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Australian and New Zealand Journal of Ophthalmology|May 1, 1997
A fundamental step-transition in retinal function at low light intensitiesI G Morgan, M K BoelenVisual Neuroscience|May 1, 1996
A retinal dark-light switch: a review of the evidenceI G Morgan, M K BoelenBrain Research|October 8, 1993
[Leu5]enkephalin-like immunoreactive amacrine cells are under nicotinic excitatory control during darkness in chicken retinaM K Boelen, M Dowton, I G MorganNeuroreport|July 31, 1995
Parallel suppression of retinal and pineal melatonin synthesis by retinally mediated lightI G Morgan, M K Boelen, P MiethkeNeuroreport|February 15, 1995
Pineal activity is under the control of retinal D1-dopaminergic pathwaysI G Morgan, M K Boelen, P MiethkeBrain Research. Developmental Brain Research|March 18, 1994
Somatostatin-14 and somatostatin-28 levels are light-driven and vary during development in the chicken retinaM Dowton, M K Boelen, I G MorganNeuroscience Letters|June 6, 1994
A role for the enkephalin-immunoreactive amacrine cells of the chicken retina in adaptation to light and darkI G Morgan, J W Wellard, M K BoelenAustralian and New Zealand Journal of Ophthalmology|May 1, 1997
Localization of D1 dopamine receptors in the chicken retinaS I Firth, I G Morgan, M K BoelenAustralian and New Zealand Journal of Ophthalmology|May 1, 1997
Dopaminergic behaviour in chicken retina and the effect of form deprivationP L Megaw, I G Morgan, M K BoelenAustralian and New Zealand Journal of Ophthalmology|July 31, 1998
Enkephalin, neurotensin and somatostatin increase cAMP levels in the chicken retinaS I Firth, M K Boelen, I G MorganPageof 7