Baker, F.H., Grigg, P., Noorden, G.K. von: Effects of visual deprivation and strabismus on the response of neurones in the visual cortex of the monkey, including studies on the striate and prestriate cortex in the normal animal. Brain Res. 66, 185–208 (1974)
Google Scholar
Blakemore, C., Eggers, H.: Animal models for human visual development. In: Frontiers in visual science (ed. S.J. Cool). Berlin, Heidelberg, New York: Springer 1978 (in press)
Google Scholar
Blakemore, C., van Sluyters, R.C.: Experimental analysis of amblyopia and strabismus. Br. J. Ophthalmol. 58, 176–182 (1974)
Google Scholar
Cleland, B.G., Levick, W.R.: Brisk and sluggish concentrically organised ganglion cells in the cats retina. J. Physiol. (Lond.) 240, 421–456 (1974)
Google Scholar
Cleland, B.G., Dubin, M.W., Levick, W.R.: Sustained and transient neurones in the cat retina and lateral geniculate nucleus. J. Physiol. (Lond.) 217, 473–497 (1971)
Google Scholar
Eggers, H.M., Blakemore, C.: Physiological basis of anisometropic amblyopia. Science 201, 264–267 (1978)
Google Scholar
Enroth-Cugell, C., Robson, J.G.: The contrast sensitivity of retinal ganglion cells of the cat. J. Physiol. (Lond.) 187, 517–552 (1966)
Google Scholar
Gordon, B., Gummow, L.: Effects of extraocular muscle section on receptive fields in cat superior colliculus. Vision Res. 15, 1011–1019 (1975)
Google Scholar
Grünau, M. von: Luminance dependence of strabismic amblyopia in kittens. Proceedings of Cambridge Meeting of Physiological Society, July 1978. J. Physiol. (Lond.) (in press)
Hess, R.F., Howell, E.R.: The threshold contrast sensitivity function in strabismic amblyopia: evidence for a two type classification. Vision Res. 17, 1049–1056 (1977)
Google Scholar
Hubel, D.H., Wiesel, T.N.: Binocular interaction in striate cortex of kittens reared with artificial squint. J. Neurophysiol. 28, 1041–1059 (1965)
Google Scholar
Hubel, D.H., Wiesel, T.N.: The period of susceptibility to the physiological effects of unilateral eye closure in kittens. J. Physiol. (Lond.) 206, 419–436 (1970)
Google Scholar
Hugonnier, R., Clayette-Hugonnier, S.: Strabismus, heterophoria, ocular motor paralysis (ed. S. Veronneau-Troutman), p. 1. St. Louis: Mosby 1969
Google Scholar
Ikeda, H., Pringle, J.: A microelectrode advancer for intraretinal recording from the cat. Vision Res. 11, 1169–1173 (1971)
Google Scholar
Ikeda, H., Tremain, K.E.: Different causes for amblyopia and loss of binocularity in squinting kittens. J. Physiol. (Lond.) 269, 26–27 (1977)
Google Scholar
Ikeda, H., Tremain, K.E.: The development of spatial resolving power of lateral geniculate neurones in kittens. Exp. Brain Res. 31, 193–206 (1978a)
Google Scholar
Ikeda, H., Tremain, K.E.: Amblyopia resulting from penalisation: neurophysiological studies of kittens reared with atropinisation of one or both eyes. Br. J. Ophthalmol. 62, 21–28 (1978b)
Google Scholar
Ikeda, H., Tremain, K.E., Einon, G.: Loss of spatial resolution of lateral geniculate nucleus neurones in kittens raised with convergent squint produced at different stages in development. Exp. Brain Res. 31, 207–220 (1978)
Google Scholar
Ikeda, H., Wright, M.J.: Differential effects of refractive errors and receptive field organisation of central and peripheral ganglion cells. Vision Res. 12, 1465–1476 (1972a)
Google Scholar
Ikeda, H., Wright, M.J.: Receptive field organisation of ‘sustained’ and ‘transient’ retinal ganglion cells which subserve different functional roles. J. Physiol. (Lond.) 227, 769–800 (1972b)
Google Scholar
Ikeda, H., Wright, M.J.: Functional organisation of the periphery effect in retinal ganglion cells. Vision Res. 12, 1857–1879 (1972c)
Google Scholar
Ikeda, H., Wright, M.J.: Is amblyopia due to inappropriate stimulation of the ‘sustained’ pathway during development? Br. J. Ophthalmol. 58, 165–175 (1974)
Google Scholar
Ikeda, H., Wright, M.J.: Spatial and temporal properties of ‘sustained’ and ‘transient’ neurones in Area 17 of the cat's visual cortex. Exp. Brain Res. 22, 363–383 (1975)
Google Scholar
Ikeda, H., Wright, M.J.: Properties of LGN cells in kittens reared with convergent squint: a neurophysiological demonstration of amblyopia. Exp. Brain Res. 25, 63–77 (1976)
Google Scholar
Jacobson, S.G., Ikeda, H.: Behavioural studies of spatial vision in cats reared with convergent squint: Is amblyopia due to arrest of development? Exp. Brain Res. 34, 11–26 (1978)
Google Scholar
Levi, D.M., Harwerth, R.S.: Spatiotemporal interactions in anisometropic and strabismic amblyopia. Invest. Ophthalmol. Visual Sci. 16, 90–95 (1977)
Google Scholar
McIlwain, J.T.: Some evidence concerning the physiological basis of the periphery effect in the cat's retina. Exp. Brain Res. 1, 265–271 (1966)
Google Scholar
Noorden, G. K. von: Behavioural neurophysiological and histological aspects of experimental amblyopia in Rhesus monkeys. Medical Primatology, 289–296 (1972)
Rodieck, R.W.: Receptive fields in the cat's retina: a new type. Science 157, 90–92 (1967)
Google Scholar
Rusoff, A.C., Dubin, M.W.: Development of receptive field properties of retinal ganglion cells in kittens. J. Neurophysiol. 40, 1188–1198 (1977)
Google Scholar
Stone, J., Fukuda, Y.: Properties of cat retinal ganglion cells: a comparison of W-cells with X- and Y-cells. J. Neurophysiol. 37, 722–748 (1974)
Google Scholar
Stone, J., Hoffmann, K.-P.: Very slow-conducting ganglion cells in the cat's retina: a major new functional type? Brain Res. 43, 610–616 (1972)
Google Scholar
Thomas, J.: Normal and amblyopic contrast sensitivity functions in central and peripheral retinas. Invest. Ophthalmol. Visual Sci. 17, 746–753 (1978)
Google Scholar
Yinon, U., Auerbach, E., Blank, M., Friesenhausen, J.: The ocular dominance of cortical neurones in cats developed with divergent and convergent squint. Vision Res. 15, 1251–1256 (1975)
Google Scholar
Yinon, U.L.: Age dependence of the effect of squint on cells in the kitten's visual cortex. Exp. Brain Res. 26, 151–157 (1976)
Google Scholar