Literature DB >> 18308000

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.

Myeong-Ki Hong1, Gary S Mintz, Cheol Whan Lee, Jeong-Woo Lee, Jae-Hyoung Park, Duk-Woo Park, Seung-Whan Lee, Young-Hak Kim, Sang-Sig Cheong, Jae-Joong Kim, Seong-Wook Park, Seung-Jung Park.   

Abstract

The frequency and distribution of thin-cap fibroatheromas (TCFA) have important clinical implications. We evaluated the frequency and distribution of TCFA identified by virtual histology intravascular ultrasound (VH-IVUS) in acute coronary syndrome (ACS) and stable angina pectoris (SAP). Preintervention 3-vessel VH-IVUS was performed in 105 patients with ACS and 107 with SAP. The length of left anterior descending artery imaged was 72 +/- 16 mm-54 +/- 12 mm in the left circumflex and 92 +/- 19 mm in the right coronary. VH-IVUS-derived TCFA (VH-TCFA) had a necrotic core > or =10% of plaque area without overlying fibrous tissue in a plaque burden > or =40%. There were 76 ruptured plaques (55 in ACS and 21 in SAP) and 439 VH-TCFA (262 in ACS and 177 in SAP, 2.5 +/- 1.5 vs 1.7 +/- 1.1 TCFA per patient with ACS and with SAP, respectively; p <0.001). Twelve patients with ACS and 1 with SAP had multiple ruptured plaques (p <0.001); 76 patients with ACS and 58 with SAP had multiple VH-TCFA (p = 0.009). Presentation of ACS was the only independent predictor for multiple ruptured plaques (p = 0.013) or multiple VH-TCFA (p = 0.011). Eighty-three percent of VH-TCFA were located within 40 mm of the coronary: 111 < or =10 (25%), 110 from 11 to 20 (25%), 83 from 21 to 30 (19%), and 61 from 31 to 40 mm (14%). The axial distribution of VH-TCFA was similar in patients with ACS and those with SAP and was similar to the axial distribution of ruptured plaques. In conclusion, 3-vessel VH-IVUS imaging showed a higher frequency of VH-TCFA in primary and secondary lesions in patients with ACS compared with those with SAP, but showed a similar clustering of VH-TCFA in the proximal 40 mm of each coronary artery.

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Year:  2007        PMID: 18308000     DOI: 10.1016/j.amjcard.2007.09.113

Source DB:  PubMed          Journal:  Am J Cardiol        ISSN: 0002-9149            Impact factor:   2.778


  16 in total

Review 1.  Spectroscopy to improve identification of vulnerable plaques in cardiovascular disease.

Authors:  Janneke L M Bruggink; Robbert Meerwaldt; Gooitzen M van Dam; Joop D Lefrandt; Riemer H J A Slart; René A Tio; Andries J Smit; Clark J Zeebregts
Journal:  Int J Cardiovasc Imaging       Date:  2009-09-17       Impact factor: 2.357

Review 2.  Intravascular imaging of vulnerable coronary plaque: current and future concepts.

Authors:  Rishi Puri; Matthew I Worthley; Stephen J Nicholls
Journal:  Nat Rev Cardiol       Date:  2011-01-25       Impact factor: 32.419

Review 3.  [Intravascular ultrasound for recognition of atherosclerotic plaques and plaque composition. Current state of the diagnostic value].

Authors:  A König; V Klauss
Journal:  Herz       Date:  2011-08       Impact factor: 1.443

4.  Diagnosis of Thin-Capped Fibroatheromas in Intravascular Optical Coherence Tomography Images: Effects of Light Scattering.

Authors:  Jennifer E Phipps; Taylor Hoyt; Deborah Vela; Tianyi Wang; Joel E Michalek; L Maximilian Buja; Ik-Kyung Jang; Thomas E Milner; Marc D Feldman
Journal:  Circ Cardiovasc Interv       Date:  2016-07       Impact factor: 6.546

5.  Correlation between monocyte chemoattractant protein-1/chemokine (C-C motif) ligand 2 and coronary plaque characteristics.

Authors:  Meng Li; Yan Chen; Yan Zhang; Danna Li; Jun Liu
Journal:  Exp Biol Med (Maywood)       Date:  2020-07-08

6.  Intravascular multispectral optoacoustic tomography of atherosclerosis: prospects and challenges.

Authors:  Amir Rosenthal; Farouc A Jaffer; Vasilis Ntziachristos
Journal:  Imaging Med       Date:  2012-06

7.  Impact of analyzing less image frames per segment for radiofrequency-based volumetric intravascular ultrasound measurements in mild-to-moderate coronary atherosclerosis.

Authors:  Jennifer Huisman; Marc Hartmann; Eline S K Mattern; Gary S Mintz; Mounir W Z Basalus; Gert K van Houwelingen; Patrick M J Verhorst; Clemens von Birgelen
Journal:  Int J Cardiovasc Imaging       Date:  2010-02-27       Impact factor: 2.357

8.  Intravascular ultrasound as a clinical adjunct for carotid plaque characterization.

Authors:  Elizabeth Hitchner; Mohamed A Zayed; George Lee; Doug Morrison; Barton Lane; Wei Zhou
Journal:  J Vasc Surg       Date:  2014-03       Impact factor: 4.268

9.  Ubiquitous atherosclerosis in coronary arteries without angiographically significant stenosis.

Authors:  Naoki Ishio; Yoshio Kobayashi; Yo Iwata; Hideki Kitahara; Kenichi Fukushima; Tatsuhiko Asano; Takashi Nakayama; Nakabumi Kuroda; Issei Komuro
Journal:  Heart Vessels       Date:  2010-01-21       Impact factor: 2.037

Review 10.  Imaging of the unstable plaque: how far have we got?

Authors:  Christian M Matter; Matthias Stuber; Matthias Nahrendorf
Journal:  Eur Heart J       Date:  2009-10-15       Impact factor: 29.983

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