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Genetics|June 1, 1993
The Caenorhabditis elegans unc-31 gene affects multiple nervous system-controlled functionsL Avery, C I Bargmann, H R HorvitzScience (New York, N.Y.)|March 8, 1991
Control of larval development by chemosensory neurons in Caenorhabditis elegansC I Bargmann, H R HorvitzNeuron|November 1, 1991
Chemosensory neurons with overlapping functions direct chemotaxis to multiple chemicals in C. elegansC I Bargmann, H R HorvitzCell|August 13, 1993
Odorant-selective genes and neurons mediate olfaction in C. elegansC I Bargmann, E Hartwieg, H R HorvitzNeuron|October 1, 1989
Pharyngeal pumping continues after laser killing of the pharyngeal nervous system of C. elegansL Avery, H R HorvitzThe Journal of Experimental Zoology|March 1, 1990
Effects of starvation and neuroactive drugs on feeding in Caenorhabditis elegansL Avery, H R HorvitzCell|December 24, 1987
A cell that dies during wild-type C. elegans development can function as a neuron in a ced-3 mutantL Avery, H R HorvitzDevelopment (Cambridge, England)|November 21, 2001
Three C. elegans Rac proteins and several alternative Rac regulators control axon guidance, cell migration and apoptotic cell phagocytosisE A Lundquist, P W Reddien, E Hartwieg, et al.The EMBO Journal|October 8, 1997
Mutations in the alpha1 subunit of an L-type voltage-activated Ca2+ channel cause myotonia in Caenorhabditis elegansR Y Lee, L Lobel, M Hengartner, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 31, 1998
EAT-4, a homolog of a mammalian sodium-dependent inorganic phosphate cotransporter, is necessary for glutamatergic neurotransmission in caenorhabditis elegansR Y Lee, E R Sawin, M Chalfie, et al.Pageof 65