Tomography, Optical Coherence

Displaying 1 - 33 of 33CSV
Sato, T., Matsumura, M., Yamamoto, K., Sugizaki, Y., Shlofmitz, E., Moses, J. W., Khalique, O. K., Thomas, S. V., Malik, S., Dakroub, A., Singh, M., Shin, D., Cohen, D. J., Mintz, G. S., Shlofmitz, R. A., Jeremias, A., Ali, Z. A., & Maehara, A. (2025). A Revised Optical Coherence Tomography–Derived Calcium Score to Predict Stent Underexpansion in Severely Calcified Lesions. JACC: Cardiovascular Interventions, 18(5), 622–633. https://doi.org/10.1016/j.jcin.2024.12.001
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Hansen, K. N., Trøan, J., Maehara, A., Noori, M., Hougaard, M., Ellert-Gregersen, J., Veien, K. T., Junker, A., Hansen, H. S., Lassen, J. F., & Jensen, L. O. (2025). Optimal Predilatation Treatment Before Implantation of a Magmaris Bioresorbable Scaffold in Coronary Artery Stenosis: The OPTIMIS Trial. Circulation: Cardiovascular Interventions, 18(1). https://doi.org/10.1161/circinterventions.124.014665
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Kim, D., Fang, R., Zhang, P., Yan, Z., Sun, C., Li, G., Montgomery, C., John, S. W. M., Stamer, W. D., Zhang, H. F., & Ethier, C. R. (2025). In Vivo Quantification of Anterior and Posterior Chamber Volumes in Mice: Implications for Aqueous Humor Dynamics. Investigative Ophthalmology & Visual Science, 66(1), 18. https://doi.org/10.1167/iovs.66.1.18
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Hood, D. C., La Bruna, S., Durbin, M., Lee, C., Guzman, A., Gebhardt, T., Wang, Y., Stowman, A. L., De Moraes, C. G., Chaglasian, M., & Tsamis, E. (2024). A Pattern-Based OCT Metric for Glaucoma Detection. Translational Vision Science & Technology, 13(12), 21. https://doi.org/10.1167/tvst.13.12.21
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Sugizaki, Y., Matsumura, M., Chen, Y., Tsukui, T., Shlofmitz, E., Thomas, S. V., Malik, S., Dakroub, A., Singh, M., Shin, D., Granville, M. J., Busch, J. M., Wolff, E. H., Miraglia, G. M., Moses, J. W., Khalique, O. K., Cohen, D. J., Mintz, G. S., Shlofmitz, R. A., Jeremias, A., … Maehara, A. (2024). Natural history of a newly developed calcified nodule: incidence, predictors, and clinical outcomes. EuroIntervention : journal of EuroPCR in collaboration with the Working Group on Interventional Cardiology of the European Society of Cardiology, 20(21), e1330–e1339. https://doi.org/10.4244/EIJ-D-24-00362

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Tian, Y., Sharma, A., Mehta, S., Kaushal, S., Liebmann, J. M., Cioffi, G. A., & Thakoor, K. A. (2024). Automated Identification of Clinically Relevant Regions in Glaucoma OCT Reports Using Expert Eye Tracking Data and Deep Learning. Translational Vision Science & Technology, 13(10), 24. https://doi.org/10.1167/tvst.13.10.24
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Hood, D. C., Durbin, M., La Bruna, S., Lee, C., Hsiao, Y. S., El-Nimri, N. W., De Moraes, C. G., & Tsamis, E. (2024). Characteristics of a Large Database of Healthy Eyes From Optometry Practices: Implications for a Real-World Reference Database. Translational Vision Science & Technology, 13(10), 8. https://doi.org/10.1167/tvst.13.10.8
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Maehara, A., Sanz-Sánchez, J., & Garcia-Garcia, H. M. (2024). IVUS has more robust data than OCT for PCI guidance: PROS and CONS. EuroIntervention, 20(18), e1132–e1135. https://doi.org/10.4244/eij-e-24-00028
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Shi, M., Lokhande, A., Tian, Y., Luo, Y., Eslami, M., Kazeminasab, S., Elze, T., Shen, L. Q., Pasquale, L. R., Wellik, S. R., De Moraes, C. G., Myers, J. S., Zebardast, N., Friedman, D. S., Boland, M. V., & Wang, M. (2024). Transformer-Based Deep Learning Prediction of 10-Degree Humphrey Visual Field Tests From 24-Degree Data. Translational Vision Science & Technology, 13(8), 11. https://doi.org/10.1167/tvst.13.8.11
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Shin, D., Dakroub, A., Singh, M., Malik, S., Sakai, K., Maehara, A., Shlofmitz, E., Jeremias, A., Shlofmitz, R. A., & Ali, Z. A. (2024). Debulking Effect of Orbital Atherectomy for Calcified Nodule Assessed by Optical Coherence Tomography. Circulation: Cardiovascular Interventions. https://doi.org/10.1161/circinterventions.124.014145
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Galougahi, K. K., Shin, D., Dakroub, A., Sakai, K., Singh, M., Malik, S., Maehara, A., Matsumura, M., Mintz, G., Spratt, J. C., Khalique, O., Shlofmitz, E., Jeremias, A., Shlofmitz, R., & Ali, Z. A. (2024). Distinct Challenges of Eruptive and Non-Eruptive Calcified Nodules in Percutaneous Coronary Intervention. Current Cardiology Reports, 26(7), 757–765. https://doi.org/10.1007/s11886-024-02075-w
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Lee, Y.-S., Liu, L., Wang, N.-K., Chen, K.-J., Hwang, Y.-S., Lai, C.-C., & Wu, W.-C. (2024). LONGITUDINAL CHANGES IN CHOROIDAL THICKNESS IN CHILDREN WITH A HISTORY OF PREMATURITY. Retina, 44(6), 1063–1072. https://doi.org/10.1097/iae.0000000000004062
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Hood, D. C., La Bruna, S., Durbin, M., Lee, C., Hsiao, Y. S., De Moraes, C. G., & Tsamis, E. (2024). Anatomical Features can Affect OCT Measures Used for Clinical Decisions and Clinical Trial Endpoints. Translational Vision Science & Technology, 13(4), 27. https://doi.org/10.1167/tvst.13.4.27
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Sato, T., Matsumura, M., Yamamoto, K., Shlofmitz, E., Moses, J. W., Khalique, O. K., Shin, D., Dakroub, A., Singh, M., Malik, S., Tsoulios, A., Cohen, D. J., Mintz, G. S., Shlofmitz, R. A., Jeremias, A., Ali, Z. A., & Maehara, A. (2024). Prevalence and anatomical factors associated with stent under‐expansion in non‐severely calcified lesions. Catheterization and Cardiovascular Interventions, 103(6), 833–842. Portico. https://doi.org/10.1002/ccd.31035
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Mahmoudinezhad, G., Moghimi, S., Nishida, T., Walker, E., Latif, K., Liebmann, J. M., Fazio, M. A., Girkin, C. A., Zangwill, L., & Weinreb, R. N. (2024). Association of Long-Term Intraocular Pressure Variability and Rate of Ganglion Complex Thinning in Patients With Glaucoma. American Journal of Ophthalmology, 264, 104–119. https://doi.org/10.1016/j.ajo.2024.03.028
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Li, X., Liu, H., Song, X., Marboe, C. C., Brott, B. C., Litovsky, S. H., & Gan, Y. (2024). Structurally constrained and pathology-aware convolutional transformer generative adversarial network for virtual histology staining of human coronary optical coherence tomography images. Journal of Biomedical Optics, 29(03). https://doi.org/10.1117/1.jbo.29.3.036004
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Ramtohul, P., Sebrow, D., & Freund, K. B. (2024). Widefield multimodal imaging of presumed bilateral diffuse uveal melanocytic proliferation. Canadian Journal of Ophthalmology, 59(3), e269–e270. https://doi.org/10.1016/j.jcjo.2024.01.007
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Leshno, A., Tsamis, E., Harizman, N., De Moraes, C. G., La Bruna, S., Rai, A., Garg-Shukla, A., Cioffi, G. A., Wang, Q., Liebmann, J. M., & Hood, D. C. (2023). Improving glaucoma staging in clinical practice by combining the ICD-10 glaucoma severity classification system and optical coherence tomography. Eye, 38(1), 153–160. https://doi.org/10.1038/s41433-023-02650-5
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Leshno, A., De Moraes, C. G., Tsamis, E., La Bruna, S., Cioffi, G. A., Liebmann, J. M., & Hood, D. C. (2023). Glaucoma Detection Using Optical Coherence Tomography: Reviewing the Pitfalls of Comparison to Normative Data. Journal of Glaucoma, 33(2), 65–77. https://doi.org/10.1097/ijg.0000000000002337
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KhalafAllah, M. T., Zangwill, L. M., Proudfoot, J., Walker, E., Girkin, C. A., Fazio, M. A., Weinreb, R. N., Bowd, C., Moghimi, S., De Moraes, C. G., Liebmann, J. M., & Racette, L. (2024). Racial Differences in Diagnostic Accuracy of Retinal Nerve Fiber Layer Thickness in Primary Open-Angle Glaucoma. American Journal of Ophthalmology, 259, 7–14. https://doi.org/10.1016/j.ajo.2023.10.012
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Greenstein, V. C., Castillejos, D. S., Tsang, S. H., Lee, W., Sparrow, J. R., Allikmets, R., Birch, D. G., & Hood, D. C. (2023). Monitoring Lesion Area Progression in Stargardt Disease: A Comparison of En Face Optical Coherence Tomography and Fundus Autofluorescence. Translational Vision Science & Technology, 12(5), 2. https://doi.org/10.1167/tvst.12.5.2
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Frost, B. L., Strimbu, C. E., & Olson, E. S. (2023). Reconstruction of transverse-longitudinal vibrations in the organ of Corti complex via optical coherence tomography. The Journal of the Acoustical Society of America, 153(2), 1347–1360. https://doi.org/10.1121/10.0017345
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Thakoor, K. A., Yao, J., Bordbar, D., Moussa, O., Lin, W., Sajda, P., & Chen, R. W. S. (2022). A multimodal deep learning system to distinguish late stages of AMD and to compare expert vs. AI ocular biomarkers. Scientific Reports, 12(1). https://doi.org/10.1038/s41598-022-06273-w
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Melchior, B., De Moraes, C. G., Paula, J. S., Cioffi, G. A., Girkin, C. A., Fazio, M. A., Weinreb, R. N., Zangwill, L. M., & Liebmann, J. M. (2022). Frequency of Optical Coherence Tomography Testing to Detect Progression in Glaucoma. Journal of Glaucoma, 31(11), 854–859. https://doi.org/10.1097/ijg.0000000000002101
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Hood, D. C., La Bruna, S., Tsamis, E., Thakoor, K. A., Rai, A., Leshno, A., de Moraes, C. G. V., Cioffi, G. A., & Liebmann, J. M. (2022). Detecting glaucoma with only OCT: Implications for the clinic, research, screening, and AI development. Progress in Retinal and Eye Research, 90, 101052. https://doi.org/10.1016/j.preteyeres.2022.101052
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Zemborain, Z. Z., Tsamis, E., La Bruna, S., Leshno, A., De Moraes, C. G., Ritch, R., & Hood, D. C. (2022). Distinguishing Healthy From Glaucomatous Eyes With Optical Coherence Tomography Global Circumpapillary Retinal Nerve Fiber Thickness in the Bottom 5th Percentile. Journal of Glaucoma, 31(7), 529–539. https://doi.org/10.1097/ijg.0000000000002016
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La Bruna, S., Rai, A., Mao, G., Kerr, J., Amin, H., Zemborain, Z. Z., Leshno, A., Tsamis, E., De Moraes, C. G., & Hood, D. C. (2022). The OCT RNFL Probability Map and Artifacts Resembling Glaucomatous Damage. Translational Vision Science & Technology, 11(3), 18. https://doi.org/10.1167/tvst.11.3.18
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Frost, B. L., Strimbu, C. E., & Olson, E. S. (2022). Using volumetric optical coherence tomography to achieve spatially resolved organ of Corti vibration measurements. The Journal of the Acoustical Society of America, 151(2), 1115–1124. https://doi.org/10.1121/10.0009576
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Parmann, R., Tsang, S. H., Zernant, J., Allikmets, R., Greenstein, V. C., & Sparrow, J. R. (2022). Comparisons Among Optical Coherence Tomography and Fundus Autofluorescence Modalities as Measurements of Atrophy in ABCA4-Associated Disease. Translational Vision Science & Technology, 11(1), 36. https://doi.org/10.1167/tvst.11.1.36
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Bacci, T., Oh, D. J., Singer, M., Sadda, S., & Freund, K. B. (2022). Ultra-Widefield Indocyanine Green Angiography Reveals Patterns of Choroidal Venous Insufficiency Influencing Pachychoroid Disease. Investigative Opthalmology & Visual Science, 63(1), 17. https://doi.org/10.1167/iovs.63.1.17
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