Awardee OrganizationSTATE UNIVERSITY OF NEW YORK AT BUFFALO
Description
Abstract Text
Electrical activity plays a fundamental role in communication
along nerve cells. It has long been thought that electrical activity
might play a much broader role in the control of neuronal form
and connectivity. The recent demonstration that action
potentials inhibit neurite outgrowth now provides the conceptual
link whereby these ubiquitous signals can directly influence
neuronal structure and the formation of neural circuits. The aims
of the proposal are to determine the role of electrical activity in
regulating neuronal morphology and connectivity and to show that
these effects may be mediated by calcium changes in growth
cones. Specific attention is given to how electrical activity
regulates the movements of growth cones at the tips of elongating
neurites. These experiments utilize a high resolution system of
identified neurons from the snail Helisoma which are uniquely
characterized in terms of their normal morphology, biophysical
properties, and connections with other neurons. Cell bodies of
identified neurons will be individually removed from their normal
ganglionic environment and placed in cell culture to facilitate
quantitative spatial and temporal measurements of neurite
outgrowth. Cell bodies will be electrically stimulated directly
and the effects on the large growth cones that are characterized
of this species will be quantitatively assessed to test how: 1)
integrative properties of electrical signals affect outgrowth and
the final morphology of neurons, 2) electrical signals in neural
circuits may exert both global and local control over neuronal
morphology, 3) electrical activity affects synapotogenesis, and 4)
changes in growth cone calcium may mediate these effects.
These findings will establish a link between neuronal structure and
function. They will provide insight into the regulation of neuronal
architecture and connectivity which underlie the establishment of
adult neuronal circuits.
Public Health Relevance Statement
Data not available.
NIH Spending Category
No NIH Spending Category available.
Project Terms
Gastropodaaxoncalciumelectrophysiologygrowth conesneural information processingneuroanatomyneurogenesisneuronal guidanceneuronsneurotrophic factorssynapsestissue /cell culturevoltage /patch clamp
National Institute of Neurological Disorders and Stroke
CFDA Code
DUNS Number
038633251
UEI
LMCJKRFW5R81
Project Start Date
01-February-1988
Project End Date
31-January-1993
Budget Start Date
01-February-1991
Budget End Date
31-January-1992
Project Funding Information for 1991
Total Funding
$82,727
Direct Costs
$54,557
Indirect Costs
$28,170
Year
Funding IC
FY Total Cost by IC
1991
National Institute of Neurological Disorders and Stroke
$82,727
Year
Funding IC
FY Total Cost by IC
Sub Projects
No Sub Projects information available for 5R29NS025789-04
Publications
Publications are associated with projects, but cannot be identified with any particular year of the project or fiscal year of funding. This is due to the continuous and cumulative nature of knowledge generation across the life of a project and the sometimes long and variable publishing timeline. Similarly, for multi-component projects, publications are associated with the parent core project and not with individual sub-projects.
No Publications available for 5R29NS025789-04
Patents
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Outcomes
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No Outcomes available for 5R29NS025789-04
Clinical Studies
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News and More
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History
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