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Summary Anatomy Item Literature (1547) Expression Attributions Wiki
XB-ANAT-14

Papers associated with diencephalon

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The hypophysis of Xenopus laevis Daudin larvae after removal of the anterior hypothalamus., GUARDABASSI A., Gen Comp Endocrinol. October 1, 1961; 1 348-63.


Biogenic amines in the hypothalamus of Xenopus leavis tadpoles., Goos HJ., Naturwissenschaften. August 1, 1968; 55 (8): 393-4.


[Dependence of normal tail regeneration in Xenopus larvae upon a diencephalic factor in the central canal]., Hauser R., Wilhelm Roux Arch Entwickl Mech Org. September 1, 1969; 163 (3): 221-247.


The re-establishment of retinotectal projections after uncrossing the optic chiasma in Xenopus laevis with one compound eye., Gaze RM., J Physiol. April 1, 1970; 207 (2): 51P-52P.


The retinotectal projections after uncrossing the optic chiasma in Xenopus with one compound eye., Straznicky K., J Embryol Exp Morphol. December 1, 1971; 26 (3): 523-42.


Daily variation in mitotic rate in tail-fin epidermis of larval Xenopus laevis and its modification by pineal organ-subcommissural organ system and photoperiods., Wakahara M., Neuroendocrinology. January 1, 1972; 9 (5): 267-77.


Ultrastructural aspects of the nucleus infundibularis dorsalis in the caudal hypothalamus of Xenopus laevis., Peute J., Z Zellforsch Mikrosk Anat. March 7, 1973; 137 (4): 513-20.


A morphological study of the epithalamus and the thalamus of Xenopus laevis., Salter EG., J Hirnforsch. January 1, 1974; 15 (2): 143-71.


An ultrastructural study of the subcommissural organ cells of the African clawed toad, Xenopus laevis., Wakahara M., Cell Tissue Res. January 1, 1974; 152 (2): 239-52.


Determination by radioimmunoassay of the luteinising hormone-releasing hormone (LHRH) content of the hypothalamus of the rat and some lower vertebrates., Deery DJ., Gen Comp Endocrinol. November 1, 1974; 24 (3): 280-5.


Differential subnuclear distribution of polyadenylate-rich ribonuclei acid during induction of egg-yolk protein synthesis in male Xenopus liver by oestradiol-17 beta., Tata JR., Biochem J. September 1, 1975; 150 (3): 345-55.


Transcription of DNAs of known sequence after injection into eggs and oocytes of Xenopus laevis., Colman A., Eur J Biochem. September 1, 1975; 57 (1): 85-96.


Biogenesis of plasmalemmal glycoproteins. Intracellular site of synthesis of mouse liver plasmalemmal 5'-nucleotidase as determined by the sub-cellular location of messenger RNA coding for 5'-nucleotidase., Bergeron JJ., Biochim Biophys Acta. October 15, 1975; 407 (3): 325-37.


Autoradiographic localization of hormone-concentrating cells in the brain of an amphibian, Xenopus laevis. II. Estradiol., Morrell JI., J Comp Neurol. November 1, 1975; 164 (1): 63-77.


Polarity of structure and of ordered nerve connections in the developing amphibian brain., Chung SH., Nature. November 13, 1975; 258 (5531): 126-32.


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.


[Proliferative potentials of Xenopus laevis tadpole and toad optic thalamus nerve tissue cells following injury]., Reznikov KIu., Ontogenez. January 1, 1976; 7 (4): 397-401.


Prenatal development of central optic pathways in albino rats., Lund RD., J Comp Neurol. January 15, 1976; 165 (2): 247-64.


Translation of the mRNA for rabbit uteroglobin in cell-free systems. Evidence for a precursor protein., Beato M., Eur J Biochem. April 15, 1976; 64 (1): 15-25.


Globin mRNA species containing poly(A) segments of different lengths. Their functional stability in Xenopus oocytes., Nudel U., Eur J Biochem. April 15, 1976; 64 (1): 115-21.


The presence of (dA.dT)20-25 tracts in the DNA of primitive eukaryotes., Mol JN., Nucleic Acids Res. September 1, 1976; 3 (9): 2367-77.


LHRH-like system in the brain of Xenopus laevis Daud: immunohistochemical idenfication., Doerr-Schott J., Cell Tissue Res. September 29, 1976; 172 (4): 477-86.


On the existence of polyadenylated histone mRNA in Xenopus laevis oocytes., Levenson RG., Cell. October 1, 1976; 9 (2): 311-22.


Translation and stability of human globin mRNA in Xenopus oocytes., Maniatis GM., J Clin Invest. December 1, 1976; 58 (6): 1419-27.


Particulate DNA polymerase from the cytoplasm of Xenopus laevis oocytes., Baldi MI., Biochem Biophys Res Commun. December 20, 1976; 73 (4): 985-92.


An ultrastructural study of the thyroid gland in the pre-metamorphic Xenopus laevis (Daudin) tadpole., Jayatilaka AD., J Anat. March 1, 1978; 125 (Pt 3): 579-91.


Three-dimensional structure of the lipovitellin-phosvitin complex from amphibian oocytes., Ohlendorf DH., Nature. March 2, 1978; 272 (5648): 28-32.


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


Translation and characterization of the fatty acid synthetase messenger RNA., Nepokroeff CM., J Biol Chem. April 10, 1978; 253 (7): 2279-83.


Characterization of globin mRNA from Xenopus laevis., Meza I., Cell Biol Int Rep. May 1, 1978; 2 (3): 251-7.


Electron-microscopic demonstration of terminal and internal initiation sites for cDNA synthesis on vitellogenin mRNA., Wahli W., Eur J Biochem. May 1, 1978; 86 (1): 225-34.


A biochemical comparison of Xenopus laevis and mammalian myelin from the central and peripheral nervous systems., Quarles RH., J Neurobiol. May 1, 1978; 9 (3): 217-28.


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.


Translation of biologically active messenger RNA from human placenta in Xenopus oocytes., Mous J., Eur J Biochem. March 1, 1979; 94 (2): 393-400.


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.


[Immunohistochemical identification, in an anuran amphibian (Xenopus laevis Daud.) of infundibular neurons reacting with antigastrin serum]., Doerr-Schott J., C R Acad Sci Hebd Seances Acad Sci D. April 2, 1979; 288 (13): 1055-8.


Synthesis of albumin and malic enzyme in wheat-germ lysates and Xenopus laevis oocytes programmed with chicken-liver messenger RNA., Goodridge A., Eur J Biochem. May 2, 1979; 96 (1): 1-8.


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


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


Immunohistochemical localization of a gastrin-like peptide in the brain of an amphibian, Xenopus laevis Daud., Doerr-Schott J., Cell Tissue Res. November 1, 1979; 203 (1): 65-78.


An autoradiographic study of the retinal projection in Xenopus laevis with comparisons to Rana., Levine RL., J Comp Neurol. January 1, 1980; 189 (1): 1-29.


Rental projections in the adult Xenopus laevis: a study with cobalt filling technique., Tóth P., Acta Morphol Acad Sci Hung. January 1, 1980; 28 (4): 365-74.


Substance P-related peptides in the hypothalamus of amphibia., Gaudino G., Cell Tissue Res. January 1, 1980; 211 (2): 241-50.


Messenger RNA for ribosomal proteins in Xenopus laevis oocytes., Pierandrei-Amaldi P., Eur J Biochem. May 1, 1980; 106 (2): 603-11.


Subnuclear fractionation by mild micrococcal-nuclease treatment of nuclei of different transcriptional activities causes a partition of expressed and non-expressed genes., Dimitriadis GJ., Biochem J. May 1, 1980; 187 (2): 467-77.


Recombination of a eukaryotic DNA in bacteria., Carroll D., Gene. August 1, 1980; 10 (3): 273-81.


Cell movements in Xenopus eye development., Holt C., Nature. October 30, 1980; 287 (5785): 850-2.


Identification in Xenopus laevis of a class of oocyte-specific proteins bound to messenger RNA., Darnbrough CH., Eur J Biochem. January 1, 1981; 113 (3): 415-24.


Substrate pathways demonstrated by transplanted Mauthner axons., Katz MJ., J Comp Neurol. February 1, 1981; 195 (4): 627-41.

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