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Modified thiocarbohydrazide procedure for scanning electron microscopy: routine use for normal, pathological, or experimental tissues., Malick LE, Wilson RB., Stain Technol. July 1, 1975; 50 (4): 265-9.


Myogenesis in the trunk and leg during development of the tadpole of Xenopus laevis (Daudin 1802)., Muntz L., J Embryol Exp Morphol. June 1, 1975; 33 (3): 757-74.


Mitochondrial pleiomorphism in sustentacular cells of Xenopus laevis., Kalt MR., Anat Rec. May 1, 1975; 182 (1): 53-60.


Mitosis in presumptive primordial germ cells in post-blastula embryos of Xenopus laevis., Dziadek M, Dixon KE., J Exp Zool. May 1, 1975; 192 (2): 285-91.


Microtubule protein synthesis during oogenesis and early embryogenesis in Xenopus laevis., Pestell RQ., Biochem J. March 1, 1975; 145 (3): 527-34.


Membrane properties during myotome formation in tadpoles of Xenopus laevis and Bombina bombina., Blackshaw SE, Warner AE., J Physiol. March 1, 1975; 246 (2): 73P-74P.


Mechanisms for the excitation of "free nerve endings"., Roberts A., Nature. February 27, 1975; 253 (5494): 737-8.


Morphological changes of the surface of the egg of Xenopus laevis in the course of development. I. Fertilization and early cleavage., Monroy A, Baccetti B., J Ultrastruct Res. February 1, 1975; 50 (2): 131-42.


Microfilaments in the external surface layer of the early amphibian embryo., Perry MM., J Embryol Exp Morphol. February 1, 1975; 33 (1): 127-46.


Membrane conductance changes in single nodes of Ranvier, measured by laser-induced temperature-jump experiments., Moore LE., Biochim Biophys Acta. January 14, 1975; 375 (1): 115-23.


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


Messenger activity of nuclear RNA of frog embryos., Flickinger RA, Rollins JW., Exp Cell Res. December 1, 1974; 89 (2): 402-4.


Metabolism of 5S RNA in the absence of ribosome production., Miller L., Cell. November 1, 1974; 3 (3): 275-81.


Modification of culture medium for Xenopus embryonic cells. I. Effects of albumin and other proteins., Nakahashi T, Yamana K., Exp Cell Res. October 1, 1974; 88 (2): 241-6.


Major DNA polymerases common to different Xenopus laevis cell types., Tatò F, Gandini DA, Tocchini-Valentini GP., Proc Natl Acad Sci U S A. September 1, 1974; 71 (9): 3706-10.


Mechanical properties of muscle spindles in Xenopus laevis., Smith RS, Koles ZJ., Kybernetik. June 21, 1974; 15 (2): 91-8.


Mitochondrial DNA in Xenopus laevis oocytes. I. Displacement loop occurrence., Hallberg RL., Dev Biol. June 1, 1974; 38 (2): 346-55.


Metabolism of exogenous 4-14C-progesterone during early development of Xenopus laevis., Antila E, Teräväinen T., Differentiation. June 1, 1974; 2 (3): 137-41.


Molecular biology in a living cell., Gurdon JB., Nature. April 26, 1974; 248 (5451): 772-6.


Microspectrofluorometric identification of formaldehyde induced fluorescence in hypothalamic nuclei of Xenopus laevis tadpoles., Terlou M, van Kooten H., Z Zellforsch Mikrosk Anat. March 21, 1974; 147 (4): 529-36.


Multiple forms of deoxyribonucleic acid-dependent ribonucleic acid polymerase in Xenopus laevis. Levels of activity during oocyte and embryonic development., Roeder RG., J Biol Chem. January 10, 1974; 249 (1): 249-56.


Multiple forms of deoxyribonucleic acid-dependent ribonucleic acid polymerase in Xenopus laevis. Isolation and partial characterization., Roeder RG., J Biol Chem. January 10, 1974; 249 (1): 241-8.


Molecular basis of hormonal action., Segal SJ, Ige R, Burgos M., Basic Life Sci. January 1, 1974; 4 (PART A): 99-112.


mRNA for H and L chains of immunoglobulin: specific control of H-chain production., Stevens RH, Williamson AR., Contemp Top Mol Immunol. January 1, 1974; 3 85-110.


Morphological and functional maturation of the thyroid during early development of anuran larvae., Hanaoka Y, Koya SM, Kondo Y, Kobayashi Y, Yamamoto K., Gen Comp Endocrinol. December 1, 1973; 21 (3): 410-23.


Message stability in injected frog oocytes: long life of mammalian alpha and beta globin messages., Gurdon JB, Lingrel JB, Marbaix G., J Mol Biol. November 5, 1973; 80 (3): 539-51.


Microtubule and neurofilament densities in amphibian spinal root nerve fibers: relationship to axoplasmic transport., Smith RS., Can J Physiol Pharmacol. November 1, 1973; 51 (11): 798-806.


Mammalian cells in Xenopus eggs., Brun R., Nat New Biol. May 2, 1973; 243 (122): 26-7.


Morphogenesis and regulation in spite of continued mitotic inhibition in Xenopus embryos., Cooke J., Nature. March 2, 1973; 242 (5392): 55-7.


Muscle and central nervous system metamorphosis. Histology and autoradiography., den Jager Hartog WA, de Jong JM, Vianney de Jong JM, Schoot JB, van der., Arch Neurol. March 1, 1973; 28 (3): 191-4.


Microinjection of rabbit hemoglobin messenger RNA into amphibian oocytes and embryos., Brachet J, Huez G, Hubert E., Proc Natl Acad Sci U S A. February 1, 1973; 70 (2): 543-7.


Mycobacteria and lymphoreticular tumours in Xenopus laevis, the South African clawed toad. II. Have mycobacteria a role in tumour initiation and development?, Clothier RH, Balls M., Oncology. January 1, 1973; 28 (5): 458-80.


Mycobacteria and lymphoreticular tumours in Xenopus laevis, the South African clawed toad. I. Isolation, characterization and pathogenicity for Xenopus of M. marinum isolated from lymphoreticular tumour cells., Clothier RH, Balls M., Oncology. January 1, 1973; 28 (5): 445-57.


Maternal and cytoplasmic inheritance of mitochondrial DNA in Xenopus., Dawid IB, Blackler AW., Dev Biol. October 1, 1972; 29 (2): 152-61.


Meiosis in early amphibian oogenesis: synthesis and location of proteins., Ficq A., Exp Cell Res. July 1, 1972; 73 (1): 242-8.


Messenger RNA. The missing poly A tail., , Nature. June 30, 1972; 237 (5357): 486-7.


Monosynaptic testing of synaptic efficiency and motoneurone excitability., Loots JM, Meij HS., S Afr Med J. February 26, 1972; 46 (9): 203-7.


Molecular aspects of chromatin elimination in Ascaris lumbricoides., Tobler H, Smith KD, Ursprung H., Dev Biol. February 1, 1972; 27 (2): 190-203.


Mitochondrial RNA in Xenopus laevis. II. Molecular weights and other physical properties of mitochondrial ribosomal and 4 s RNA., Dawid IB, Chase JW., J Mol Biol. January 28, 1972; 63 (2): 217-31.


Mitochondrial RNA In Xenopus laevis. I. The expression of the mitochondrial genome., Dawid IB., J Mol Biol. January 28, 1972; 63 (2): 201-16.


Myelinated nerve fibers in Xenopus tadpoles: in vivo observations and fine structure., Webster Hde F, Billings SM., J Neuropathol Exp Neurol. January 1, 1972; 31 (1): 102-12.


Mechanisms of morphogenesis: the embryonic neural tube., Schroeder TE., Int J Neurosci. November 1, 1971; 2 (4): 183-97.


Molecular genetics and developmental biology., Halverson HO., Dev Biol. November 1, 1971; 26 (3): 503-5.


Myelin stability and turnover. Mechanical aspects., , Neurosci Res Program Bull. September 1, 1971; 9 (4): 482-5.


Melatonin localization in the eyes of larval Xenopus., Baker PC, Hoff KM., Comp Biochem Physiol A Comp Physiol. August 1, 1971; 39 (4): 879-81.


Melanophore-stimulating hormone-melatonin antagonism in relation to colour change in Xenopus laevis., Dierst-Davies K, Landgrebe FW, Mitchell GM., J Endocrinol. April 1, 1971; 49 (4): 573-80.


Multiple forms of monoamine oxidase in developing Xenopus., Baker PC., Experientia. March 15, 1971; 27 (3): 245-6.


Microelectrophoresis of early amphibian embryonic cells., MacMurdo-Harris H, Zalik SE., Dev Biol. March 1, 1971; 24 (3): 335-47.


Melanogenesis in amphibians. 3. The buoyant density of oocyte and larval xenopus laevis melanosomes and the isolation of oocyte melanosomes from the eyes of PTU-treated larvae., Eppig JJ., J Exp Zool. December 1, 1970; 175 (4): 467-75.


Mutations affecting the size of the nucleolus in Xenopus laevis., Miller L, Gurdon JB., Nature. September 12, 1970; 227 (5263): 1108-10.

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