The Relationship Between Post-Stent Strut Apposition and Follow-Up Strut Coverage Assessed by a Contour Plot Optical Coherence Tomography Analysis

被引:23
|
作者
Kim, Jung-Sun [1 ]
Ha, Jinyong [2 ]
Kim, Byeong-Keuk [1 ]
Shin, Dong-Ho [1 ]
Ko, Young-Guk [1 ]
Choi, Donghoon [1 ]
Jang, Yangsoo [1 ,3 ]
Hong, Myeong-Ki [1 ,3 ]
机构
[1] Yonsei Univ, Coll Med, Severance Cardiovasc Hosp, Div Cardiol, Seoul 120752, South Korea
[2] Sejong Univ, Dept Opt Engn, Seoul, South Korea
[3] Yonsei Univ, Coll Med, Severance Biomed Sci Inst, Seoul 120752, South Korea
关键词
drug-eluting stent; malapposition; optical coherence tomography; stent coverage; INTRAVASCULAR ULTRASOUND ANALYSIS; ZOTAROLIMUS-ELUTING STENT; NEOINTIMAL COVERAGE; BARE-METAL; VASCULAR-RESPONSE; IMPLANTATION; THROMBOSIS; OCT; MALAPPOSITION; MECHANISMS;
D O I
10.1016/j.jcin.2013.12.205
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Objectives This study sought to evaluate the relationship between post-stent strut apposition and follow-up strut coverage using contour plot optical coherence tomographic analysis. Background Tracking the fate of interested regions of struts at different time points has not been investigated. Methods Post-intervention and 6-month follow-up optical coherence tomographic evaluations were performed in 82 patients treated with biolimus-(n = 37) or sirolimus-eluting stents (n = 45). Post-stent apposition was classified as embedded, apposed, or malapposed. For volumetric stent evaluation, the post-intervention strut-artery distance and the neointimal thickness at follow-up were measured as a function of the circumferential arc length and longitudinal stent length. Computer-generated contour plots of the strut-artery distance and neointimal thickness were compared. Results The percentages of embedded and malapposed struts after intervention were 1.8% (Interquartile range [IQR]: 0.6% to 6.2%) and 2.3% (IQR: 0.5% to 5.2%), respectively. The percentages of uncovered and malapposed struts at 6 months were 16.0% (IQR: 7.4% to 33.3%) and 0% (IQR: 0% to 0.7%), respectively. The percentage of uncovered struts at 6 months varied significantly with post-stent strut apposition (0% [IQR: 0% to 11.4%] in embedded, 16.3% [IQR: 8.1% to 31.3%] in apposed, and 26.8% [IQR: 0% to 56.3%] in malapposed, p < 0.001 for all pairwise comparisons). In lesions without tissue prolapse, embedded struts were all covered (100% covered struts) compared with those with tissue prolapse (76.8% covered, p < 0.001). Conclusions The optical coherence tomography-guided optimization of stent strut apposition enhances strut coverage at follow-up. This comprehensive method for evaluating strut apposition may provide more useful information to understanding the serial changes in strut coverage. (Neointimal Coverage After Implantation of Biolimus Eluting Stent With Biodegradable Polymer: Optical Coherence Tomographic Assessment According to the Treatment of Dyslipidemia and Hypertension and the Types of Implanted Drug-Eluting Stents; NCT01502904) (C) 2014 by the American College of Cardiology Foundation
引用
收藏
页码:641 / 651
页数:11
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