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XB-ANAT-177

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Eyes transplanted to tadpole tails send axons rostrally in two spinal-cord tracts., Katz MJ., Science. January 13, 1978; 199 (4325): 202-4.


Ontogeny of ACh and GABA synthesis during development of the Xenopus retina., Ma PM., Dev Biol. January 27, 1978; 140 (2): 368-73.


Melanin synthesis activation dependent on inductive influences., Hoperskaya OA., Wilehm Roux Arch Dev Biol. March 1, 1978; 184 (1): 15-28.


The diencephalic course of regenerating retinotectal fibres in Xenopus tadpoles., Gaze RM., J Embryol Exp Morphol. April 1, 1978; 44 201-16.


Synaptic organization of the inner plexiform layer of the retina of Xenopus laevis., Goldman KA., Proc R Soc Lond B Biol Sci. April 13, 1978; 201 (1142): 57-72.


The photoreceptors and pigment epithelium of the larval Xenopus retina: morphogenesis and outer segment renewal., Kinney MS., Proc R Soc Lond B Biol Sci. May 5, 1978; 201 (1143): 149-67.


The photoreceptors and pigment epithelim of the adult Xenopus retina: morphology and outer segment renewal., Kinney MS., Proc R Soc Lond B Biol Sci. May 5, 1978; 201 (1143): 131-47.


Anatomical mapping of retino-tectal connections in developing and metamorphosed Xenopus: evidence for changing connections., Longley A., J Embryol Exp Morphol. June 1, 1978; 45 249-70.


Pineal eye and behaviour in Xenopus tadpoles., Roberts A., Nature. June 29, 1978; 273 (5665): 774-5.


Synthesis of lens crystallins in Xenopus oocytes as determined by quantitative immunoprecipitation., Asselbergs FA., Eur J Biochem. July 3, 1978; 87 (3): 517-24.


Effects of 5-bromodeoxyuridine on development of Mauthner's neuron and neural retina of Xenopus laevis embryos., Dribin LB., Dev Biol. July 21, 1978; 150 (3): 543-7.


Retino-tectal projections from half-ventral and half-dorsal eye rudiments in Xenopus., Feldman JD., J Embryol Exp Morphol. August 1, 1978; 46 89-97.


Biochemical changes in developmentally retarded Xenopus laevis larvae. I. The lens crystallin transition., Doyle MJ., J Embryol Exp Morphol. August 1, 1978; 46 215-25.


An experimental analysis of interlamellar tight junctions in amphibian and mammalian C.N.S. myelin., Tabira T., J Neurocytol. August 1, 1978; 7 (4): 489-503.


The acquisition of tectal positional specification in Xenopus., Straznicky K., Neurosci Lett. September 1, 1978; 9 (2-3): 177-84.


Axons from eyes grafted in Xenopus can grow into the spinal cord and reach the optic tectum., Giorgi PP., Nature. October 26, 1978; 275 (5682): 746-8.


Anterograde and retrograde transport of horseradish peroxidase isoenzymes in the retino-tectal fibres of xenopus larvae., Giorgi PP., Neurosci Lett. November 1, 1978; 10 (1-2): 109-14.


Retinodiencephalic projections from compound eyes in Xenopus., Tay D., Neurosci Lett. November 1, 1978; 10 (1-2): 29-34.


Post-translational assembly of lens alpha-crystallin in the reticulocyte lysate and in Xenopus laevis oocytes., Asselbergs FA., Eur J Biochem. November 2, 1978; 91 (1): 65-72.


Origin of the retina from both sides of the embryonic brain: a contribution to the problem of crossing at the optic chiasma., Jacobson M., Science. November 10, 1978; 202 (4368): 637-9.


The formation of photoreceptor synapses in the retina of larval Xenopus., Chen F., J Neurocytol. December 1, 1978; 7 (6): 721-40.


Formation, conversion, and utilization of isorhodopsin, rhodopsin, and porphyropsin by rod photoreceptors in the Xenopus retina., Witkovsky P., J Gen Physiol. December 1, 1978; 72 (6): 821-36.


Rod sensitivity and visual pigment concentration in Xenopus., Engbretson GA., J Gen Physiol. December 1, 1978; 72 (6): 801-19.


Lens regeneration from cornea of larval Xenopus laevis in the presence of the lens., Reeve JG., J Embryol Exp Morphol. December 1, 1978; 48 205-14.      


Embryonic appearance of alpha, beta, and gamma crystallins in the periodic albinism (ap) mutant of Xenopus laevis., McDevitt DS., Differentiation. January 1, 1979; 14 (1-2): 107-12.        


[Alterations in concanavalin A binding during retinal development in Xenopus laevis]., Ulshafer RJ., C R Seances Soc Biol Fil. January 1, 1979; 173 (1): 127-31.


[Immunochemical study of the water-soluble lens proteins in the embryo of Xenopus laevis with the mutation of periodic albinism]., Mikhailov AT., Ontogenez. January 1, 1979; 10 (3): 220-30.


Effects of octylguanidine on the electrical and mechanical events of xenopus heart., Re GG., Boll Soc Ital Biol Sper. January 15, 1979; 55 (1): 73-8.


Patterns of cell proliferation in the developing retina of the clawed frog in relation to blood supply and position of the choroidal fissure., Beach DH., J Comp Neurol. February 1, 1979; 183 (3): 625-32.


Influences of thyroxine on cell proliferation in the retina of the clawed frog at different ages., Beach DH., J Comp Neurol. February 1, 1979; 183 (3): 615-23.


Patterns of cell proliferation in the retina of the clawed frog during development., Beach DH., J Comp Neurol. February 1, 1979; 183 (3): 603-13.


Matrices containing glycosaminoglycans in the developing anterior chambers of chick and Xenopus embryonic eyes., Bard JB., Dev Biol. February 1, 1979; 68 (2): 472-86.


Substrate pathways which guide growing axons in Xenopus embryos., Katz MJ., J Comp Neurol. February 15, 1979; 183 (4): 817-31.


Messenger RNA competition in living Xenopus oocytes., Asselbergs FA., Eur J Biochem. February 15, 1979; 94 (1): 249-54.


Remodelling of optic nerve myelin sheaths and axons during metamorphosis in Xenopus laevis., Cullen MJ., J Comp Neurol. March 15, 1979; 184 (2): 353-62.


Penetration of grafted astrocytic scars by regenerating optic nerve axons in Xenopus tadpoles., Reier PJ., Dev Biol. March 23, 1979; 164 61-8.


Selection of appropriate medial branch of the optic tract by fibres of ventral retinal origin during development and in regeneration: an autoradiographic study in Xenopus., Straznicky C., J Embryol Exp Morphol. April 1, 1979; 50 253-67.


The central pathways of optic fibres in Xenopus tadpoles., Steedman JG., J Embryol Exp Morphol. April 1, 1979; 50 199-215.


Anomalous ipsilateral optic fibre projection in Xenopus induced by larval tectal ablation., Straznicky C., J Embryol Exp Morphol. April 1, 1979; 50 111-22.


Control of pattern duplication in the retinotectal system of Xenopus. Induction of duplication in eye fragments by secondary cuts., Ling RT., Dev Biol. April 1, 1979; 69 (2): 361-74.


Control of pattern duplication in the retinotectal system of Xenopus. Suppression of duplication by eye-fragment interactions., Ide CF., Dev Biol. April 1, 1979; 69 (2): 337-60.


Myelinotoxic activity on tadpole optic nerve of cerebrospinal fluid from patients with optic neuritis., Stendahl-Brodin L., Neurology. June 1, 1979; 29 (6): 882-6.


Light-triggered rod disc shedding in Xenopus retina in vitro., Flannery JG., Invest Ophthalmol Vis Sci. June 1, 1979; 18 (6): 638-42.


Ultrastructural study of degeneration and regeneration in the amphibian tectum., Ostberg A., Dev Biol. June 8, 1979; 168 (3): 441-55.


Relationships between eye factors and lens-forming transformations in the cornea and pericorneal epidermis of larval Xenopus laevis., Bosco L., J Exp Zool. August 1, 1979; 209 (2): 261-82.


Selective regeneration of optic fibres from a compound eye to the ipsilateral tectum in Xenopus [proceedings]., Gaze RM., J Physiol. August 1, 1979; 293 58P-59P.


Stability of retinal positional specificity in disarranged embryonic eyes in Xenopus [proceedings]., Gaze RM., J Physiol. August 1, 1979; 293 56P-57P.


[Immunohistochemical identification of specific antigens in stained and balsam-embedded eye lens sections]., Mikhaĭlov AT., Biull Eksp Biol Med. September 1, 1979; 88 (9): 367-9.


Development of synaptic arrays in the inner plexiform layer of neonatal mouse retina., Fisher LJ., J Comp Neurol. September 15, 1979; 187 (2): 359-72.


The orientation of the visuotectal map in Xenopus: developmental aspects., Gaze RM., J Embryol Exp Morphol. October 1, 1979; 53 39-66.

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