David Miller
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Microscopic spines connect worm neurons
Worm neurons have microscopic “spines” — where nerve-to-nerve communication happens — that share features with mammalian neurons, supporting the use of worms to study spine genetics and biology. Read MoreOctober 17, 2019
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Team seeks to create genetic map of worm’s nervous system
A complete map of gene expression for the worm may help address broad questions in neuroscience about how gene expression programs establish diverse sets of neurons and how genetic differences contribute to neuronal function in healthy and disease conditions. Read MoreDecember 7, 2018
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Refining neural circuitry
During development, neural circuits are remodeled – some synapses are eliminated and others are strengthened – to produce a mature, functional nervous system. Read MoreAugust 2, 2016
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Nerve cell remodelers
Vanderbilt investigators have defined a gene expression program that controls the timing of synaptic remodeling – a process that is critical to brain development, learning and memory. Read MoreSeptember 18, 2015
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Vanderbilt celebrates 18 elected fellows of the AAAS
Eighteen academic and administrative leaders at Vanderbilt University have been elected fellows of the American Association for the Advancement of Science (AAAS) this year. Read MoreNovember 25, 2013
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Researchers track neuron branching’s genetic control switch
In an effort to understand how neurons develop different “architectures,” Vanderbilt developmental biologists have discovered a genetic switch that controls one type of neuron branching in the nematode worm. Read MoreAugust 15, 2013
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Worm gene function? Check the map.
New gene expression atlas created for roundworms provides a basis for establishing roles for individual genes in the development of specific cell types. Read MoreMarch 3, 2011