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Oculus

Girard MJA 42

Showing records 1 to 25 | Display all abstracts from Girard MJA

82225 Scleral structure and biomechanics
Boote C
Progress in Retinal and Eye Research 2020; 74: 100773
81723 Optic Nerve Tortuosity and Globe Proptosis in Normal and Glaucoma Subjects
Wang X
Journal of Glaucoma 2019; 28: 691-696
82134 Elucidation of the Strongest Factors Influencing Rapid Retinal Nerve Fiber Layer Thinning in Glaucoma
Lee EJ
Investigative Ophthalmology and Visual Science 2019; 60: 3343-3351
82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Fazio MA
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150
82592 Association of Corneal Hysteresis With Lamina Cribrosa Curvature in Primary Open Angle Glaucoma
Lee KM
Investigative Ophthalmology and Visual Science 2019; 60: 4171-4177
82682 Glaucoma management in the era of artificial intelligence
Devalla SK
British Journal of Ophthalmology 2020; 104: 301-311
82592 Association of Corneal Hysteresis With Lamina Cribrosa Curvature in Primary Open Angle Glaucoma
Kim TW
Investigative Ophthalmology and Visual Science 2019; 60: 4171-4177
82682 Glaucoma management in the era of artificial intelligence
Liang Z
British Journal of Ophthalmology 2020; 104: 301-311
81723 Optic Nerve Tortuosity and Globe Proptosis in Normal and Glaucoma Subjects
Rumpel H
Journal of Glaucoma 2019; 28: 691-696
82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Girard MJA
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150
82134 Elucidation of the Strongest Factors Influencing Rapid Retinal Nerve Fiber Layer Thinning in Glaucoma
Kim TW
Investigative Ophthalmology and Visual Science 2019; 60: 3343-3351
82225 Scleral structure and biomechanics
Sigal IA
Progress in Retinal and Eye Research 2020; 74: 100773
82592 Association of Corneal Hysteresis With Lamina Cribrosa Curvature in Primary Open Angle Glaucoma
Lee EJ
Investigative Ophthalmology and Visual Science 2019; 60: 4171-4177
81723 Optic Nerve Tortuosity and Globe Proptosis in Normal and Glaucoma Subjects
Baskaran M
Journal of Glaucoma 2019; 28: 691-696
82134 Elucidation of the Strongest Factors Influencing Rapid Retinal Nerve Fiber Layer Thinning in Glaucoma
Kim JA
Investigative Ophthalmology and Visual Science 2019; 60: 3343-3351
82225 Scleral structure and biomechanics
Grytz R
Progress in Retinal and Eye Research 2020; 74: 100773
82682 Glaucoma management in the era of artificial intelligence
Pham TH
British Journal of Ophthalmology 2020; 104: 301-311
82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Lee W; Morris JS
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150
82592 Association of Corneal Hysteresis With Lamina Cribrosa Curvature in Primary Open Angle Glaucoma
Girard MJA
Investigative Ophthalmology and Visual Science 2019; 60: 4171-4177
82134 Elucidation of the Strongest Factors Influencing Rapid Retinal Nerve Fiber Layer Thinning in Glaucoma
Kim GN
Investigative Ophthalmology and Visual Science 2019; 60: 3343-3351
82682 Glaucoma management in the era of artificial intelligence
Boote C
British Journal of Ophthalmology 2020; 104: 301-311
82225 Scleral structure and biomechanics
Hua Y
Progress in Retinal and Eye Research 2020; 74: 100773
81723 Optic Nerve Tortuosity and Globe Proptosis in Normal and Glaucoma Subjects
Tun TA
Journal of Glaucoma 2019; 28: 691-696
82134 Elucidation of the Strongest Factors Influencing Rapid Retinal Nerve Fiber Layer Thinning in Glaucoma
Kim JM
Investigative Ophthalmology and Visual Science 2019; 60: 3343-3351
82591 The Relationship Between Scleral Strain Change and Differential Cumulative Intraocular Pressure Exposure in the Nonhuman Primate Chronic Ocular Hypertension Model
Burgoyne CF
Investigative Ophthalmology and Visual Science 2019; 60: 4141-4150

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