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Summary Anatomy Item Literature (6783) Expression Attributions Wiki
XB-ANAT-730

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Isoelectric focusing and immunochemistry of lens crystallins., Bours J., Doc Ophthalmol. April 26, 1974; 37 (1): 1-46.


Deployment of optic nerve fibers is determined by positional markers in the frog''s tectum., Levine R., Exp Neurol. June 1, 1974; 43 (3): 527-38.


Specification of positional information in retinal ganglion cells of Xenopus laevis: intra-ocular control of the time of specification., Hunt RK., Proc Natl Acad Sci U S A. September 1, 1974; 71 (9): 3616-20.


Proceedings: Rapid reversal of retinal axes in embryonic Xenopus eyes., Hunt RK., J Physiol. September 1, 1974; 241 (2): 90P-91P.


Development of neuronal locus specificity in Xenopus retinal ganglion cells after surgical eye transection after fusion of whole eyes., Hunt RK., Dev Biol. September 1, 1974; 40 (1): 1-15.


Regeneration and remyelination of Xenopus tadpole optic nerve fibres following transection or crush., Reier PJ., J Neurocytol. November 1, 1974; 3 (5): 591-618.


Ontogeny and localization of the lens crystallins in Xenopus laevis lens regeneration., Brahma SK., J Embryol Exp Morphol. December 1, 1974; 32 (3): 783-94.


Investigations into natural and experimental infections of freshwater fish by the common eye-fluke Diplostomum spathaceum Rud., Sweeting RA., Parasitology. December 1, 1974; 69 (3): 291-300.


[The influence of the eye on the regeneration of the lens in Xenopus laevis larvae]., Filoni S., Acta Embryol Exp (Palermo). January 1, 1975; (2): 179-95.


[Regeneration of the crystalline lens in anuran amphibia in the postembryonal stage. Experimental excision of the crystalline lens in Rana esculenta and Xenopus laevis larvae]., Filoni S., Acta Embryol Exp (Palermo). January 1, 1975; (3): 319-34.


Melatonin content of cat cerebrospinal fluid and blood following intravenous injection of melatonin as measured by Xenopus laevis skin melanophore test., Kovács L., Acta Physiol Acad Sci Hung. January 1, 1975; 46 (1): 33-6.


[Metaplastic transformation of the tissue of the eye in tadpoles and adult Xenopus laevis frogs]., Sologub AA., Ontogenez. January 1, 1975; 6 (6): 563-71.


Developmental programming for retinotectal patterns., Hunt RK., Ciba Found Symp. January 1, 1975; 0 (29): 131-59.


DNA synthesis during lens regeneration in larval Xenopus laevis., Waggoner PR., J Exp Zool. April 1, 1975; 192 (1): 65-71.


Autoradiographic study of [3H] glucosamine incorporation by the developing retina of the clawed toad, Xenopus laevis., Hollyfield JG., Exp Eye Res. April 1, 1975; 20 (4): 383-91.


The development of the retinotectal projection in Xenopus with one compound eye., Feldman JD., J Embryol Exp Morphol. June 1, 1975; 33 (3): 775-87.


Cytoplasmic control of nuclear DNA synthesis during early development of Xenopus laevis: a cell-free assay., Benbow RM., Proc Natl Acad Sci U S A. June 1, 1975; 72 (6): 2437-41.


The structural and functional development of the retina in larval Xenopus., Chung SH., J Embryol Exp Morphol. July 1, 1975; 33 (4): 915-40.


The development of animals homozygous for a mutation causing periodic albinism (ap) in Xenopus laevis., Hoperskaya OA., J Embryol Exp Morphol. August 1, 1975; 34 (1): 253-64.


The developmental capacity of nuclei transplanted from keratinized skin cells of adult frogs., Gurdon JB., J Embryol Exp Morphol. August 1, 1975; 34 (1): 93-112.        


Neuronal locus specificity: trans-repolarization of Xenopus embryonic retina after the time of axial specification., Hunt RK., Science. August 15, 1975; 189 (4202): 563-4.


Light-induced formation of dense-core vesicles in rod photoreceptors in retina of Xenopus laevis., Monaghan P., Nature. October 16, 1975; 257 (5527): 586-7.


Factors determining decussation at the optic chiasma by developing retinotectal fibres in Xenopus., Beazley LD., Exp Brain Res. November 14, 1975; 23 (5): 491-504.


Development of intertectal neuronal connections in xenopus: the effects of contralateral transposition of the eye and of eye removal., Beazley LD., Exp Brain Res. November 14, 1975; 23 (5): 505-18.


Storage, distribution and utilization of vitamins A in the eyes of adult amphibians and their tadpoles., Bridges CD., Vision Res. December 1, 1975; 15 (12): 1311-23.


Subsurface cisterns in the vertebrate retina., Fisher SK., Cell Tissue Res. December 18, 1975; 164 (4): 473-80.


The development of the ipsilateral retinothalamic projections in the Xenopus toad., Khalil SH., Acta Biol Acad Sci Hung. January 1, 1976; 27 (4): 253-60.


[Role of Bruch's membrane in the process of metaplasia of the ocular pigmented epithelium of Xenopus laevis]., Sologub AA., Ontogenez. January 1, 1976; 7 (4): 362-7.


The deleterious effects of fungicides and herbicides on Xenopus laevis embryos., Anderson RJ., Arch Environ Contam Toxicol. January 1, 1976; 4 (3): 312-23.


Premature specification of the retina in embryonic Xenopus eyes treated with ionophore X537A., Jacobson M., Science. January 23, 1976; 191 (4224): 288-90.


Reorganization of retinotectal projection of compound eyes after various tectal lesions in Xenopus., Straznicky K., J Embryol Exp Morphol. February 1, 1976; 35 (1): 41-57.


The penetration of fluorescein-conjugated and electrondense tracer proteins into Xenopus tadpole optic nerves following perineural injection., Reier PJ., Dev Biol. February 6, 1976; 102 (2): 229-44.


Histogenesis of retina in the clawed frog with implications for the pattern of development of retinotectal connections., Jacobson M., Dev Biol. February 27, 1976; 103 (3): 541-5.


Synaptic arrays of the inner plexiform layer in the developing retina of Xenopus., Fisher LJ., Dev Biol. June 1, 1976; 50 (2): 402-12.


Transneuronal transport in the frog visual system., Lázár G., Dev Biol. June 18, 1976; 109 (3): 623-7.


An investigation into the hypothesis of shifting neuronal relationships during development., Scott TM., J Anat. July 1, 1976; 121 (Pt 3): 485-96.


Neurite outgrowth from explanted Xenopus retina: an effect of prior optic nerve section., Agranoff BW., Dev Biol. August 27, 1976; 113 (2): 225-34.


Multiple sclerosis cerebrospinal fluid produces myelin lesions in tadpole optic nerves., Tabira T., N Engl J Med. September 16, 1976; 295 (12): 644-9.


Effects of light and dark upon photoreceptor synapses in the retina of Xenopus laevis., Osborne MP., Cell Tissue Res. October 6, 1976; 173 (2): 211-20.


Differential sensitivity of rods and cones in Xenopus retina to hemicholinium-3., Osborne MP., Cell Tissue Res. November 24, 1976; 175 (1): 59-72.


The distribution of intercellular gap junctions in the developing retina and pigment epithelium of Xenopus laevis., Hayes BP., Anat Embryol (Berl). December 22, 1976; 150 (1): 99-111.


Ribosomal RNA synthesis in the Eastern North-American Newt, Notophthalmus viridescens., Reese DH., Differentiation. January 14, 1977; 7 (2): 99-106.


In vivo test for myelinotoxicity of cerebrospinal fluid., Tabira T., Dev Biol. January 14, 1977; 120 (1): 103-12.


Filaments of the vertebrate lens., Maisel H., Experientia. April 15, 1977; 33 (4): 525.


The formation of direct ipsilateral retinodiencephalic connections from compound eyes in Xenopus., Tay D., Dev Biol. April 15, 1977; 125 (2): 345-50.


Cyclic GMP accumulation causes degeneration of photoreceptor cells: simulation of an inherited disease., Lolley RN., Science. May 6, 1977; 196 (4290): 664-6.


Mapping the developing retinotectal projection in frog tadpoles by a double label autoradiographic techinque., Jacobson M., Dev Biol. May 20, 1977; 127 (1): 55-67.


Variations in differentiation in the regenerating lens of Xenopus laevis., Campbell JC., Exp Eye Res. July 1, 1977; 25 (1): 99-100.


Localization of myosin and actin in ocular nonmuscle cells. Immunofluorescence-microscopic, biochemical, and electron-microscopic studies., Drenckhahn D., Cell Tissue Res. July 19, 1977; 181 (4): 493-503.


Retinal growth in double dorsal and double ventral eyes in Xenopus., Straznicky K., J Embryol Exp Morphol. August 1, 1977; 40 175-85.

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