Initial formation of zebrafish brain ventricles occurs independently of circulation and requires the nagie oko and snakehead/atp1a1a.1 gene products
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[1] H. Tsai,et al. Na,K-ATPase is essential for embryonic heart development in the zebrafish , 2003, Development.
[2] J. A. Moro,et al. Disruption of proteoglycans in neural tube fluid by β‐D‐xyloside alters brain enlargement in chick embryos , 1998, The Anatomical record.
[3] U. Tepass. Adherens junctions: new insight into assembly, modulation and function. , 2002, BioEssays : news and reviews in molecular, cellular and developmental biology.
[4] STUDIES ON THE CEREBROSPINAL FLUID , 1920 .
[5] V. Prince,et al. Constructing the hindbrain: Insights from the zebrafish , 2002, Developmental dynamics : an official publication of the American Association of Anatomists.
[6] M. Pollay,et al. Secretion of cerebrospinal fluid by the ventricular ependyma of the rabbit. , 1967, The American journal of physiology.
[7] N. Perrimon,et al. Drosophila Stardust interacts with Crumbs to control polarity of epithelia but not neuroblasts , 2001, Nature.
[8] B. Gruskin. Studies in Cerebrospinal Fluid. I , 1931 .
[9] J. Bruni. Ependymal development, proliferation, and functions: A review , 1998, Microscopy research and technique.
[10] J. Malicki,et al. Nagie oko, encoding a MAGUK-family protein, is essential for cellular patterning of the retina , 2002, Nature Genetics.
[11] C. Nüsslein-Volhard,et al. Mutations affecting neurogenesis and brain morphology in the zebrafish, Danio rerio. , 1996, Development.
[12] M. D. Del Bigio,et al. Human neonatal hydrocephalus. An electron microscopic study of the periventricular tissue. , 1985, Journal of neurosurgery.
[13] Didier Y. R. Stainier,et al. Cardiac troponin T is essential in sarcomere assembly and cardiac contractility , 2002, Nature Genetics.
[14] Keisuke Kuida,et al. Decreased apoptosis in the brain and premature lethality in CPP32-deficient mice , 1996, Nature.
[15] E. Wright,et al. Bicarbonate transport across the frog choroid plexus and its control by cyclic nucleotides. , 1983, The Journal of physiology.
[16] G. Blanco,et al. Isozymes of the Na-K-ATPase: heterogeneity in structure, diversity in function. , 1998, American journal of physiology. Renal physiology.
[17] I. Naruse,et al. Apoptotic degeneration in the arhinencephalic brain of the mouse mutant Pdn/Pdn. , 1994, Brain research. Developmental brain research.
[18] J. Postlethwait,et al. Na,K-ATPase alpha and beta subunit genes exhibit unique expression patterns during zebrafish embryogenesis. , 2002, Mechanisms of development.
[19] A. Mccarthy. Development , 1996, Current Opinion in Neurobiology.
[20] H. Müller,et al. Molecular networks controlling epithelial cell polarity in development , 2003, Mechanisms of Development.
[21] B. Vígh,et al. Actual problems of the cerebrospinal fluid‐contacting neurons , 1998, Microscopy research and technique.
[22] J A Dent,et al. A whole-mount immunocytochemical analysis of the expression of the intermediate filament protein vimentin in Xenopus. , 1989, Development.
[23] Jaleel A. Miyan,et al. Defective cell cycle control underlies abnormal cortical development in the hydrocephalic Texas rat. , 2003, Brain : a journal of neurology.
[24] T. Speake,et al. Mechanisms of CSF secretion by the choroid plexus , 2001, Microscopy research and technique.
[25] T. Hurd,et al. Direct interaction of two polarity complexes implicated in epithelial tight junction assembly , 2003, Nature Cell Biology.
[26] H. Rekate. Recent advances in the understanding and treatment of hydrocephalus. , 1997, Seminars in pediatric neurology.
[27] K. Takeyasu,et al. Ouabain-sensitive (Na+ + K+)-ATPase activity expressed in mouse L cells by transfection with DNA encoding the alpha-subunit of an avian sodium pump. , 1988, The Journal of biological chemistry.
[28] E. Knust,et al. Composition and Formation of Intercellular Junctions in Epithelial Cells , 2002, Science.
[29] Hazel Sive,et al. Strategies of vertebrate neurulation and a re-evaluation of teleost neural tube formation , 2004, Mechanisms of Development.
[30] J. Kaplan,et al. Biochemistry of Na,K-ATPase. , 2002, Annual review of biochemistry.
[31] A. Therien,et al. Mechanisms of sodium pump regulation. , 2000, American journal of physiology. Cell physiology.
[32] S. Davies,et al. Molecular mechanisms of cerebrospinal fluid production , 2004, Neuroscience.
[33] A. Schier,et al. Mutations affecting the development of the embryonic zebrafish brain. , 1996, Development.
[34] T. Yager,et al. Effect of inhibitors of DNA replication on early zebrafish embryos: evidence for coordinate activation of multiple intrinsic cell-cycle checkpoints at the mid-blastula transition , 1997, Zygote.
[35] S. Yuan,et al. The small heart Mutation Reveals Novel Roles of Na+/K+-ATPase in Maintaining Ventricular Cardiomyocyte Morphology and Viability in Zebrafish , 2004, Circulation research.
[36] M. S. Cooper,et al. Confocal microscopic analysis of morphogenetic movements. , 1999, Methods in cell biology.
[37] J. Smith,et al. Spatial and temporal patterns of cell division during early Xenopus embryogenesis. , 2001, Developmental biology.
[38] Jaleel A. Miyan,et al. Development of the brain: a vital role for cerebrospinal fluid. , 2003, Canadian journal of physiology and pharmacology.
[39] D. Stainier,et al. A Cellular Framework for Gut-Looping Morphogenesis in Zebrafish , 2003, Science.
[40] S. Fraser,et al. Direct imaging of in vivo neuronal migration in the developing cerebellum , 2001, Current Biology.
[41] Nancy Hopkins,et al. Identification of 315 genes essential for early zebrafish development. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[42] M. Matsui,et al. Ventricular enlargement in schizophrenia spectrum patients with prodromal symptoms of obsessive–compulsive disorder , 2000, Psychiatry Research: Neuroimaging.
[43] A. Schier,et al. Early development of the zebrafish pronephros and analysis of mutations affecting pronephric function. , 1998, Development.
[44] W. Harris,et al. Neuronal determination without cell division in xenopus embryos , 1991, Neuron.
[45] W. Driever,et al. Mutations in the zebrafish unmask shared regulatory pathways controlling the development of catecholaminergic neurons. , 1999, Developmental biology.
[46] C. Allis,et al. Mitosis-specific phosphorylation of histone H3 initiates primarily within pericentromeric heterochromatin during G2 and spreads in an ordered fashion coincident with mitotic chromosome condensation , 1997, Chromosoma.
[47] J. A. Moro,et al. Involvement of Sulfated Proteoglycans in Embryonic Brain Expansion at Earliest Stages of Development in Rat Embryos , 1999, Cells Tissues Organs.
[48] C. Kimmel,et al. Stages of embryonic development of the zebrafish , 1995, Developmental dynamics : an official publication of the American Association of Anatomists.
[49] M. Itoh,et al. Occludin: a novel integral membrane protein localizing at tight junctions , 1993, The Journal of cell biology.
[50] R. Deane,et al. The effect of vascular perfusion of the choroid plexus on the secretion of cerebrospinal fluid [proceedings]. , 1979, The Journal of physiology.
[51] Martina Schneider,et al. Drosophila Stardust is a partner of Crumbs in the control of epithelial cell polarity , 2001, Nature.
[52] Mi Hye Song,et al. The cfy mutation disrupts cell divisions in a stage-dependent manner in zebrafish embryos. , 2004, Developmental biology.
[53] N. Minshew,et al. Brain Volume in Autism , 2001, Journal of child neurology.
[54] E. Wright,et al. Transport processes in the formation of the cerebrospinal fluid. , 1978, Reviews of physiology, biochemistry and pharmacology.
[55] A. Caraty,et al. Measurement and possible function of GnRH in cerebrospinal fluid in ewes. , 2002, Reproduction (Cambridge, England) Supplement.
[56] Michael L. Levitan,et al. Brain expansion in the chick embryo initiated by experimentally produced occlusion of the spinal neurocoel , 2002, The Anatomical record.
[57] K. Sweadner. Isozymes of the Na+/K+-ATPase. , 1989, Biochimica et biophysica acta.
[58] D. Rall,et al. Cerebrospinal Fluid Production by the Choroid Plexus and Brain , 1971, Science.
[59] B. Thisse,et al. Differential expression of Na,K-ATPase alpha and beta subunit genes in the developing zebrafish inner ear. , 2003, Developmental dynamics : an official publication of the American Association of Anatomists.
[60] M. E. Desmond. Reduced number of brain cells in so‐called neural overgrowth , 1985, The Anatomical record.
[61] A. Nagafuchi. Molecular architecture of adherens junctions. , 2001, Current opinion in cell biology.
[62] T. Ohta,et al. Immunohistochemical localization of Na+, K+-ATPase in the choroid plexus , 1984, Brain Research.
[63] B. Thisse,et al. Differential expression of Na,K‐ATPase α and β subunit genes in the developing zebrafish inner ear , 2003 .
[64] M. Itoh,et al. Neurogenic phenotype of mind bomb mutants leads to severe patterning defects in the zebrafish hindbrain , 2003, Developmental dynamics : an official publication of the American Association of Anatomists.
[65] J. McAllister,et al. Neonatal hydrocephalus: Mechanisms and consequences , 1998 .
[66] M. E. Desmond,et al. Embryonic brain enlargement requires cerebrospinal fluid pressure. , 1977, Developmental biology.
[67] M. Westerfield,et al. Combined haploid and insertional mutation screen in the zebrafish , 2004, Genesis.