CBS 2019
CBSMD教育中心
中 文

Optical Coherence Tomography

Abstract

Recommended Article

Clinical Impact of OCT Findings During PCI: The CLI-OPCI II Study Neoatherosclerosis in Patients With Coronary Stent Thrombosis: Findings From Optical Coherence Tomography Imaging (A Report of the PRESTIGE Consortium) Impact of low tissue backscattering by optical coherence tomography on endothelial function after drug-eluting stent implantation A Survey on Coronary Atherosclerotic Plaque Tissue Characterization in Intravascular Optical Coherence Tomography Device specificity of vascular healing following implantation of bioresorbable vascular scaffolds and bioabsorbable polymer metallic drug-eluting stents in human coronary arteries: the ESTROFA OCT BVS vs. BP-DES study Coronary Artery Intraplaque Microvessels by Optical Coherence Tomography Correlate With Vulnerable Plaque and Predict Clinical Outcomes in Patients With Ischemic Angina Histopathological validation of optical coherence tomography findings of the coronary arteries Angiography Alone Versus Angiography Plus Optical Coherence Tomography to Guide Percutaneous Coronary Intervention Outcomes From the Pan-London PCI Cohort

Clinical Trial 2018 Jun;11(6):859-867.

JOURNAL:JACC Cardiovasc Imaging. Article Link

Uncovered Culprit Plaque Ruptures in Patients With ST-Segment Elevation Myocardial Infarction Assessed by Optical Coherence Tomography and Intravascular Ultrasound With iMap

Hougaard M, Hansen HS, Thayssen P et al. Keywords: OCT; STEMI; plaque rupture

ABSTRACT


OBJECTIVES - This study assessed the incidence and course of healing of uncovered plaque ruptures (PR) following primary percutaneous coronary intervention.


BACKGROUND - The infarct-related occlusion is frequently located at the lesion site with maximum thrombus burden, whereas the culprit PR may be situated more proximally or distally.

METHODS - Uncovered PR in segments adjacent to the stent were identified by optical coherence tomography and intravascular ultrasound using iMap (Boston Scientific, Marlborough, Massachusetts) within 48 h and after 12 months. The percentages of necrotic core, fibrotic tissue, lipid tissue, and calcific tissue were determined.

RESULTS - Eleven uncovered PR were found in 10 of 77 patients (13.0%). Eight of these ruptures (10.4%) were identified as culprit and were located proximal to the stent. Two patients were treated before follow-up due to recurrent symptoms. After 12 months, 3 PR had healed incompletely without causing symptoms. The lumen area at the PR site was reduced (7.5 mm2 [interquartile range (IQR): 4.8 to 9.3 mm2] to 3.6 mm2 [IQR: 2.8 to 8.0 mm2]; p = 0.012). Proximal segments with uncovered PR had greater plaque volumes (62.1 mm3 [IQR: 50.2 to 83.6 mm3] vs. 38.7 mm3 [IQR: 29.6 to 47.6 mm3], respectively; p < 0.001), vessel volumes (110.7 mm3 [IQR: 92.3 to 128.1 mm3] vs. 76.0 mm3 [IQR: 63.8 to 100.3 mm3], respectively; p < 0.001), and greater percentages of necrotic core (34.0% [IQR: 29.0% to 44.5%] vs. 20.5% (IQR: 10.0% to 29.0%]; p < 0.001). Conversely, percentages of fibrotic tissue were lower (44.0% [IQR: 32.0% to 47.0%] vs. 56.0% [IQR: 46.0% to 66.0%]; p = 0.001), whereas no differences were found for lipid tissue and calcific tissue.

CONCLUSIONS - Uncovered culprit ruptures detected by optical coherence tomography were common following primary percutaneous coronary intervention and were found to be associated with significant lumen reduction during the healing process.

Copyright © 2018 American College of Cardiology Foundation. Published by Elsevier Inc. All rights reserved.