Automated analysis of fibrous cap in intravascular optical coherence tomography images of coronary arteries

被引:7
|
作者
Lee, Juhwan [1 ]
Pereira, Gabriel T. R. [2 ]
Gharaibeh, Yazan [3 ]
Kolluru, Chaitanya [1 ]
Zimin, Vladislav N. [2 ]
Dallan, Luis A. P. [2 ]
Kim, Justin N. [1 ]
Hoori, Ammar [1 ]
Al-Kindi, Sadeer G. [2 ]
Guagliumi, Giulio [4 ]
Bezerra, Hiram G. [5 ]
Wilson, David L. [1 ,6 ]
机构
[1] Case Western Reserve Univ, Dept Biomed Engn, Cleveland, OH 44106 USA
[2] Univ Hosp Cleveland Med Ctr, Harrington Heart & Vasc Inst, Cleveland, OH 44106 USA
[3] Hashemite Univ, Dept Biomed Engn, Zarqa 13133, Jordan
[4] Galeazzi San Ambrogio Hosp, Cardiovasc Dept, Milan, Italy
[5] Univ S Florida, Intervent Cardiol Ctr, Heart & Vasc Inst, Tampa, FL 33606 USA
[6] Case Western Reserve Univ, Dept Radiol, Cleveland, OH 44106 USA
来源
SCIENTIFIC REPORTS | 2022年 / 12卷 / 01期
关键词
PLAQUE CHARACTERIZATION; CT ANGIOGRAPHY; OCT; MORPHOLOGY; IDENTIFICATION; INFLAMMATION;
D O I
10.1038/s41598-022-24884-1
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Thin-cap fibroatheroma (TCFA) and plaque rupture have been recognized as the most frequent risk factor for thrombosis and acute coronary syndrome. Intravascular optical coherence tomography (IVOCT) can identify TCFA and assess cap thickness, which provides an opportunity to assess plaque vulnerability. We developed an automated method that can detect lipidous plaque and assess fibrous cap thickness in IVOCT images. This study analyzed a total of 4360 IVOCT image frames of 77 lesions among 41 patients. Expert cardiologists manually labeled lipidous plaque based on established criteria. To improve segmentation performance, preprocessing included lumen segmentation, pixel-shifting, and noise filtering on the raw polar (r, theta) IVOCT images. We used the DeepLab-v3 plus deep learning model to classify lipidous plaque pixels. After lipid detection, we automatically detected the outer border of the fibrous cap using a special dynamic programming algorithm and assessed the cap thickness. Our method provided excellent discriminability of lipid plaque with a sensitivity of 85.8% and A-line Dice coefficient of 0.837. By comparing lipid angle measurements between two analysts following editing of our automated software, we found good agreement by Bland-Altman analysis (difference 6.7 degrees +/- 17 degrees; mean similar to 196 degrees). Our method accurately detected the fibrous cap from the detected lipid plaque. Automated analysis required a significant modification for only 5.5% frames. Furthermore, our method showed a good agreement of fibrous cap thickness between two analysts with Bland-Altman analysis (4.2 +/- 14.6 mu m; mean similar to 175 mu m), indicating little bias between users and good reproducibility of the measurement. We developed a fully automated method for fibrous cap quantification in IVOCT images, resulting in good agreement with determinations by analysts. The method has great potential to enable highly automated, repeatable, and comprehensive evaluations of TCFAs.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] Vascular deformation analysis based on in vivo intravascular optical coherence tomography imaging
    Huang J.
    Sun C.
    MCB Molecular and Cellular Biomechanics, 2019, 16 : 67 - 68
  • [42] Comparative Appraisal of Intravascular Ultrasound and Optical Coherence Tomography in Invasive Coronary Imaging: 2022 Update
    Barus, Piotr
    Modrzewski, Jakub
    Gumiezna, Karolina
    Dunaj, Piotr
    Glod, Marcin
    Bednarek, Adrian
    Wanha, Wojciech
    Roleder, Tomasz
    Kochman, Janusz
    Tomaniak, Mariusz
    JOURNAL OF CLINICAL MEDICINE, 2022, 11 (14)
  • [43] Elevated Levels of Systemic Pentraxin 3 Are Associated With Thin-Cap Fibroatheroma in Coronary Culprit Lesions Assessment by Optical Coherence Tomography and Intravascular Ultrasound
    Koga, Seiji
    Ikeda, Satoshi
    Yoshida, Takeo
    Nakata, Tomoo
    Takeno, Masayoshi
    Masuda, Nobuhito
    Koide, Yuji
    Kawano, Hiroaki
    Maemura, Koji
    JACC-CARDIOVASCULAR INTERVENTIONS, 2013, 6 (09) : 945 - 954
  • [44] Tools & Techniques: Intravascular ultrasound and optical coherence tomography
    Chan, Pak Hei
    Alegria-Barrero, Eduardo
    Di Mario, Carlo
    EUROINTERVENTION, 2012, 7 (11) : 1343 - 1349
  • [45] Trends and impact of intravascular ultrasound and optical coherence tomography on percutaneous coronary intervention for myocardial infarction
    Park, Dae Yong
    Vemmou, Evangelia
    An, Seokyung
    Nikolakopoulos, Ilias
    Regan, Christopher J.
    Cambi, Brian C.
    Frampton, Jennifer
    Vij, Aviral
    Brilakis, Emmanouil
    Nanna, Michael G.
    IJC HEART & VASCULATURE, 2023, 45
  • [46] Diagnosis of Thin-Capped Fibroatheromas in Intravascular Optical Coherence Tomography Images Effects of Light Scattering
    Phipps, Jennifer E.
    Hoyt, Taylor
    Vela, Deborah
    Wang, Tianyi
    Michalek, Joel E.
    Buja, L. Maximilian
    Jang, Ik-Kyung
    Milner, Thomas E.
    Feldman, Marc D.
    CIRCULATION-CARDIOVASCULAR INTERVENTIONS, 2016, 9 (07)
  • [47] Diagnosis of Thin-capped Fibroatheromas in Intravascular Optical Coherence Tomography Images: Effects of Light Scattering
    Hoyt, Taylor
    Phipps, Jennifer
    Vela, Deborah
    Wang, Tianyi
    Buja, Maximillian
    Jang, Ik-Kyung
    Milner, Thomas
    Feldman, Marc
    CIRCULATION, 2015, 132
  • [48] Combined optical coherence tomography and intravascular ultrasound radio frequency data analysis for plaque characterization. Classification accuracy of human coronary plaques in vitro
    Goderie, T. P. M.
    van Soest, G.
    Garcia-Garcia, H. M.
    Gonzalo, N.
    Koljenovic, S.
    van Leenders, G. J. L. H.
    Mastik, F.
    Regar, E.
    Oosterhuis, J. W.
    Serruys, P. W.
    van der Steen, A. F. W.
    INTERNATIONAL JOURNAL OF CARDIOVASCULAR IMAGING, 2010, 26 (08) : 843 - 850
  • [49] Optical coherence tomography of the pulmonary arteries: A systematic review
    Jorge, Elisabete
    Baptista, Rui
    Calisto, Joao
    Faria, Henrique
    Monteiro, Pedro
    Pan, Manuel
    Pego, Mariano
    JOURNAL OF CARDIOLOGY, 2016, 67 (1-2) : 6 - 14
  • [50] Identification of atherosclerotic plaques in intravascular optical coherence tomography images based on textures and artificial neural network
    Bian, Dongyao
    Tao, Kuiyuan
    Yuan, Zhuoqun
    Kuang, Hao
    Liu, Zixu
    Liang, Yanmei
    LASER PHYSICS, 2020, 30 (03)