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Characterization of Human Atherosclerosis by Optical Coherence Tomography

医学 光学相干层析成像 纤维帽 易损斑块 血管内超声 放射科 高分辨率 病理 遥感 地质学
作者
Hiroshi Yabushita,Brett E. Bouma,Stuart L. Houser,H. Thomas Aretz,Ik‐Kyung Jang,Kelly Schlendorf,Christopher R. Kauffman,Milen Shishkov,Dong-Heon Kang,Elkan F. Halpern,Guillermo J. Tearney
出处
期刊:Circulation [Ovid Technologies (Wolters Kluwer)]
卷期号:106 (13): 1640-1645 被引量:1219
标识
DOI:10.1161/01.cir.0000029927.92825.f6
摘要

Background— High-resolution visualization of atherosclerotic plaque morphology may be essential for identifying coronary plaques that cause acute coronary events. Optical coherence tomography (OCT) is an intravascular imaging modality capable of providing cross-sectional images of tissue with a resolution of 10 μm. To date, OCT imaging has not been investigated in sufficient detail to assess its accuracy for characterizing atherosclerotic plaques. The aim of this study was to establish objective OCT image criteria for atherosclerotic plaque characterization in vitro. Methods and Results— OCT images of 357 (diseased) atherosclerotic arterial segments obtained at autopsy were correlated with histology. OCT image criteria for 3 types of plaque were formulated by analysis of a subset (n=50) of arterial segments. OCT images of fibrous plaques were characterized by homogeneous, signal-rich regions; fibrocalcific plaques by well-delineated, signal-poor regions with sharp borders; and lipid-rich plaques by signal-poor regions with diffuse borders. Independent validation of these criteria by 2 OCT readers for the remaining segments (n=307) demonstrated a sensitivity and specificity ranging from 71% to 79% and 97% to 98% for fibrous plaques, 95% to 96% and 97% for fibrocalcific plaques, and 90% to 94% and 90% to 92% for lipid-rich plaques, respectively (overall agreement, κ=0.83 to 0.84). The interobserver and intraobserver reliabilities of OCT assessment were high (κ values of 0.88 and 0.91, respectively). Conclusions— Objective OCT criteria are highly sensitive and specific for characterizing different types of atherosclerotic plaques. These results represent an important step in validating this new intravascular imaging modality and will provide a basis for the interpretation of intracoronary OCT images obtained from patients.

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