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Artificial Intelligence: Structure-Function Correlation in the AI Era (24-2, July 2024) on:
113396 Prediction of Central Visual Field Measures From Macular OCT Volume Scans With Deep Learning
Mohammadzadeh V; Vepa A; Vepa A; Li C et al.
Translational vision science & technology 2023; 12: 5
Basic Science: Histo-architectural effects of IOP (23-4, October 2023) on:
108138 Who bears the load? IOP-induced collagen fiber recruitment over the corneoscleral shell
Foong TY; Hua Y; Amini R et al.
Experimental Eye Research 2023; 230: 109446
Clinical Examination Methods: Pulsatile Trabecular Motion and IOP Fluctuations (23-1, October 2022) on:
100738 Pulsatile Trabecular Meshwork Motion: An Indicator of Intraocular Pressure Control in Primary Open-Angle Glaucoma
Du R; Xin C; Xu J et al.
Journal of clinical medicine 2022; 11:
Clinical Forms of Glaucoma: Does Ocular Rigidity Have a Special Role in Vasospastic Patients? (22-4, July 2022) on:
99320 Ocular rigidity and neuroretinal damage in vasospastic patients: a pilot study
Sayah DN; Mazzaferri J; Descovich D et al.
Canadian Journal of Ophthalmology 2023; 58: 338-345
Pathogenesis: Eye Movements and Optic Nerve Traction (21-1, November 2020) on:
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Demer JL; Clark RA; Suh SY et al.
Current Eye Research 2020; 45: 199-210
Anatomical Structures: Do laminar biomechanics depend on Ethnicity? (20-4, June 2020) on:
80516 Racioethnic differences in the biomechanical response of the lamina cribrosa
Behkam R; Kollech HG; Jana A et al.
Acta biomaterialia 2019; 88: 131-140
Clinical Examination Methods: Exploring ONH deformation with OCT (20-4, June 2020) on:
81967 In vivo characterization of the deformation of the human optic nerve head using optical coherence tomography and digital volume correlation
Midgett DE; Quigley HA; Nguyen TD
Acta biomaterialia 2019; 96: 385-399