Local and Intersegmental Interactions of Coordinating Neurons and Local Circuits in the Swimmeret System

2007 ◽  
Vol 98 (1) ◽  
pp. 405-413 ◽  
Author(s):  
Brian Mulloney ◽  
Wendy M. Hall

During forward swimming, periodic movements of swimmerets on different segments of the crayfish abdomen progress from back to front with the same period. Information encoded as bursts of spikes by coordinating neurons in each segmental ganglion is necessary for this coherent organization. This information is conducted to targets in other ganglia. When an individual coordinating neuron is stimulated at different phases in the system's cycle of activity, the timing of motor output from other ganglia may be altered. In models of this coordinating circuit, we assumed that each coordinating neuron encodes information about the state of the local pattern-generating circuit in its home ganglion but is not part of that local circuit. We tested this assumption by stimulating individual coordinating neurons of two kinds—ASCE and DSC—at different phases under two conditions: with the target ganglion functional, and with the target ganglion silenced. Blocking a DSC neuron's target ganglion did not alter its negligible influence on the output from its home ganglion; the phase-response curves (PRC) remained flat. Blocking an ASCE neuron's target ganglion significantly affected its influence on the output from its home ganglion. We had predicted that ASCE's modest phase-dependent influence would disappear with the target silenced, but instead the amplitude of the PRCs increased significantly. Thus we have two different results: DSC neurons conformed to prediction based on the models’ assumptions, but ASCE neurons showed an unexpected property, one that is partially masked when the bidirectional flow of information between neighboring ganglia is operating normally.

2010 ◽  
Vol 24 (1) ◽  
pp. 64-73 ◽  
Author(s):  
Carolyn M. Sampselle ◽  
Kenneth J. Pienta ◽  
Dorene S. Markel

The ultimate aim of the National Institutes of Health Clinical and Translational Science Award (CTSA) initiative is to accelerate the movement of discoveries that can benefit human health into widespread public use. To accomplish this translational mandate, the contributions of multiple disciplines, such as dentistry, nursing, pharmacy, public health, biostatistics, epidemiology, and bioengineering, are required in addition to medicine. The research community is also mandated to establish new partnerships with organized patient communities and front line health care providers to assure the bidirectional flow of information in order that health priorities experienced by the community inform the research agenda. This article summarizes current clinical research directives, the experience of the University of Michigan faculty during the first 2 years of CTSA support, and recommendations to enhance the effectiveness of future CTSA as well as other interdisciplinary initiatives. While the manuscript focuses most closely on the CTSA Community Engagement mission, the challenges to interdisciplinarity and bidirectionality extend beyond the focus of community engagement.


Author(s):  
Marshaun N. Fitzpatrick ◽  
Yangyang Wang ◽  
Peter J. Thomas ◽  
Roger D. Quinn ◽  
Nicholas S. Szczecinski

2016 ◽  
Vol 26 (6) ◽  
pp. 063105 ◽  
Author(s):  
Igor Franović ◽  
Srdjan Kostić ◽  
Matjaž Perc ◽  
Vladimir Klinshov ◽  
Vladimir Nekorkin ◽  
...  

Sign in / Sign up

Export Citation Format

Share Document