By S. C. Sharma (auth.), Dr. Joel B. Sheffield, Dr. S. Robert Hilfer (eds.)

The eye has involved scientists from the earliest days of organic research. the variety of its elements and the precision in their interac­ tion make it a favourite version method for quite a few developmental reports. the attention is a very helpful experimental method not just simply because its tissues offer examples of primary strategies. but additionally since it is a admired and simply available constitution at very early embryonic a while. with a purpose to supply an open discussion board for investigators engaged on all points of ocular improvement. a sequence of symposia on ocular and visible improvement used to be initiated in 1973. a tremendous target of the symposia has been to foster conversation among the fundamental study employee and the medical group. it really is our feeling that a lot could be realized on either side from this interplay. the belief for an off-the-cuff assembly permitting greatest trade of rules originated with Dr. Leon Canbeub. who provided the mandatory motive force that made the sequence a fact. each one symposium has targeting a distinct point of ocular improvement. audio system were chosen to method similar themes from diversified perspec­ tives.

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F. F. Miller. 1981a. An intracellular electrophysiological study of the ontogeny of functional synapses in the rabbit retina. I. Receptors, horizontal and 46 bipolar cells. J. Compo Neurol. 198: 301-326. F. F. Miller. 1981b. An intracellular electrophysiological study of the ontogeny of functional synapses in the rabbit retina. II. Receptors, horizontal and bipolar cells. J. Compo Neurol. 198: 327-334. M. 1978. Spectral interactions in horizontal and ganglion cells of the isolated and arterially perfused rabbit retina.

Hamburger, V. and H. Hamilton, 1951. A series of normal stages in the development of the chick embryo, J. , 88:49-92. G. 1971. Differential growth of the neural retina in Xenop~s laevis larvae, Develop. BioI. 24:264-286. J. 1974. An autoradiographic analysis of the time of appearance of neurons in the developing chick neural retina, Develop. , 38:30-40. J. 1976. A fine structural and E-PTA study of photoreceptor synaptogenesis in the chick retina, J. , 170:347-364. Meller, K. and W. Tetzlaff, 1976.

0 ~ 7. S 0 •... i . z ... S. to O. ) Figure 5. Planimetric density of synapses in the mouse IPL. These curves are derived from the same data as Figure 1. Plan i metric density is equal to the number of synapses that would be found in the IPL lying directly beneath a spot of light of unit area focused on the retina. Planimetric density is expressed as synapses per ~m2, age in days. Conventional synapses, open symbols; ribbon synapses, filled symbols. (Figure 7). The IPL adds conventional synapses to the array from stage 36 until hatching.

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