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Summary Anatomy Item Literature (12850) Expression Attributions Wiki
XB-ANAT-488

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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.


Observations on the formation of the brain and of nerve connections following embryonic manipulation of the amphibian neural tube., Chung SH., Proc R Soc Lond B Biol Sci. June 5, 1978; 201 (1145): 335-73.


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 changing morphology of the epithelium-mesenchyme interface in the differentiation zone of growing teeth of selected vertebrates and its relationship to possible mechanisms of differentiation., Kallenbach E., J Biol Buccale. September 1, 1978; 6 (3): 229-40.


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.


Exogenous melatonin and melanophore development in Xenopus., Baker PC., Experientia. November 15, 1978; 34 (11): 1521-2.


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.      


[Cell proliferation and migration in the roof of the mesencephalon (tectum) in Xenopus laevis tadpoles and adult frogs normally and in brain injury. II. Cell proliferation and differentiation of the tectum in frogs]., Reznikov KIu., Ontogenez. January 1, 1979; 10 (4): 350-8.


[The evolution of the relations between brain development, secondary temporomandibular joint and facial development in mammals]., Heine H., Gegenbaurs Morphol Jahrb. January 1, 1979; 125 (1): 49-53.


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.        


Classes of proteins synthesized in oocytes, eggs, embryos, and differentiated tissues of Xenopus laevis., Bravo R., Differentiation. January 1, 1979; 13 (2): 101-8.


[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.


Tissue distribution of immunoreactive somatostatin in the South African clawed toad (Xenopus laevis)., Shapiro B., J Endocrinol. March 1, 1979; 80 (3): 407-8.


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.


Detection of substance P in the central nervous system by a monoclonal antibody., Cuello AC., Proc Natl Acad Sci U S A. July 1, 1979; 76 (7): 3532-6.


A study of the organisation of the ribosomal ribonucleic acid gene cluster of Neurospora crassa by means of restriction endonuclease analysis and cloning in bacteriophage lambda., Cox RA., Mol Gen Genet. July 2, 1979; 174 (1): 17-24.


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.

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