] SAKAI K, SHIN D, SINGH M, et al. Diagnostic performance and clinical impact of photon-counting detector computed tomography in coronary artery disease[J]. J Am Coll Cardiol, 2025, 85(4): 339-348. [20] 任玥, 周振, 李庆, 等. 光子计数CT在心血管成像的应用进展[J]. 中华放射学杂志, 2025, 59(3): 337-341. [21] KOONS E K, RAJIAH P S, THORNE J E, et al. Coronary artery stenosis quantification in patients with dense calcifications using ultra-high-resolution photon-counting-detector computed tomography[J]. J Cardiovasc Comput Tomogr, 2024, 18(1): 56-61.
|