advertisement
Anatomical structures: Laminar displacement (16-3, June 2015) on:
59467 Factors affecting plastic lamina cribrosa displacement in glaucoma patients
Jung KI; Jung Y; Park KT et al.
Investigative Ophthalmology and Visual Science 2014; 55: 7709-7715
Anatomical Structures: Lamina cribrosa structure (15-3, May 2014) on:
54840 Scleral structural alterations associated with chronic experimental intraocular pressure elevation in mice
Cone-Kimball E; Nguyen C; Oglesby EN et al.
Molecular Vision 2013; 19: 2023-2039
Anatomical Structures: Peripapillary atrophy (15-1, September 2013) on:
52740 Microstructure of parapapillary atrophy: beta zone and gamma zone
Dai Y; Jonas JB; Huang H et al.
Investigative Ophthalmology and Visual Science 2013; 54: 2013-2018
Anatomical Structures: Age-related laminar insertion variations (14-3, April 2013) on:
51223 Human lamina cribrosa insertion and age
Sigal IA; Flanagan JG; Lathrop KL et al.
Investigative Ophthalmology and Visual Science 2012; 53: 6870-6879
Basic Research - Sclera: Measuring lamina cribrosa pores (13-3, December 2011) on:
46385 Reproducibility of measuring lamina cribrosa pore geometry in human and nonhuman primates with in vivo adaptive optics imaging
Ivers KM; Li C; Patel N et al.
Investigative Ophthalmology and Visual Science 2011; 52: 5473-5480
Morphometry of the Optic Disc (11-3, December 2009) on:
24085 Optic disc morphology--rethinking shape
Sanfilippo PG; Cardini A; Hewitt AW et al.
Progress in Retinal and Eye Research 2009; 28: 227-248
Risk Factors: Long axial length (11-2, September 2009) on:
23937 Long axial length as risk factor for normal tension glaucoma
Oku Y; Oku H; Park M et al.
Graefe's Archive for Clinical and Experimental Ophthalmology 2009; 247: 781-787
Disc Evaluation: Topographic change analysis (11-1, June 2009) on:
22538 Performance of confocal scanning laser tomograph Topographic Change Analysis (TCA) for assessing glaucomatous progression
Bowd C; Balasubramanian M; Weinreb RN et al.
Investigative Ophthalmology and Visual Science 2009; 50: 691-701
Intraocular Pressure: Corneal hysteresis, CCT and ONH surface compliance (10-3, December 2008) on:
21753 Corneal hysteresis but not corneal thickness correlates with optic nerve surface compliance in glaucoma patients
Wells AP; Garway-Heath DF; Poostchi A et al.
Investigative Ophthalmology and Visual Science 2008; 49: 3262-3268
Optic Nerve Head: Change ONH by IOP lowering (9-3, December 2007) on:
19555 The acute morphologic changes that occur at the optic nerve head induced by medical reduction of intraocular pressure
Meredith SP; Swift L; Eke T et al.
Journal of Glaucoma 2007; 16: 556-561
Basic science: Scleral edge (8-4, March 2007) on:
14745 Scleral edge, not optic disc or retina, is the primary site of injury in chronic glaucoma
Hasnain SS
Medical Hypotheses 2006; 67: 1320-1325