ArticleThe international journal of cardiovascular imaging2013
Unrestricted utilization of frequency domain optical coherence tomography in coronary interventions.
Article in The international journal of cardiovascular imaging, 2013. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed.
- One-Year Clinical Outcomes in Acute ST-Segment Elevation Myocardial Infarction Patients Undergoing Optical Coherence Tomography-Guided Primary Percutaneous Coronary Intervention: A Comparative Study.Medical science monitor : international medical journal of experimental and clinical research · 2024Article
- Automated A-line coronary plaque classification of intravascular optical coherence tomography images using handcrafted features and large datasets.Journal of biomedical optics · 2019Article
- Coronary calcification segmentation in intravascular OCT images using deep learning: application to calcification scoring.Journal of medical imaging (Bellingham, Wash.) · 2019Article
- Current clinical applications of coronary optical coherence tomography.Cardiovascular intervention and therapeutics · 2018Review
- How to Approach the Assessment of Cardiac Allograft Vasculopathy in the Modern Era: Review of Invasive Imaging Modalities.Current heart failure reports · 2016Review
- Invasive assessment modalities of unprotected left main stenosis.Journal of the Saudi Heart Association · 2015Review
- Quantitative upper airway endoscopy with swept-source anatomical optical coherence tomography.Biomedical optics express · 2014Article
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Authors and funding
10 authors.
Funding
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Abstract
Frequency domain optical coherence tomography (FD-OCT) has shown promise to evaluate coronary devices in clinical trials, however, little is known about its application in clinical practice. This prospective, single center initiative planned for 100 % FD-OCT utilization in all patients undergoing coronary interventions during a 60-day period. Operators pre-specified the planned intervention based on angiography alone. FD-OCT success was defined as acquisition of good quality images enabling adequate quantification of vessel dimensions and lesion/percutaneous coronary intervention (PCI) assessment. Impact on management occurred when angiography-based planning was altered based on FD-OCT data. There were 297 FD-OCT acquisitions performed in 155 vessels from 150 patients. There were no FD-OCT procedural related cardiac adverse events and success was obtained in 85.7 % of all target vessels (pre-PCI = 76.8 % vs. post-PCI = 90.1 %, p = 0.004). Success on the first pullback occurred in 80.3 % overall (61.9 % in the initial operator experience and 85.5 % after the third procedure). FD-OCT impact on management was 81.8 % pre-PCI and 54.8 % post-PCI. Stent malapposition was detected in 39.2 % (89.4 % underwent further intervention) and edge dissection in 32.5 % (21.1 % treated with stent). FD-OCT success and management impact were similar in ACS and non-ACS patients (82.1 vs. 81.1 %, p = 1.000, and 62.5 vs. 65.1 %, p = 0.854, respectively). FD-OCT is safe, can successfully be incorporated into routine practice, and alters procedural strategy in a high proportion of patients undergoing PCI.
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