Journal of Innovative Optical Health Sciences, Volume. 17, Issue 5, 2450010(2024)

Glaucoma surgery experiments using digital microscope-integrated optical coherence tomography and OCT-compatible instruments

Tianliang Jiang1...1,2,2,">">, Jinyu Fan2,2,">, Ning Tang1,1,2,2,">">, Yi He2,2,">, and Guohua Shi1,12,">* |Show fewer author(s)
Author Affiliations
  • 1School of Biomedical Engineering (Suzhou), Division of Life Sciences and Medicine University of Science and Technology of China, Hefei 230026, P. R. China
  • 2Jiangsu Key Laboratory of Medical Optics, Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Science, Suzhou 215163, P. R. China
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    References(24)

    [1] D. Gupta, P. P. Chen. Glaucoma. Am. Family Phys., 93, 668(2016).

    [2] J. E. Cairns. Trabeculectomy. Preliminary report of a new method. Am. J. Ophthalmol., 66, 673-679(1968).

    [3] J. Cairns. A surgical method of reducing intraocular pressure in chronic simple glaucoma without subcon-junctival drainage of aqueous humour. Trans Ophthalmol Soc UK, 88, 231-233(1969).

    [4] A. C. Castelbuono, W. R. Green. Histopathologic features of trabeculectomy surgery. Trans. Am. Ophthalmol. Soc., 101, 119-124(2003).

    [5] R. Lim. The surgical management of glaucoma: A review. Clin. Exp. Ophthalmol., 50, 213-231(2022).

    [6] B. A. Francis et al. Novel glaucoma procedures: A report by the American academy of ophthalmology. Ophthalmology, 118, 1466-1480(2011).

    [7] R. A. Lewis et al. Canaloplasty: Circumferential viscodilation and tensioning of Schlemm’s canal using a flexible microcatheter for the treatment of open-angle glaucoma in adults: Interim clinical study analysis. J. Cataract. Refract. Surg., 33, 1217-1226(2007).

    [8] C. Carlo et al. Canaloplasty: Current value in the management of glaucoma. J. Ophthalmol., 2016, 1-6(2016).

    [9] I. Riva et al. Canaloplasty in the treatment of open-angle glaucoma: A review of patient selection and outcomes. Adv. Ther., 36, 31-43(2019).

    [10] F. James, S. Eric. The development, commercialization, and impact of optical coherence tomography. Investig. Opthalmol. Vis. Sci., 57(2016).

    [11] E. Lankenau et al. Advances in Medical Engineering, 343-348.

    [12] Y. K. Tao, J. P. Ehlers, C. A. Toth, J. A. Izatt. Intraoperative spectral domain optical coherence tomography for vitreoretinal surgery. Opt. Lett., 35, 3315-3317(2010).

    [13] J. P. Ehlers et al. Integrative advances for OCT-guided ophthalmic surgery and intraoperative OCT: Microscope integration, surgical instrumentation, and heads-up display surgeon feedback. PLoS One, 9, e105224(2014).

    [14] C. Posarelli, F. Sartini, G. Casini, A. Passani, M. Figus. What is the impact of intraoperative microscope-integrated OCT in ophthalmic surgery? Relevant applications and outcomes. A systematic review. J. Clin. Med., 9, 1682(2020).

    [15] S. Siebelmann et al. Advantages of microscope-integrated intraoperative online optical coherence tomography: Usage in Boston keratoprosthesis type I surgery. J. Biomed. Opt., 21, 016005-016005(2016).

    [16] J. P. Ehlers, P. K. Kaiser, S. K. Srivastava. Intraoperative optical coherence tomography using the RESCAN 700: Preliminary results from the DISCOVER study. Br. J. Ophthalmol., 98, 1329-1332(2014).

    [17] Y. K. Tao, S. K. Srivastava, J. P. Ehlers. Microscope-integrated intraoperative OCT with electrically tunable focus and heads-up display for imaging of ophthalmic surgical maneuvers. Biomed. Opt. Express, 5, 1877-1885(2014).

    [18] O. M. Carrasco-Zevallos et al. Review of intraoperative optical coherence tomography: Technology and applications [Invited]. Biomed. Opt. Express, 8, 1607-1637(2017).

    [19] J. P. Ehlers et al. Integration of a spectral domain optical coherence tomography system into a surgical microscope for intraoperative imaging. Investig. Ophthalmol. Vis. Sci., 52, 3153-3159(2011).

    [20] L. Shen et al. Novel microscope-integrated stereoscopic heads-up display for intrasurgical optical coherence tomography. Biomed. Opt. Express, 7, 1711-1726(2016).

    [21] R. S. Kumar et al. A pilot study on feasibility and effectiveness of intraoperative spectral-domain optical coherence tomography in glaucoma procedures. Transl. Vis. Sci. Technol., 4, 2(2015).

    [22] R. M. Palácios et al. An experimental and clinical study on the initial experiences of Brazilian vitreoretinal surgeons with heads-up surgery. Graefe’s Arch. Clin. Exp. Ophthalmol., 257, 473-483(2019).

    [23] C. Eckardt, E. B. Paulo. Heads-up surgery for vitreoretinal procedures: An experimental and clinical study. Retina, 36, 137-147(2016).

    [24] R. J. Weinstock, V. F. Diakonis, A. J. Schwartz, A. J. Weinstock. Heads-up cataract surgery: Complication rates, surgical duration, and comparison with traditional microscopes. J. Refract. Surg., 35, 318-322(2019).

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    Tianliang Jiang, Jinyu Fan, Ning Tang, Yi He, Guohua Shi. Glaucoma surgery experiments using digital microscope-integrated optical coherence tomography and OCT-compatible instruments[J]. Journal of Innovative Optical Health Sciences, 2024, 17(5): 2450010

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    Paper Information

    Category: Research Articles

    Received: Nov. 1, 2023

    Accepted: Mar. 13, 2024

    Published Online: Aug. 8, 2024

    The Author Email: Shi Guohua (ghshi_lab@sibet.ac.cn)

    DOI:10.1142/S179354582450010X

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