Current Environment: Production

Tais Estrela | Medical Services

Programs & Services

Languages

  • English
  • Portuguese
  • Spanish

Tais Estrela | Education

Medical School

University of State of Rio de Janeiro

2011, Rio de Janeiro, Brazil

Residency

Ophthalmology

University of State of Rio de Janeiro

2015, Rio de Janeiro, Brazil

Fellowship

Glaucoma Research

Duke University - Duke Eye Center

2022, Durham, NC

Fellowship

Neuro-Ophthalmology

Massachusetts Eye and Ear

2023, Boston, MA

Fellowship

Pediatric Ophthalmology and Strabismus

Boston Children's Hospital

2024, Boston, MA

Tais Estrela | Publications

  1. Comparison of 10-2 and 24-2 Perimetry to Diagnose Glaucoma Using OCT as an Independent Reference Standard. Ophthalmol Glaucoma. 2023 Mar-Apr; 6(2):187-197. View Comparison of 10-2 and 24-2 Perimetry to Diagnose Glaucoma Using OCT as an Independent Reference Standard. Abstract

  2. Association of an Objective Structural and Functional Reference Standard for Glaucoma with Quality of Life Outcomes. Ophthalmol Glaucoma. 2023 Mar-Apr; 6(2):160-168. View Association of an Objective Structural and Functional Reference Standard for Glaucoma with Quality of Life Outcomes. Abstract

  3. The Relationship Between Asymmetries of Corneal Properties and Rates of Visual Field Progression in Glaucoma Patients. J Glaucoma. 2020 10; 29(10):872-877. View The Relationship Between Asymmetries of Corneal Properties and Rates of Visual Field Progression in Glaucoma Patients. Abstract

  4. Impact of Intraocular Pressure Control on Rates of Retinal Nerve Fiber Layer Loss in a Large Clinical Population. Ophthalmology. 2021 01; 128(1):48-57. View Impact of Intraocular Pressure Control on Rates of Retinal Nerve Fiber Layer Loss in a Large Clinical Population. Abstract

  5. Comparing the Rule of 5 to Trend-based Analysis for Detecting Glaucoma Progression on OCT. Ophthalmol Glaucoma. 2020 Nov - Dec; 3(6):414-420. View Comparing the Rule of 5 to Trend-based Analysis for Detecting Glaucoma Progression on OCT. Abstract

  6. Rates of Glaucomatous Structural and Functional Change From a Large Clinical Population: The Duke Glaucoma Registry Study. Am J Ophthalmol. 2021 02; 222:238-247. View Rates of Glaucomatous Structural and Functional Change From a Large Clinical Population: The Duke Glaucoma Registry Study. Abstract

  7. Quantification of Retinal Nerve Fibre Layer Thickness on Optical Coherence Tomography with a Deep Learning Segmentation-Free Approach. Sci Rep. 2020 01 15; 10(1):402. View Quantification of Retinal Nerve Fibre Layer Thickness on Optical Coherence Tomography with a Deep Learning Segmentation-Free Approach. Abstract

  8. Human Versus Machine: Comparing a Deep Learning Algorithm to Human Gradings for Detecting Glaucoma on Fundus Photographs. Am J Ophthalmol. 2020 03; 211:123-131. View Human Versus Machine: Comparing a Deep Learning Algorithm to Human Gradings for Detecting Glaucoma on Fundus Photographs. Abstract

  9. Comparison of Short- And Long-Term Variability in Standard Perimetry and Spectral Domain Optical Coherence Tomography in Glaucoma. Am J Ophthalmol. 2020 02; 210:19-25. View Comparison of Short- And Long-Term Variability in Standard Perimetry and Spectral Domain Optical Coherence Tomography in Glaucoma. Abstract

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