Search Results - "Filippi, Alida"

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  1. 1

    vglut2 and gad expression reveal distinct patterns of dual GABAergic versus glutamatergic cotransmitter phenotypes of dopaminergic and noradrenergic neurons in the zebrafish brain by Filippi, Alida, Mueller, Thomas, Driever, Wolfgang

    Published in Journal of comparative neurology (1911) (15-06-2014)
    “…ABSTRACT Throughout the vertebrate lineage, dopaminergic neurons form important neuromodulatory systems that influence motor behavior, mood, cognition, and…”
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  2. 2

    Expression of the paralogous tyrosine hydroxylase encoding genes th1 and th2 reveals the full complement of dopaminergic and noradrenergic neurons in zebrafish larval and juvenile brain by Filippi, Alida, Mahler, Julia, Schweitzer, Jörn, Driever, Wolfgang

    Published in Journal of comparative neurology (1911) (15-02-2010)
    “…The development of dopaminergic and noradrenergic neurons has received much attention based on their modulatory effect on many behavioral circuits and their…”
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  3. 3

    Analysis of transcriptional codes for zebrafish dopaminergic neurons reveals essential functions of Arx and Isl1 in prethalamic dopaminergic neuron development by Filippi, Alida, Jainok, Chamaiphorn, Driever, Wolfgang

    Published in Developmental biology (01-09-2012)
    “…Distinct groups of dopaminergic neurons develop at defined anatomical sites in the brain to modulate function of a large diversity of local and far-ranging…”
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  4. 4

    ViBE-Z: a framework for 3D virtual colocalization analysis in zebrafish larval brains by Ronneberger, Olaf, Liu, Kun, Rath, Meta, Rueβ, Dominik, Mueller, Thomas, Skibbe, Henrik, Drayer, Benjamin, Schmidt, Thorsten, Filippi, Alida, Nitschke, Roland, Brox, Thomas, Burkhardt, Hans, Driever, Wolfgang

    Published in Nature methods (01-07-2012)
    “…An imaging and registration framework called Virtual Brain Explorer for Zebrafish (ViBE-Z) allows mapping of gene expression patterns and anatomical structures…”
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  5. 5

    DeltaA/DeltaD regulate multiple and temporally distinct phases of notch signaling during dopaminergic neurogenesis in zebrafish by Mahler, Julia, Filippi, Alida, Driever, Wolfgang

    Published in The Journal of neuroscience (08-12-2010)
    “…Dopaminergic neurons develop at distinct anatomical sites to form some of the major neuromodulatory systems in the vertebrate brain. Despite their relevance in…”
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  6. 6

    Orthopedia transcription factor otpa and otpb paralogous genes function during dopaminergic and neuroendocrine cell specification in larval zebrafish by Fernandes, António M, Beddows, Erin, Filippi, Alida, Driever, Wolfgang

    Published in PloS one (20-09-2013)
    “…The homeodomain transcription factor Orthopedia (Otp) is an important regulator for specification of defined subsets of neuroendocrine cells and dopaminergic…”
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  7. 7

    Dopaminergic and noradrenergic circuit development in zebrafish by Schweitzer, Jörn, Löhr, Heiko, Filippi, Alida, Driever, Wolfgang

    Published in Developmental neurobiology (Hoboken, N.J.) (01-03-2012)
    “…Dopaminergic and noradrenergic neurons constitute some of the major far projecting systems in the vertebrate brain and spinal cord that modulate the activity…”
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  8. 8

    Evolutionary conserved role of ptf1a in the specification of exocrine pancreatic fates by Zecchin, Elisabetta, Mavropoulos, Anastasia, Devos, Nathalie, Filippi, Alida, Tiso, Natascia, Meyer, Dirk, Peers, Bernard, Bortolussi, Marino, Argenton, Francesco

    Published in Developmental biology (01-04-2004)
    “…We have characterized and mapped the zebrafish ptf1a gene, analyzed its embryonic expression, and studied its role in pancreas development. In situ…”
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  9. 9

    The Basic Helix-Loop-Helix olig3 Establishes the Neural Plate Boundary of the Trunk and Is Necessary for Development of the Dorsal Spinal Cord by Filippi, Alida, Tiso, Natascia, Deflorian, Gianluca, Zecchin, Elisabetta, Bortolussi, Marino, Argenton, Francesco, Dawid, Igor B.

    “…olig genes encode a previously unrecognized group of vertebrate-specific basic helix-loop-helix transcription factors. As shown in mice, chickens, and…”
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  10. 10

    Differential Roles of Transcriptional Mediator Complex Subunits Crsp34/Med27, Crsp150/Med14 and Trap100/Med24 During Zebrafish Retinal Development by Durr, Katrin, Holzschuh, Jochen, Filippi, Alida, Ettl, Anne-Kathrin, Ryu, Soojin, Shepherd, Iain T, Driever, Wolfgang

    Published in Genetics (Austin) (01-10-2006)
    “…The transcriptional mediator complex has emerged as an important component of transcriptional regulation, yet it is largely unknown whether its subunits have…”
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  11. 11

    Expression and function of nr4a2, lmx1b, and pitx3in zebrafish dopaminergic and noradrenergic neuronal development by Filippi, Alida, Dürr, Katrin, Ryu, Soojin, Willaredt, Marc, Holzschuh, Jochen, Driever, Wolfgang

    Published in BMC developmental biology (05-12-2007)
    “…Abstract Background: Dopaminergic neurons form in diverse areas of the vertebrate di- and mesencephalon to constitute several major neuromodulatory systems…”
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  12. 12

    Neurologic and ocular phenotype in Pitt–Hopkins syndrome and a zebrafish model by Brockschmidt, Antje, Filippi, Alida, Charbel Issa, Peter, Nelles, Michael, Urbach, Horst, Eter, Nicole, Driever, Wolfgang, Weber, Ruthild G.

    Published in Human genetics (01-11-2011)
    “…In this study, we performed an in-depth analysis of the neurologic and ophthalmologic phenotype in a patient with Pitt–Hopkins syndrome (PTHS), a disorder…”
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  13. 13

    Expression and function of nr4a2, lmx1b, and pitx3 in zebrafish dopaminergic and noradrenergic neuronal development by Filippi, Alida, Dürr, Katrin, Ryu, Soojin, Willaredt, Marc, Holzschuh, Jochen, Driever, Wolfgang

    Published in BMC developmental biology (05-12-2007)
    “…Dopaminergic neurons form in diverse areas of the vertebrate di- and mesencephalon to constitute several major neuromodulatory systems. While much is known…”
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  14. 14

    Differential expression and regulation of olig genes in zebrafish by Tiso, Natascia, Filippi, Alida, Benato, Francesca, Negrisolo, Enrico, Modena, Nicola, Vaccari, Enrico, Driever, Wolfgang, Argenton, Francesco

    Published in Journal of comparative neurology (1911) (20-07-2009)
    “…The members of the Olig gene family encode for basic helix‐loop‐helix (bHLH) transcription factors involved in neural cell type specification. Three Olig genes…”
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  15. 15

    Erratum: ViBE-Z: a framework for 3D virtual colocalization analysis in zebrafish larval brains by Ronneberger, Olaf, Liu, Kun, Rath, Meta, Rueß, Dominik, Mueller, Thomas, Skibbe, Henrik, Drayer, Benjamin, Schmidt, Thorsten, Filippi, Alida, Nitschke, Roland, Brox, Thomas, Burkhardt, Hans, Driever, Wolfgang

    Published in Nature methods (01-10-2012)
    “…Nat. Methods 9, 735–742 (2012); published online 17 June 2012; corrected after print 9 July 2012. In the version of this article initially published, two items…”
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  16. 16

    Orthopedia Transcription Factor otpa and otpb Paralogous Genes Function during Dopaminergic and Neuroendocrine Cell Specification in Larval Zebrafish: e75002 by Fernandes, Antonio M, Beddows, Erin, Filippi, Alida, Driever, Wolfgang

    Published in PloS one (01-09-2013)
    “…The homeodomain transcription factor Orthopedia (Otp) is an important regulator for specification of defined subsets of neuroendocrine cells and dopaminergic…”
    Get full text
    Journal Article
  17. 17

    The basic helix-loop-helix olig3 establishes the nerual plate boundary of the trunk and is necessary for development of the dorsal spinal cord by Filippi, Alida, Tiso, Natascia, Deflorian, Gianluca, Zecchin, Elisabetta

    “…olig genes encode a previously unrecognized group of vertebrate-specific basic helix-loop-helix transcription factors. As shown in mice, chickens, and…”
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    Journal Article
  18. 18
  19. 19

    BMP signalling regulates anteroposterior endoderm patterning in zebrafish by Tiso, Natascia, Filippi, Alida, Pauls, Stefan, Bortolussi, Marino, Argenton, Francesco

    Published in Mechanisms of development (01-10-2002)
    “…In vertebrates, the embryonic dorsoventral asymmetry is regulated by the bone morphogenetic proteins (Bmp) activity gradient. In the present study, we have…”
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