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請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/81748
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dc.contributor.advisor周呈霙(Cheng-Ying Chou)
dc.contributor.authorChien-Han Tsouen
dc.contributor.author鄒建瀚zh_TW
dc.date.accessioned2022-11-24T09:26:41Z-
dc.date.available2022-11-24T09:26:41Z-
dc.date.copyright2021-11-03
dc.date.issued2021
dc.date.submitted2021-10-27
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ICPR2000, volume 4, pages 563–566. IEEE. Cardenes, R., Novikov, A., Gunn, J., Hose, R., and Frangi, A. F. (2012). 3d reconstruction of coronary arteries from rotational x-ray angiography. In 2012 9th IEEE International Symposium on Biomedical Imaging (ISBI), pages 618–621. IEEE. Chen, S. J. and Carroll, J. D. (2000). 3-d reconstruction of coronary arterial tree to optimize angiographic visualization. IEEE Transactions on Medical Imaging, 19(4):318–336. Çimen, S., Gooya, A., Grass, M., and Frangi, A. F. (2016). Reconstruction of coronary arteries from x-ray angiography: A review. Medical Image Analysis, 32:46–68. Cohen, L. D. and Cohen, I. (1993). Finite-element methods for active contour models and balloons for 2-d and 3-d images. IEEE Transactions on Pattern Analysis and Machine Intelligence, 15(11):1131–1147. Cong, W., Yang, J., Ai, D., Chen, Y., Liu, Y., and Wang, Y. (2016). Quantitative analysis of deformable model-based 3-d reconstruction of coronary artery from multiple angiograms. IEEE Transactions on Biomedical Engineering, 63(7):1389–1400. Dodge Jr, J. T., Brown, B. G., Bolson, E. L., and Dodge, H. T. (1992). Lumen diameter of normal human coronary arteries. Influence of age, sex, anatomic variation, and left ventricular hypertrophy or dilation. Circulation, 86(1):232–246. Fallavollita, P. and Cheriet, F. (2008). Optimal 3d reconstruction of coronary arteries for 3d clinical assessment. Computerized Medical Imaging and Graphics, 32(6):476–487. Frangi, A. F., Niessen, W. J., Vincken, K. L., and Viergever, M. A. (1998). Multiscale vessel enhancement filtering. In International Conference on Medical Image Computing and Computer Assisted Intervention, pages 130–137. Springer. Green, N. E., Chen, S.Y. J., Messenger, J. C., Groves, B. M., and Carroll, J. D. (2004). Three-dimensional vascular angiography. Current Problems in Cardiology, 29(3):104–142. 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Angioplasty: Types, procedure, risks, and recovery. https://www.medicalnewstoday.com/articles/327154. Leopold, J. A. and Faxon, D. P. (2018). Diagnostic Cardiac Catheterization and Coronary Angiography. McGrawHill Education, New York, NY. Li, Q., Shui, H., Hu, X., Liu, Y., and Wang, Y. (2009). How to Reconstruct 3D Coronary Arterial Tree from Two Arbitrary Views. In 2009 3rd International Conference on Bioinformatics and Biomedical Engineering, pages 1–4. Liao, R., Luc, D., Sun, Y., and Kirchberg, K. (2010). 3-d reconstruction of the coronary artery tree from multiple views of a rotational x-ray angiography. The International Journal of Cardiovascular Imaging, 26(7):733–749. Lim, M. J. and White, C. J. (2013). Coronary angiography is the gold standard for patients with significant left ventricular dysfunction. Progress in Cardiovascular Diseases, 55(5):504–508. Left-Ventricular Dysfunction. Mark, D. B., Berman, D. S., Budoff, M. J., Carr, J. J., Gerber, T. C., Hecht, H. S., Hlatky, M. A., Hodgson, J. M., Lauer, M. S., Miller, J. M., et al. (2010). Accf/acr/aha/nasci/saip/scai/scct 2010 expert consensus document on coronary computed tomographic angiography: a report of the american college of cardiology foundation task force on expert consensus documents. Journal of the American College of Cardiology, 55(23):2663–2699. Mehra, A. and Mohan, B. (2015). Value of ffr in clinical practice. Indian Heart Journal, 67(1):77–80. Metz, C. T., Schaap, M., Klein, S., Baka, N., Neefjes, L. A., Schultz, C. J., Niessen, W. J., and Van Walsum, T. (2013). Registration of 3d + t coronary cta and monoplane 2d + t x-ray angiography. IEEE Transactions on Medical Imaging, 32(5):919–931. Mourgues, F., Devernay, F., Malandain, G., and Coste-Maniere, E. (2001a). 3d+t modeling of coronary artery tree from standard non simultaneous angiograms. In International Conference on Medical Image Computing and Computer-Assisted Intervention, pages 1320–1322. Springer. Mourgues, F., Devernay, F., Malandain, G., and Coste-Manière, È. (2001b). 3d+t modeling of coronary artery tree from standard non simultaneous angiograms. In Niessen, W. J. and Viergever, M. A., editors, Medical Image Computing and Computer-Assisted Intervention – MICCAI 2001, pages 1320–1322, Berlin, Heidelberg. Springer Berlin Heidelberg. Myronenko, A. and Song, X. (2010). Point set registration: Coherent point drift. IEEE transactions on pattern analysis and machine intelligence, 32(12):2262–2275. Navab, N., Heining, S.M.,and Traub, J. (2009). Camera augmented mobile c-arm (camc): calibration, accuracy study, and clinical applications. IEEE Transactions on Medical Imaging, 29(7):1412–1423. Piegl, L. and Tiller, W. (1996). The NURBS book. Springer Science Business Media. Sakoe, H. and Chiba, S. (1978). Dynamic programming algorithm optimization for spoken word recognition. IEEE Transactions on Acoustics, Speech, and Signal Processing, 26(1):43–49. WHO (2021). Cardiovascular diseases (CVDs). https://www.who.int/news-room/fact-sheets/detail/cardiovascular-diseases-(cvds). Xu, C. and Prince, J. L. (1998). Generalized gradient vector flow external forces for active contours. Signal Processing, 71(2):131–139. Xu, G. and Zhang, Z. (2013). Epipolar geometry in stereo, motion and object recognition: a unified approach, volume 6. Springer Science Business Media. Yang, J., Cong, W., Chen, Y., Fan, J., Liu, Y., and Wang, Y. (2014). External force back-projective composition and globally deformable optimization for 3-d coronary artery reconstruction. Physics in Medicine Biology, 59(4):975. Yang, J., Wang, Y., Liu, Y., Tang, S., and Chen, W. (2009). Novel approach for 3-d reconstruction of coronary arteries from two uncalibrated angiographic images. IEEE Transactions on Image Processing, 18(7):1563–1572. 衛生福利部(2021). 109 年國人死因統計結果. https://www.mohw.gov.tw/cp-5017-61533-1.html.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/81748-
dc.description.abstract"冠狀動脈疾病是最常見的心血管疾病,並且為全球最致命的疾病。而心導管檢查是最有效的冠狀動脈疾病檢查手段,冠狀動脈造影 (coronary angiography image, CAG)影像以及血流儲備分數(fractional flow reserve, FFR)會在檢查中取得。本研究應用影像三維重建演算法,利用多個冠狀動脈造影影像重建出三維冠狀動脈結構。並與電腦斷層冠狀動脈血管攝影(coronary computed tomography angiography, CCTA)中的血管結構做對位,結合兩影像診斷工具之優勢,電腦斷層冠狀動脈血管攝影可以提供斑塊的資訊,而冠狀動脈造影擁有更準確的管徑資訊,兩影像融合的結果可以提供診斷上更多的參考依據。計算流體力學(Computational fluid dynamics, CFD)方法將用於模擬動脈內的壓力分佈,作為判斷心肌缺血可能性的依據。兩種不同的血液質量流率估算方法將於本研究中應用,模擬出的結果可作為判斷冠狀動脈疾病之依據。其中方法一從冠狀動脈造影影像中提取出血液流速資訊,因不需要電腦斷層冠狀動脈血管攝影資訊,使其應用上的限制更少,而方法二從電腦斷層冠狀動脈血管攝影影像中提取出心肌大小資訊,擁有更好的分類準確率。透過上的述重建演算法,所得到的結果可應用於多個面相,藉以輔助冠狀動脈疾病檢查。"zh_TW
dc.description.provenanceMade available in DSpace on 2022-11-24T09:26:41Z (GMT). No. of bitstreams: 1
U0001-2510202110532000.pdf: 11972045 bytes, checksum: 7c737049e227eb616be95e642f4dfc6f (MD5)
Previous issue date: 2021
en
dc.description.tableofcontentsVerification Letter from the Oral Examination Committee i Acknowledgements ii 摘要 iii Abstract iv Contents vi List of Figures viii List of Tables x Chapter 1 Introduction 1 1.1 Coronary artery disease 1 1.2 Diagnosis and treatment 1 1.3 Objective 2 Chapter 2 Literature Review 4 2.1 Image acquisition geometry 5 2.2 Deal with cardiac motion 6 2.3 Model-based reconstruction 7 2.3.1 Forward-projection-based methods 8 2.3.2 Back-projection-based methods 10 2.4 Lumen reconstruction 11 Chapter 3 Materials and Methods 12 3.1 Materials 12 3.1.1 Study population 12 3.1.2 Coronary angiography (CAG) 13 3.1.3 Coronary computed tomography angiography (CCTA) 14 3.1.4 ANSYS Fluent system 16 3.2 Methods 16 3.2.1 Coronary angiography preprocessing 18 3.2.2 Coronary angiography lumen labeling 25 3.2.3 Coronary artery Lumen reconstruction 27 3.2.4 Registration of 3D CAG and 3D CCTA coronary artery 37 3.2.5 Fractional flow reserve simulation 39 Chapter 4 Results and Discussion 43 4.1 Comparison with CAG 44 4.2 Comparison with CCTA 52 4.3 Comparison between FFR values 57 4.4 Discussion 59 Chapter 5 Conclusions 61 References 63
dc.language.isoen
dc.subject冠狀動脈導管檢查zh_TW
dc.subject血流儲備分數zh_TW
dc.subject三維重建zh_TW
dc.subjectFractional flow reserveen
dc.subjectThree ­dimensional reconstructionen
dc.subjectCoronary Angiographyen
dc.title心導管影像之三維重建與計算流體力學之應用zh_TW
dc.titleThree ­Dimensional Lumen Reconstruction and Computational Fluid Dynamics Application of Coronary Angiographyen
dc.date.schoolyear109-2
dc.description.degree碩士
dc.contributor.oralexamcommittee王偉仲(Hsin-Tsai Liu),傅楸善(Chih-Yang Tseng),黃裕城
dc.subject.keyword冠狀動脈導管檢查,三維重建,血流儲備分數,zh_TW
dc.subject.keywordCoronary Angiography,Three ­dimensional reconstruction,Fractional flow reserve,en
dc.relation.page68
dc.identifier.doi10.6342/NTU202104120
dc.rights.note未授權
dc.date.accepted2021-10-28
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept生物機電工程學系zh_TW
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