• Journal of Innovative Optical Health Sciences
  • Vol. 14, Issue 1, 2140004 (2021)
Jiwei Tao, Huan Chen, Jiafeng Yu, Dan Cheng, Yiqi Chen, Jianbo Mao, Jia Fang, and Lijun Shen*
Author Affiliations
  • Department of Retina Center Affiliated Eye Hospital of Wenzhou Medical University Hangzhou, Zhejiang Province, P. R. China
  • show less
    DOI: 10.1142/s1793545821400046 Cite this Article
    Jiwei Tao, Huan Chen, Jiafeng Yu, Dan Cheng, Yiqi Chen, Jianbo Mao, Jia Fang, Lijun Shen. Feasibility and utility of intraoperative optical coherence tomography during vitreoretinal surgery: A 4-year report in Chinese population[J]. Journal of Innovative Optical Health Sciences, 2021, 14(1): 2140004 Copy Citation Text show less
    References

    [1] J. P. Ehlers, S. Modi Yasha, E. Pecen Paula et al., "The DISCOVER study 3-year results: Feasibility and usefulness of microscope-integrated intraoperative OCT during ophthalmic surgery," Ophthalmology 125(7), 1014–1027 (2018).

    [2] J. W. Tao, M. Q. Chu, Q. H. Wang, Y. Q. Chen, S. X. Zhao, J. J. Lin, L. J. Shen, "Intraoperative optical coherence tomography during vitreoretinal surgery for dense vitreous hemorrhage," Chin. J. Optom. Ophthalmol. Vis. Sci. 019(11), 686–690 (2017).

    [3] Q. H. Wang, J. W. Tao, L. J. Shen, "Application of intraoperative optical coherence tomography in vitrectomy," Chin. J. Ocul. Fundus Dis. 31(5), 498–500 (2015).

    [4] D. Huang, E. A. Swanson, C. P. Lin et al., "Optical coherence tomography," Science 254(5035), 1178– 1181 (1991).

    [5] P. N. Dayani, R. Maldonado, S. Farsiu et al., "Intraoperative use of handheld spectral domain optical coherence tomography imaging in macular surgery," Retina 29(10), 1457–1468 (2009).

    [6] Y. K. Tao, J. P. Ehlers, C. A. Toth et al., "Intraoperative spectral domain optical coherence tomography for vitreoretinal surgery," Opt. Lett. 35(20), 3315–3317 (2010).

    [7] J. P. Ehlers, Y. K. Tao, S. Farsiu et al., "Visualization of real-time intraoperative maneuvers with a microscope-mounted spectral domain optical coherence tomography system," Retina 33(1), 232–236 (2013).

    [8] P. Hahn, J. Migacz, R. O'Donnell et al., "Preclinical evaluation and intraoperative human retinal imaging with a high-resolution microscope-integrated spectral domain optical coherence tomography device," Retina 33(7), 1328–1337 (2013).

    [9] S. Binder, C. I. Falkner-Radler, C. Hauger et al., "Feasibility of intrasurgical spectral-domain optical coherence tomography," Retina 31(7), 1332–1336 (2011).

    [10] C. C. Wyko?, A. M. Berrocal, A. C. Schefler et al., "Intraoperative OCT of a full-thickness macular hole before and after internal limiting membrane peeling," Ophthalmic Surg. Lasers Imag. 41(1), 7–11 (2010).

    [11] C. I. Falkner-Radler, C. Glittenberg, M. Gabriel et al., "Intrasurgical microscope-integrated spectral domain optical coherence tomography-assisted membrane peeling," Retina 35(10), 2100–2106 (2015).

    [12] M. Mura, D. Iannetta, F. Nasini et al., "Use of a new intra-ocular spectral domain optical coherence tomography in vitreoretinal surgery," Acta Ophthalmol. 94(3), 246–252 (2016).

    [13] M. Pfau, S. Michels, S. Binder et al., "Clinical experience with the first commercially available intraoperative optical coherence tomography system," Ophthalmic Surg. Lasers Imaging Retina 46(10), 1001–1008 (2015).

    [14] J. T. Holladay, "Proper method for calculating average visual acuity," J. Refractive Surg. 13(4), 388–391 (1997).

    [15] F. Pichi, M. A1kabes, P. Nucci et al., "Intraoperative SD-OCT in macular surgery," Ophthalmic Surg. Lasers Imaging 43(6), S54–S60 (2012).

    [16] A. Hayashi, T. Yagou, T. Nakamura et al., "Intraoperative changes in idiopathic macular holes by spectral-domain optical coherence tomography," Case Rep. Ophthalmol. 2(2), 149–154 (2011).

    [17] J. P. Ehlers, "Intraoperative optical coherence tomography: Past, present, and future," Eye (Lond) 30(2), 193–201 (2016).

    [18] V. Kumar, B. Yadav, "HOLE-DOOR SIGN: A novel intraoperative optical coherence tomography feature predicting macular hole closure," Retina 38(10), 2045–2050 (2017).

    [19] J. Tao, H. Chen, L. Zhu, D. Pan, J. Fang, Y. Chen, J. Mao, L. Shen, "Macular hole edge morphology predicts restoration of postoperative retinal microstructure and functional outcome," BMC Ophthalmol. 20(1), 280 (2020).

    [20] J. P. Ehlers, J. Han, D. Petkovsek et al., "Membrane peeling-induced retinal alterations on intraoperative OCT in vitreomacular interface disorders from the PIONEER study," Invest Ophthalmol. Vis. Sci. 56 (12), 7324–7330 (2015).

    [21] A. G. Smith, B. M. Cost, J. P. Ehlers, "Intraoperative OCT-assisted subretinal perfluorocarbon liquid removal in the DISCOVER study," Ophthalmic Surg. Lasers Imaging Retina 46(9), 964 (2015).

    Jiwei Tao, Huan Chen, Jiafeng Yu, Dan Cheng, Yiqi Chen, Jianbo Mao, Jia Fang, Lijun Shen. Feasibility and utility of intraoperative optical coherence tomography during vitreoretinal surgery: A 4-year report in Chinese population[J]. Journal of Innovative Optical Health Sciences, 2021, 14(1): 2140004
    Download Citation