CBS 2019
CBSMD教育中心
中 文

科学研究

Abstract

Recommended Article

Clinical trial design and rationale of the Multicenter Study of MagLev Technology in Patients Undergoing Mechanical Circulatory Support Therapy With HeartMate 3 (MOMENTUM 3) investigational device exemption clinical study protocol A three-vessel virtual histology intravascular ultrasound analysis of frequency and distribution of thin-cap fibroatheromas in patients with acute coronary syndrome or stable angina pectoris Clinical impact of intravascular ultrasound guidance in drug-eluting stent implantation for unprotected left main coronary disease: pooled analysis at the patient-level of 4 registries Prdm16 Deficiency Leads to Age-Dependent Cardiac Hypertrophy, Adverse Remodeling, Mitochondrial Dysfunction, and Heart Failure H2FPEF Score for Predicting Future Heart Failure in Stable Outpatients With Cardiovascular Risk Factors When and how to use SGLT2 inhibitors in patients with HFrEF or chronic kidney disease Fractional flow reserve derived from CCTA may have a prognostic role in myocardial bridging Association of Left Ventricular Systolic Function With Incident Heart Failure in Late Life

Review Article2018 Jan;33(1):1-10.

JOURNAL:Cardiovasc Interv Ther. Article Link

Current clinical applications of coronary optical coherence tomography

Kume T, Uemura S. Keywords: Coronary intervention; Imaging; Optical coherence tomography; Thrombus; Vulnerable plaque

ABSTRACT


Optical coherence tomography (OCT) is an intra-coronary diagnostic technique that provides detailed imagings of blood vessels in the current cardiac catheterization laboratory. The higher resolution of OCT often provides superior delineation of each structure compared with intravascular ultrasound (IVUS), and it can reliably visualize the microstructure of normal and diseased arteries. The capabilities of OCT are well suited for the identification of calcified plaque and neointima formation after stent implantation. It has been reported that OCT-guided percutaneous coronary intervention (PCI) resulted in equivalent clinical and angiographic outcomes in comparison with IVUS-guided PCI. Recently, the three-dimensional reconstruction of OCT and a real-time point-to-point correspondence between coronary angiographic and OCT/OFDI images have been developed and provide useful information to PCI operators. The unique capabilities of OCT as an investigational tool for high-risk lesions will serve the cardiology community well, as it moves us toward a better understanding of atherosclerotic plaque. In addition, because of the development of new OCT technology, OCT has become a notable catheter-based imaging technology that can provide practical guidance for PCI in clinical settings.