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1.
Cohen M.W. Neuritic deposition of agrin on culture substrate: implications for nerve-muscle synaptogenesis // J. Neurosci., 1994. Vol. 14, N 5.-С.3293-3303

2.
Behavioural and biochemical investigations of the influence of altered gravity of the CNS of aquatic vertebrates during ontogeny // World Space Congr.: 43rd Congr. Int. Astronaut. Fed. (IAF) and 29th Plen. Meet. Comm. Space Res. (COSPAR), Washington. D. C., 28 Aug. - 5 Sept., 1992. -Washington (D. C.), 1992.-С.534

3.
de Boer-van Huizen R. The use of tracers in explants of the developing reticular formation and spinal cord of Xenopus laevis // Eur. J. Morphol., 1994. Vol. 32, N 2-4.-С.267-270

4.
Birkhofer M. Sensory activity in the telencephalon of the clawed toad, Xenopus laevis // Eur. J. Morphol., 1994. Vol. 32, N 2-4.-С.262-266

5.
Ogawa Immunohistochemical studies on the development of the hypothalamo-hypophysial system in Xenopus laevis // Anat. Rec., 1995. Vol. 241, N 2.-С.244-254

6.
Zheng James Q. Long-range signaling in growing neurons after local elevation of cyclic AMP-dependent activity // J. Cell Biol., 1994. Vol. 127, N 6.-С.1693-1701

7.
Photoreceptor outer segment development in Xenopus laevis. Influence of the pigment epithelium // Dev. Biol., 1994. Vol. 162, N 1.-С.169-180

8.
Functional receptor in Xenopus oocyte for U-37883A, a novel ATP-sensitive K channel blocker // Hypertension, 1994. Vol. 24, N 3.-С.395

9.
Suzuki Bone morphogenetic protein acts as a ventral mesoderm modifier in early Xenopus embryos // Dev., Growth and Differ., 1995. Vol. 37, N 5.-С.581-588

10.
Schild InsP[3] causes an increase in apical[Ca{2+}][i] by activating two distinct current components in vertebrate olfactory receptor cells // J. Neurophysiol., 1995. Vol. 73, N 2.-С.862-866

11.
Moroki E. Malformation of Xenopus embryos treated with cyclic GMP during the period from the start of gastrulation to the end of neurulation // Zool. Sci., 1995. Vol. 12, N 6 Suppl..-С.76

12.
Nagano T. Does dorsal-mesoderm-inducing signal reach mesoderm forming region during cleavage stages in xenopus? // Zool. Sci., 1995. Vol. 12, N 6 Suppl..-С.76

13.
Nagano T. Does dorsal-mesoderm-inducing signal reach mesoderm forming region during cleavage stages in xenopus? // Zool. Sci., 1995. Vol. 12, N 6 Suppl..-С.76

14.
Moroki E. Malformation of Xenopus embryos treated with cyclic GMP during the period from the start of gastrulation to the end of neurulation // Zool. Sci., 1995. Vol. 12, N 6 Suppl..-С.76

15.
Rivera-Bennetts Relationship between ectopic germinal vesicle breakdown in Xenopus oocytes and dorsal development of the embryo // Dev., Growth and Differ., 1995. Vol. 37, N 6.-С.631-639

16.
Rivera-Bennetts Relationship between ectopic germinal vesicle breakdown in Xenopus oocytes and dorsal development of the embryo // Dev., Growth and Differ., 1995. Vol. 37, N 6.-С.631-639

17.
Richter Morphological and electrophysiological properties of centrifuged stratified Xenopus oocytes // Biol. Cell, 1995. Vol. 84, N 3.-С.129-138

18.
Liu Developmental mechanisms of estradiol-action on gonadal differentiation in the African clawed frog (Xenopus laevis) // Amer. Zool., 1995. Vol. 35, N 5.-С.7

19.
Liu Developmental mechanisms of estradiol-action on gonadal differentiation in the African clawed frog (Xenopus laevis) // Amer. Zool., 1995. Vol. 35, N 5.-С.7

20.
Schwermetall-induzierte Hemmung des humanen - in Xenopus-Oozyten exprimierten - NaPi-Kotransporters // Nieren- und Hochdruckkrankh., 1995. Vol. 24, N 9.-С.463

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