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Investigative Ophthalmology & Visual Science|June 1, 1986
A morphological analysis of experimental myopia in young chickensB P Hayes, F W Fitzke, W Hodos, et al.The British Journal of Ophthalmology|June 30, 2000
Quantitative evaluation of fundus autofluorescence imaged "in vivo" in eyes with retinal diseaseN Lois, A S Halfyard, A C Bird, et al.Investigative Ophthalmology & Visual Science|October 1, 1985
Experimental myopia in chicks: ocular refraction by electroretinographyW Hodos, F W Fitzke, B P Hayes, et al.Eye (London, England)|January 1, 1988
Myopia: induced, normal and clinicalA L Holden, W Hodos, B P Hayes, et al.Ophthalmology|October 3, 2000
Mapping the visual field to the optic disc in normal tension glaucoma eyesD F Garway-Heath, D Poinoosawmy, F W Fitzke, et al.Eye (London, England)|January 1, 1988
Sorsby's pseudoinflammatory macula dystrophy--Sorsby's fundus dystrophiesM R Capon, P J Polkinghorne, F W Fitzke, et al.The British Journal of Ophthalmology|August 20, 2004
A practical approach to measuring the visual field component of fitness to driveD P Crabb, F W Fitzke, R A Hitchings, et al.Cornea|May 21, 1999
Corneal surface temperature change as the mode of stimulation of the non-contact corneal aesthesiometerP J Murphy, P B Morgan, S Patel, et al.Ophthalmic & Physiological Optics : the Journal of the British College of Ophthalmic Opticians (Optometrists)|September 21, 2001
The minimum stimulus energy required to produce a cooling sensation in the human corneaP J Murphy, S Patel, P B Morgan, et al.Ophthalmic & Physiological Optics : the Journal of the British College of Ophthalmic Opticians (Optometrists)|March 10, 1999
Reliability of the non-contact corneal aesthesiometer and its comparison with the Cochet-Bonnet aesthesiometerP J Murphy, J G Lawrenson, S Patel, et al.Pageof 809