Literature DB >> 9507159

Inhibitory synaptic drive patterns motoneuronal activity in rhythmic preparations of isolated thoracic ganglia in the stick insect.

A Büschges1.   

Abstract

During active leg movements of an insect leg, the activity of the motoneuron pools of each individual leg joint is generated by the interaction between signals from central rhythm generating sources, peripheral signals as well as coordinating signals from other leg joints and legs. The nature of the synaptic drive from the central rhythm generators onto the motoneuron pools of the individual leg joints during rhythmic motor activity of the stick insect (Carausius morosus) middle leg has been investigated. In the isolated mesothoracic ganglion central rhythm generators were activated pharmacologically by topical application of the muscarinic agonist pilocarpine. Motoneurons supplying the femur-tibia (FT) joint were investigated in detail. Recordings from neuropil processes of these motoneurons revealed that patterning of their rhythmic activity is based on cyclic hyperpolarizing synaptic inputs. These inputs are in clear antiphase for extensor and flexor motoneurons. DCC (discontinuous current clamp) and dSEVC (discontinuous single electrode voltage clamp) recordings showed reversal potentials of the inhibitory inputs between -80 to -85 mV (FETi, N=7; Flex MN, N=3). After intracellular injection of TEA rhythmic inhibition in FETi was decreased by about 84% (N=4). Both findings indicate that the cyclic inhibition is mediated by potassium ions. Thus, it appears that central rhythm generators pattern motor activity in antagonistic tibial motoneuron pools by cyclic alternating inhibition.

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Year:  1998        PMID: 9507159     DOI: 10.1016/s0006-8993(97)01370-x

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  12 in total

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3.  A network model comprising 4 segmental, interconnected ganglia, and its application to simulate multi-legged locomotion in crustaceans.

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4.  Task-dependent modification of leg motor neuron synaptic input underlying changes in walking direction and walking speed.

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5.  Intra- and intersegmental influences among central pattern generating networks in the walking system of the stick insect.

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7.  A hexapod walker using a heterarchical architecture for action selection.

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8.  Effects of functional decoupling of a leg in a model of stick insect walking incorporating three ipsilateral legs.

Authors:  Tibor I Tóth; Silvia Daun
Journal:  Physiol Rep       Date:  2017-02-27

9.  Endogenous rhythm and pattern-generating circuit interactions in cockroach motor centres.

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Journal:  Biol Open       Date:  2016-09-15       Impact factor: 2.422

10.  Calcium imaging of CPG-evoked activity in efferent neurons of the stick insect.

Authors:  Jens Goldammer; Charalampos Mantziaris; Ansgar Büschges; Joachim Schmidt
Journal:  PLoS One       Date:  2018-08-24       Impact factor: 3.240

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