Skip to main content
Top
Published in: Cardiovascular Intervention and Therapeutics 2/2022

01-04-2022 | Arterial Diseases | Expert Consensus Document

Expert consensus statement for quantitative measurement and morphological assessment of optical coherence tomography: update 2022

Authors: Kenichi Fujii, Takashi Kubo, Hiromasa Otake, Gaku Nakazawa, Shinjo Sonoda, Kiyoshi Hibi, Toshiro Shinke, Yoshio Kobayashi, Yuji Ikari, Takashi Akasaka

Published in: Cardiovascular Intervention and Therapeutics | Issue 2/2022

Login to get access

Abstract

In this updated expert consensus document, the methods for the quantitative measurement and morphological assessment of optical coherence tomography (OCT)/optical frequency domain imaging images (OFDI) are briefly summarized. The focus is on the clinical application and the clinical evidence of OCT/OFDI to guide percutaneous coronary interventions.
Literature
1.
go back to reference Fujii K, Kubo T, Otake H, Nakazawa G, Sonoda S, Hibi K, et al. Expert consensus statement for quantitative measurement and morphological assessment of optical coherence tomography. Cardiovasc Interv Ther. 2020;35:13–8.CrossRef Fujii K, Kubo T, Otake H, Nakazawa G, Sonoda S, Hibi K, et al. Expert consensus statement for quantitative measurement and morphological assessment of optical coherence tomography. Cardiovasc Interv Ther. 2020;35:13–8.CrossRef
2.
go back to reference Huang D, Swanson EA, Lin CP, Schuman JS, Stinson WG, Chang W, et al. Optical coherence tomography. Science. 1991;254:1178–81.CrossRef Huang D, Swanson EA, Lin CP, Schuman JS, Stinson WG, Chang W, et al. Optical coherence tomography. Science. 1991;254:1178–81.CrossRef
3.
go back to reference Kubo T, Shinke T, Okamura T, Hibi K, Nakazawa G, Morino Y, et al. Optical frequency domain imaging vs. intravascular ultrasound in percutaneous coronary intervention (OPINION trial): one-year angiographic and clinical results. Eur Heart J. 2017;38:3139–47.CrossRef Kubo T, Shinke T, Okamura T, Hibi K, Nakazawa G, Morino Y, et al. Optical frequency domain imaging vs. intravascular ultrasound in percutaneous coronary intervention (OPINION trial): one-year angiographic and clinical results. Eur Heart J. 2017;38:3139–47.CrossRef
4.
go back to reference Otake H, Kubo T, Takahashi H, Shinke T, Okamura T, Hibi K, et al. Optical frequency domain imaging versus intravascular ultrasound in percutaneous coronary intervention (OPINION Trial): results from the OPINION imaging study. JACC Cardiovasc Imaging. 2018;11:111–23.CrossRef Otake H, Kubo T, Takahashi H, Shinke T, Okamura T, Hibi K, et al. Optical frequency domain imaging versus intravascular ultrasound in percutaneous coronary intervention (OPINION Trial): results from the OPINION imaging study. JACC Cardiovasc Imaging. 2018;11:111–23.CrossRef
5.
go back to reference Mintz GS, Nissen SE, Anderson WD, Bailey SR, Erbel R, Fitzgerald PJ, et al. American College of cardiology clinical expert consensus document on standards for acquisition, measurement and reporting of intravascular ultrasound studies (IVUS). A report of the American College of Cardiology Task Force on Clinical Expert Consensus Documents. J Am Coll Cardiol. 2001;37:1478–92.CrossRef Mintz GS, Nissen SE, Anderson WD, Bailey SR, Erbel R, Fitzgerald PJ, et al. American College of cardiology clinical expert consensus document on standards for acquisition, measurement and reporting of intravascular ultrasound studies (IVUS). A report of the American College of Cardiology Task Force on Clinical Expert Consensus Documents. J Am Coll Cardiol. 2001;37:1478–92.CrossRef
6.
go back to reference Tanigawa J, Barlis P, Dimopoulos K, Di Mario C. Optical coherence tomography to assess malapposition in overlapping drug-eluting stents. EuroIntervention. 2008;3:580–3.CrossRef Tanigawa J, Barlis P, Dimopoulos K, Di Mario C. Optical coherence tomography to assess malapposition in overlapping drug-eluting stents. EuroIntervention. 2008;3:580–3.CrossRef
7.
go back to reference Mehanna EA, Attizzani GF, Kyono H, Hake M, Bezerra HG. Assessment of coronary stent by optical coherence tomography, methodology and definitions. Int J Cardiovasc Imaging. 2011;27:259–69.CrossRef Mehanna EA, Attizzani GF, Kyono H, Hake M, Bezerra HG. Assessment of coronary stent by optical coherence tomography, methodology and definitions. Int J Cardiovasc Imaging. 2011;27:259–69.CrossRef
8.
go back to reference Yabushita H, Bouma BE, Houser SL, Aretz HT, Jang IK, Schlendorf KH, et al. Characterization of human atherosclerosis by optical coherence tomography. Circulation. 2002;106:1640–5.CrossRef Yabushita H, Bouma BE, Houser SL, Aretz HT, Jang IK, Schlendorf KH, et al. Characterization of human atherosclerosis by optical coherence tomography. Circulation. 2002;106:1640–5.CrossRef
9.
go back to reference Fujii K, Kawakami R, Hirota S. Histopathological validation of optical coherence tomography findings of the coronary arteries. J Cardiol. 2018;72:179–85.CrossRef Fujii K, Kawakami R, Hirota S. Histopathological validation of optical coherence tomography findings of the coronary arteries. J Cardiol. 2018;72:179–85.CrossRef
10.
go back to reference Kume T, Akasaka T, Kawamoto T, Watanabe N, Toyota E, Neishi Y, et al. Assessment of coronary arterial plaque by optical coherence tomography. Am J Cardiol. 2006;97:1172–5.CrossRef Kume T, Akasaka T, Kawamoto T, Watanabe N, Toyota E, Neishi Y, et al. Assessment of coronary arterial plaque by optical coherence tomography. Am J Cardiol. 2006;97:1172–5.CrossRef
11.
go back to reference Allen TJ, Hall A, Dhillon AP, Owen JS, Beard PC. Spectroscopic photoacoustic imaging of lipid-rich plaques in the human aorta in the 740 to 1400 nm wavelength range. J Biomed Opt. 2012;17:061209.CrossRef Allen TJ, Hall A, Dhillon AP, Owen JS, Beard PC. Spectroscopic photoacoustic imaging of lipid-rich plaques in the human aorta in the 740 to 1400 nm wavelength range. J Biomed Opt. 2012;17:061209.CrossRef
12.
go back to reference Fujii K, Hao H, Shibuya M, Imanaka T, Fukunaga M, Miki K, et al. Accuracy of OCT, grayscale IVUS, and their combination for the diagnosis of coronary TCFA: an ex vivo validation study. JACC Cardiovasc Imaging. 2015;8:451–60.CrossRef Fujii K, Hao H, Shibuya M, Imanaka T, Fukunaga M, Miki K, et al. Accuracy of OCT, grayscale IVUS, and their combination for the diagnosis of coronary TCFA: an ex vivo validation study. JACC Cardiovasc Imaging. 2015;8:451–60.CrossRef
13.
go back to reference van Soest G, Regar E, Goderie TP, Gonzalo N, Koljenović S, van Leenders GJ, et al. Pitfalls in plaque characterization by OCT: image artifacts in native coronary arteries. JACC Cardiovasc Imaging. 2011;4:810–3.CrossRef van Soest G, Regar E, Goderie TP, Gonzalo N, Koljenović S, van Leenders GJ, et al. Pitfalls in plaque characterization by OCT: image artifacts in native coronary arteries. JACC Cardiovasc Imaging. 2011;4:810–3.CrossRef
14.
go back to reference Torii S, Nakazawa G, Ijichi T, Yoshikawa A, Murakami T, Natsumeda M, et al. Simultaneous intravascular ultrasound usage overcomes misinterpretation when evaluating lipid-rich plaques with optical frequency domain imaging–ex vivo study. Circ J. 2015;79:2641–7.CrossRef Torii S, Nakazawa G, Ijichi T, Yoshikawa A, Murakami T, Natsumeda M, et al. Simultaneous intravascular ultrasound usage overcomes misinterpretation when evaluating lipid-rich plaques with optical frequency domain imaging–ex vivo study. Circ J. 2015;79:2641–7.CrossRef
15.
go back to reference Virmani R, Kolodgie FD, Burke AP, Farb A, Schwartz SM. Lessons from sudden coronary death: a comprehensive morphological classification scheme for atherosclerotic lesions. Arterioscler Thromb Vasc Biol. 2000;20:1262–75.CrossRef Virmani R, Kolodgie FD, Burke AP, Farb A, Schwartz SM. Lessons from sudden coronary death: a comprehensive morphological classification scheme for atherosclerotic lesions. Arterioscler Thromb Vasc Biol. 2000;20:1262–75.CrossRef
16.
go back to reference Ijichi T, Nakazawa G, Torii S, Nakano M, Yoshikawa A, Morino Y, et al. Evaluation of coronary arterial calcification—Ex-vivo assessment by optical frequency domain imaging. Atherosclerosis. 2015;243:242–7.CrossRef Ijichi T, Nakazawa G, Torii S, Nakano M, Yoshikawa A, Morino Y, et al. Evaluation of coronary arterial calcification—Ex-vivo assessment by optical frequency domain imaging. Atherosclerosis. 2015;243:242–7.CrossRef
17.
go back to reference Prati F, Di Vito L, Biondi-Zoccai G, Occhipinti M, La Manna A, Tamburino C, et al. Angiography alone versus angiography plus optical coherence tomography to guide decision-making during percutaneous coronary intervention: the Centro per la Lotta contro l’Infarto-Optimisation of Percutaneous Coronary Intervention (CLI-OPCI) study. EuroIntervention. 2012;8:823–9.CrossRef Prati F, Di Vito L, Biondi-Zoccai G, Occhipinti M, La Manna A, Tamburino C, et al. Angiography alone versus angiography plus optical coherence tomography to guide decision-making during percutaneous coronary intervention: the Centro per la Lotta contro l’Infarto-Optimisation of Percutaneous Coronary Intervention (CLI-OPCI) study. EuroIntervention. 2012;8:823–9.CrossRef
18.
go back to reference Jang JS, Song YJ, Kang W, Jin HY, Seo JS, Yang TH, et al. Intravascular ultrasound-guided implantation of drug-eluting stents to improve outcome: a meta-analysis. JACC Cardiovasc Interv. 2014;7:233–43.CrossRef Jang JS, Song YJ, Kang W, Jin HY, Seo JS, Yang TH, et al. Intravascular ultrasound-guided implantation of drug-eluting stents to improve outcome: a meta-analysis. JACC Cardiovasc Interv. 2014;7:233–43.CrossRef
19.
go back to reference Shin DH, Hong SJ, Mintz GS, Kim JS, Kim BK, Ko YG, et al. Effects of intravascular ultrasound-guided versus angiography-guided new-generation drug-eluting stent implantation: meta-analysis with individual patient-level data from 2,345 randomized patients. JACC Cardiovasc Interv. 2016;9:2232–9.CrossRef Shin DH, Hong SJ, Mintz GS, Kim JS, Kim BK, Ko YG, et al. Effects of intravascular ultrasound-guided versus angiography-guided new-generation drug-eluting stent implantation: meta-analysis with individual patient-level data from 2,345 randomized patients. JACC Cardiovasc Interv. 2016;9:2232–9.CrossRef
20.
go back to reference Ali ZA, Brinton TJ, Hill JM, Maehara A, Matsumura M, Karimi Galougahi K, et al. Optical coherence tomography characterization of coronary lithoplasty for treatment of calcified lesions: first description. JACC Cardiovasc Imaging. 2017;10:897–906.CrossRef Ali ZA, Brinton TJ, Hill JM, Maehara A, Matsumura M, Karimi Galougahi K, et al. Optical coherence tomography characterization of coronary lithoplasty for treatment of calcified lesions: first description. JACC Cardiovasc Imaging. 2017;10:897–906.CrossRef
Metadata
Title
Expert consensus statement for quantitative measurement and morphological assessment of optical coherence tomography: update 2022
Authors
Kenichi Fujii
Takashi Kubo
Hiromasa Otake
Gaku Nakazawa
Shinjo Sonoda
Kiyoshi Hibi
Toshiro Shinke
Yoshio Kobayashi
Yuji Ikari
Takashi Akasaka
Publication date
01-04-2022
Publisher
Springer Singapore
Published in
Cardiovascular Intervention and Therapeutics / Issue 2/2022
Print ISSN: 1868-4300
Electronic ISSN: 1868-4297
DOI
https://doi.org/10.1007/s12928-022-00845-3

Other articles of this Issue 2/2022

Cardiovascular Intervention and Therapeutics 2/2022 Go to the issue