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Cranial motoneurons innervate muscles controlling airway dimensions and exhibit an important rhythmic respiratory activity that is synchronous with the activity of respiratory neurons of the medulla during expiration and inspiration [34].
In the absence of Dbx1-derived neurons, however, all rhythmic respiratory outputs were eliminated.
As in preparations from older animals, we found rhythmic motor output from both cervical and lumbar roots that corresponded to rhythmic respiratory muscle activity.
Thus, we conclude the ability of Dbx1 preBötC neurons to spontaneously generate rhythmic respiratory motor output in slice preparations is sensitive to deletion of 85 ± 1.96(20) Dbx1 interneurons, i.e., 8 22% of its core.
We again found that rhythmic respiratory output from both cervical and lumbar rhythms persisted, but the combined loss of both RL and RTN recovered respiratory periods to near WT levels under both baseline conditions and with SP application.
In contrast to mice with loss of RL and/or RTN neurons, Dbx1− mice produced no rhythmic respiratory output from either cervical or lumbar motor roots, even when stimulated with SP or elevated potassium in the hindbrain perfusion solution.
Similar(52)
AspR and ExpR are solitary non-rhythmic respiratory processes and for their short durations they often do not disturbe the fictive cough attack [ 27, 44, 45].
In this study, we described the biophysical properties of an uncharacterized channel (U-type channel) and investigated the role of the channel in the rhythmic activity of a respiratory pacemaker neuron and the respiratory behaviour in adult freshwater snail Lymnaea stagnalis.
In this study, we have demonstrated that an inward Na+-conductance leak current component at rest regulates the rhythmic activity of a respiratory pacemaker neuron, RPeD1.
The destruction of ∼120 rhythmic neurons irreversibly stopped respiratory rhythmogenesis (Hayes et al., 2012).
We found that Dbx1-dependent, but not Atoh1-dependent, neurons are necessary for rhythmic motor output from respiratory motoneurons.
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