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Summary Anatomy Item Literature (50) Expression Attributions Wiki
ECB-ANAT-133

Papers associated with neuron

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Transport of Glucose by the Plasma Membrane Affects the Removal and Concentration of Ca2+ at Rest in Neurons - Implications of a Condition Prior to Alzheimer''s Disease?, Alves VS., Neuroscience. April 1, 2020; 431 52-63.


The nervous system component of the mesentery of the sea cucumber Holothuria glaberrima in normal and regenerating animals., Nieves-Ríos C., Cell Tissue Res. April 1, 2020; 380 (1): 67-77.


The Interplay between Ca2+ Signaling Pathways and Neurodegeneration., Ureshino RP., Int J Mol Sci. November 28, 2019; 20 (23):     


Evolution of nitric oxide regulation of gut function., Yaguchi J., Proc Natl Acad Sci U S A. March 19, 2019; 116 (12): 5607-5612.


Anti-Parkinson activity of bioactive substances extracted from Holothuria leucospilota., Malaiwong N., Biomed Pharmacother. January 1, 2019; 109 1967-1977.


The N terminus of Ascl1 underlies differing proneural activity of mouse and Xenopus Ascl1 proteins., Hardwick LJA., Wellcome Open Res. September 26, 2018; 3 125.      


Holothuria scabra extracts exhibit anti-Parkinson potential in C. elegans: A model for anti-Parkinson testing., Chalorak P., Nutr Neurosci. July 1, 2018; 21 (6): 427-438.


Embryonic neurogenesis in echinoderms., Hinman VF., Wiley Interdiscip Rev Dev Biol. July 1, 2018; 7 (4): e316.


Synthetic Light-Activated Ion Channels for Optogenetic Activation and Inhibition., Beck S., Front Neurosci. June 8, 2018; 12 643.                    


Functional characterization of a second pedal peptide/orcokinin-type neuropeptide signaling system in the starfish Asterias rubens., Lin M., J Comp Neurol. April 1, 2018; 526 (5): 858-876.                      


Effects of Aging in the Striatum and Substantia Nigra of a Parkinson''s Disease Animal Model., Ureshino RP., Toxicol Pathol. April 1, 2018; 46 (3): 348-358.


The complex simplicity of the brittle star nervous system., Zueva O., Front Zool. February 1, 2018; 15 1.                                        


Expression of genes and proteins of the pax-six-eya-dach network in the metamorphic sea urchin: Insights into development of the enigmatic echinoderm body plan and sensory structures., Byrne M., Dev Dyn. January 1, 2018; 247 (1): 239-249.


The structural and chemical basis of temporary adhesion in the sea star Asterina gibbosa., Lengerer B., Beilstein J Nanotechnol. January 1, 2018; 9 2071-2086.              


Neuropeptidergic Systems in Pluteus Larvae of the Sea Urchin Strongylocentrotus purpuratus: Neurochemical Complexity in a "Simple" Nervous System., Wood NJ., Front Endocrinol (Lausanne). January 1, 2018; 9 628.            


New Neuronal Subtypes With a "Pre-Pancreatic" Signature in the Sea Urchin Stongylocentrotus purpuratus., Perillo M., Front Endocrinol (Lausanne). January 1, 2018; 9 650.            


Peripheral nerve injury increases contribution of L-type calcium channels to synaptic transmission in spinal lamina II: Role of α2δ-1 subunits., Alles SR., Mol Pain. January 1, 2018; 14 1744806918765806.          


Pedal peptide/orcokinin-type neuropeptide signaling in a deuterostome: The anatomy and pharmacology of starfish myorelaxant peptide in Asterias rubens., Lin M., J Comp Neurol. December 15, 2017; 525 (18): 3890-3917.                                      


Characterization and expression analysis of Galnts in developing Strongylocentrotus purpuratus embryos., Famiglietti AL., PLoS One. April 17, 2017; 12 (4): e0176479.            


Regeneration of the digestive system in the crinoid Himerometra robustipinna occurs by transdifferentiation of neurosecretory-like cells., Kalacheva NV., PLoS One. January 1, 2017; 12 (7): e0182001.                      


A gene regulatory network for apical organ neurogenesis and its spatial control in sea star embryos., Cheatle Jarvela AM., Development. November 15, 2016; 143 (22): 4214-4223.


Cooperative Wnt-Nodal Signals Regulate the Patterning of Anterior Neuroectoderm., Yaguchi J., PLoS Genet. April 21, 2016; 12 (4): e1006001.                


Neurogenesis in directly and indirectly developing enteropneusts: of nets and cords., Kaul-Strehlow S., Org Divers Evol. January 1, 2015; 15 (2): 405-422.              


Insights into the structure and function of ciliary and flagellar doublet microtubules: tektins, Ca2+-binding proteins, and stable protofilaments., Linck R., J Biol Chem. June 20, 2014; 289 (25): 17427-44.                          


Novel insights into the echinoderm nervous system from histaminergic and FMRFaminergic-like cells in the sea cucumber Leptosynapta clarki., Hoekstra LA., PLoS One. January 1, 2012; 7 (9): e44220.            


Learning by observation requires an early sleep window., Van Der Werf YD., Proc Natl Acad Sci U S A. November 10, 2009; 106 (45): 18926-30.


Differential distribution of synGAP alpha1 and synGAP beta isoforms in rat neurons., Moon IS., Brain Res. November 19, 2008; 1241 62-75.


Neural architecture of the brachiolaria larva of the starfish, Asterina pectinifera., Murabe N., J Comp Neurol. July 20, 2008; 509 (3): 271-82.


Adhesive papillae on the brachiolar arms of brachiolaria larvae in two starfishes, Asterina pectinifera and Asterias amurensis, are sensors for metamorphic inducing factor(s)., Murabe N., Dev Growth Differ. October 1, 2007; 49 (8): 647-56.


Imaging retinotectal synaptic connectivity., Cohen-Cory S., CSH Protoc. July 1, 2007; 2007 pdb.prot4782.


Sp-Smad2/3 mediates patterning of neurogenic ectoderm by nodal in the sea urchin embryo., Yaguchi S., Dev Biol. February 15, 2007; 302 (2): 494-503.


A global view of gene expression in lithium and zinc treated sea urchin embryos: new components of gene regulatory networks., Poustka AJ., Genome Biol. January 1, 2007; 8 (5): R85.                


NGIWYamide-induced contraction of tube feet and distribution of NGIWYamide-like immunoreactivity in nerves of the starfish Asterina pectinifera., Saha AK., Zoolog Sci. July 1, 2006; 23 (7): 627-32.


Specification of ectoderm restricts the size of the animal plate and patterns neurogenesis in sea urchin embryos., Yaguchi S., Development. June 1, 2006; 133 (12): 2337-46.


Neuron-specific expression of a synaptotagmin gene in the sea urchin Strongylocentrotus purpuratus., Burke RD., J Comp Neurol. May 10, 2006; 496 (2): 244-51.


Divergent patterns of neural development in larval echinoids and asteroids., Nakajima Y., Evol Dev. January 1, 2004; 6 (2): 95-104.


MUP-4 is a novel transmembrane protein with functions in epithelial cell adhesion in Caenorhabditis elegans., Hong L., J Cell Biol. July 23, 2001; 154 (2): 403-14.                


Cirri of the stalked crinoid Metacrinus rotundus: neural elements and the effect of cholinergic agonists on mechanical properties., Birenheide R., Proc Biol Sci. January 7, 2000; 267 (1438): 7-16.


Preliminary observations on ascidian and echinoderm neurons and neural explants in vitro., Moss C., Tissue Cell. October 1, 1998; 30 (5): 517-24.


Multiple signaling events specify ectoderm and pattern the oral-aboral axis in the sea urchin embryo., Wikramanayake AH., Development. January 1, 1997; 124 (1): 13-20.


Extracellular synthesis of cADP-ribose from nicotinamide-adenine dinucleotide by rat cortical astrocytes in culture., Pawlikowska L., J Neurosci. September 1, 1996; 16 (17): 5372-81.


Contractile connective tissue in crinoids., Birenheide R., Biol Bull. August 1, 1996; 191 (1): 1-4.


Localization of the heptapeptide GFSKLYFamide in the sea cucumber Holothuria glaberrima (Echinodermata): a light and electron microscopic study., Díaz-Miranda L., J Comp Neurol. February 20, 1995; 352 (4): 626-40.


Quinacrine-staining of neurones, and activity of purine nucleosides and nucleotides in marine and terrestrial invertebrates from several phyla., Knight GE., Comp Biochem Physiol C. June 1, 1992; 102 (2): 305-14.


Ultrastructure of the tube-foot of an ophiuroid echinoderm, Hemipholis elongata., Hajduk SL., Tissue Cell. January 1, 1992; 24 (1): 111-9.


Histochemical study of biogenic monoamines in early ("Prenervous") and late embryos of sea urchins., Markova LN., Int J Dev Neurosci. January 1, 1985; 3 (5): 493-9.


Neural correlates of flight loss in a Mexican grasshopper, Barytettix psolus. I. Motor and sensory cells., Arbas EA., J Comp Neurol. June 1, 1983; 216 (4): 369-80.


Ultrastructure of sea urchin tube feet. Evidence for connective tissue involvement in motor control., Florey E., Cell Tissue Res. February 9, 1977; 177 (2): 195-214.


The fine structure of the ovary of the feather star Nemaster rubiginosa (Echinodermata: Crinoidea)., Holland ND., Tissue Cell. January 1, 1971; 3 (1): 161-75.


REVERSAL OF REACTION BY MEANS OF STRYCHNINE IN PLANARIANS AND STARFISH., Moore AR., J Gen Physiol. September 20, 1918; 1 (1): 97-100.

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