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  1. Nov 2016
    1. Cocaine- and amphetamine-regulated transcript peptide (CART) in the brain of zebra finch, Taeniopygia guttata: Organization, interaction with neuropeptide Y, and response to changes in energy status
    1. Transgenic Mice Overexpressing Amyloid Precursor Protein Exhibit Early Metabolic Deficits and a Pathologically Low Leptin State Associated with Hypothalamic Dysfunction in Arcuate Neuropeptide Y Neurons
    1. Ganglioside contained in the neuronal tissue-enriched acidic protein of 22 kDa (NAP-22) fraction prepared from the detergent-resistant membrane microdomain of rat brain inhibits the phosphatase activity of calcineurin
    1. Sociality and the telencephalic distribution of corticotrophin-releasing factor, urocortin 3, and binding sites for CRF type 1 and type 2 receptors: A comparative study of eusocial naked mole-rats and solitary Cape mole-rats
    1. Colocalization of allatotropin and tachykinin-related peptides with classical transmitters in physiologically distinct subtypes of olfactory local interneurons in the cockroach (Periplaneta americana)
    1. The isthmic nuclei providing parallel feedback connections to the avian tectum have different neurochemical identities: Expression of glutamatergic and cholinergic markers in the chick (Gallus gallus)
    1. ystems > Journal of Comparative Neurology > Vol 523 Issue 8 > Abstract JOURNAL TOOLS Get New Content Alerts Get RSS feed Save to My Profile Get Sample Copy Recommend to Your Librarian JOURNAL MENUJournal HomeFIND ISSUESCurrent IssueAll Issues FIND ARTICLES Early ViewAccepted ArticlesMost AccessedEditors' Choice GET ACCESS Subscribe / Renew FOR CONTRIBUTORS For RefereesOpen AccessAuthor GuidelinesSubmit an Article ABOUT THIS JOURNAL NewsOverviewEditorial BoardPermissionsAdvertiseContact SPECIAL FEATURES Sign up for JCN e-alertsNew Vision StatementPatrick Hof BiographyCliff Saper's Antibody editorialEndocrine Disruptors Policy EditorialPromoting Research Resource Identification at JCNJCN Antibody DatabaseThe Fine Structure of the Aging BrainParkinson's Disease Virtual IssueVirtual Issue on Systems NeuroscienceSpecial Issue: Stem CellsMushroom BodiesCowan & Palay AwardsCover GalleryOther ResourcesWiley Job NetworkJobs var kruxDart = ''; if(window.Krux){ if(window.Krux.dfppKeyValues){ kruxDart = window.Krux.dfppKeyValues; } } document.write('\x3cscript type="text/javascript" src="http://ad.uk.doubleclick.net/adj/wly.neurosci_000087/j-comparative-neuro_CNE;' + kruxDart + ';gs_cat=' + gs_channels + ';tile=2;pos=1;sz=160x600,160x320,160x160,120x600;doi=101002cne23738;ord=2360313?"\x3e\x3c/script\x3e'); <a href="http://wiley.grapeshot.co.uk/main/redirect.cgi?target=http://ad.uk.doubleclick.net/jump/wly.neurosci_000087/j-comparative-neuro_CNE;tile=2;pos=1;sz=160x600,160x320,160x160,120x600;doi=101002cne23738;ord=2360313?" target="_blank"> <img src="http://wiley.grapeshot.co.uk/main/redirect.cgi?target=http://ad.uk.doubleclick.net/ad/wly.neurosci_000087/j-comparative-neuro_CNE;tile=2;pos=1;sz=160x600,160x320,160x160,120x600;doi=101002cne23738;ord=2360313?" border="0" alt="Advertisement" /> </a> var kruxDart = ''; if(window.Krux){ if(window.Krux.dfppKeyValues){ kruxDart = window.Krux.dfppKeyValues; } } document.write('\x3cscript type="text/javascript" src="http://ad.uk.doubleclick.net/adj/wly.neurosci_000087/j-comparative-neuro_CNE;' + kruxDart + ';gs_cat=' + gs_channels + ';tile=4;pos=1;sz=160X700;doi=101002cne23738;ord=2360313?"\x3e\x3c/script\x3e'); <a href="http://wiley.grapeshot.co.uk/main/redirect.cgi?target=http://ad.uk.doubleclick.net/jump/wly.neurosci_000087/j-comparative-neuro_CNE;tile=4;pos=1;sz=160X700;doi=101002cne23738;ord=2360313?" target="_blank"> <img src="http://wiley.grapeshot.co.uk/main/redirect.cgi?target=http://ad.uk.doubleclick.net/ad/wly.neurosci_000087/j-comparative-neuro_CNE;tile=4;pos=1;sz=160X700;doi=101002cne23738;ord=2360313?" border="0" alt="Advertisement" /> </a> Research ArticleYou have full text access to this contentEfferent innervation of turtle semicircular canal cristae: Comparisons with bird and mouse
    1. Down-Regulation of KCC2 Expression and Phosphorylation in Motoneurons, and Increases the Number of in Primary Afferent Projections to Motoneurons in Mice with Post-Stroke Spasticity
    1. Phosphorylation of Synaptic GTPase-activating Protein (synGAP) by Ca2+/Calmodulin-dependent Protein Kinase II (CaMKII) and Cyclin-dependent Kinase 5 (CDK5) Alters the Ratio of Its GAP Activity toward Ras and Rap GTPases*
    1. ystems > Journal of Comparative Neurology > Vol 523 Issue 6 > Abstract JOURNAL TOOLS Get New Content Alerts Get RSS feed Save to My Profile Get Sample Copy Recommend to Your Librarian JOURNAL MENUJournal HomeFIND ISSUESCurrent IssueAll Issues FIND ARTICLES Early ViewAccepted ArticlesMost AccessedEditors' Choice GET ACCESS Subscribe / Renew FOR CONTRIBUTORS For RefereesOpen AccessAuthor GuidelinesSubmit an Article ABOUT THIS JOURNAL NewsOverviewEditorial BoardPermissionsAdvertiseContact SPECIAL FEATURES Sign up for JCN e-alertsNew Vision StatementPatrick Hof BiographyCliff Saper's Antibody editorialEndocrine Disruptors Policy EditorialPromoting Research Resource Identification at JCNJCN Antibody DatabaseThe Fine Structure of the Aging BrainParkinson's Disease Virtual IssueVirtual Issue on Systems NeuroscienceSpecial Issue: Stem CellsMushroom BodiesCowan & Palay AwardsCover GalleryOther ResourcesWiley Job NetworkJobs var kruxDart = ''; if(window.Krux){ if(window.Krux.dfppKeyValues){ kruxDart = window.Krux.dfppKeyValues; } } document.write('\x3cscript type="text/javascript" src="http://ad.uk.doubleclick.net/adj/wly.neurosci_000087/j-comparative-neuro_CNE;' + kruxDart + ';gs_cat=' + gs_channels + ';tile=2;pos=1;sz=160x600,160x320,160x160,120x600;doi=101002cne23724;ord=1511879603?"\x3e\x3c/script\x3e'); <a href="http://wiley.grapeshot.co.uk/main/redirect.cgi?target=http://ad.uk.doubleclick.net/jump/wly.neurosci_000087/j-comparative-neuro_CNE;tile=2;pos=1;sz=160x600,160x320,160x160,120x600;doi=101002cne23724;ord=1511879603?" target="_blank"> <img src="http://wiley.grapeshot.co.uk/main/redirect.cgi?target=http://ad.uk.doubleclick.net/ad/wly.neurosci_000087/j-comparative-neuro_CNE;tile=2;pos=1;sz=160x600,160x320,160x160,120x600;doi=101002cne23724;ord=1511879603?" border="0" alt="Advertisement" /> </a> var kruxDart = ''; if(window.Krux){ if(window.Krux.dfppKeyValues){ kruxDart = window.Krux.dfppKeyValues; } } document.write('\x3cscript type="text/javascript" src="http://ad.uk.doubleclick.net/adj/wly.neurosci_000087/j-comparative-neuro_CNE;' + kruxDart + ';gs_cat=' + gs_channels + ';tile=4;pos=1;sz=160X700;doi=101002cne23724;ord=1511879603?"\x3e\x3c/script\x3e'); <a href="http://wiley.grapeshot.co.uk/main/redirect.cgi?target=http://ad.uk.doubleclick.net/jump/wly.neurosci_000087/j-comparative-neuro_CNE;tile=4;pos=1;sz=160X700;doi=101002cne23724;ord=1511879603?" target="_blank"> <img src="http://wiley.grapeshot.co.uk/main/redirect.cgi?target=http://ad.uk.doubleclick.net/ad/wly.neurosci_000087/j-comparative-neuro_CNE;tile=4;pos=1;sz=160X700;doi=101002cne23724;ord=1511879603?" border="0" alt="Advertisement" /> </a> Research ArticleYou have full text access to this contentFeedback in the brainstem: An excitatory disynaptic pathway for control of whisking