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- W2015358421 abstract "► NaHS excites the respiratory rhythm of thin medullary slices. ► NaHS affects thicker slices in a biphasic manner: inhibition followed by excitation. ► The initial inhibitory effect induced by NaHS disappeared after lesion of the pFRG. ► An excitatory effect is induced by micro-injection of NaHS into the preBötC. ► An inhibitory effect is caused by an injection into the pFRG. Hydrogen sulfide (H 2 S) is involved in central regulation of respiratory rhythm at the level of the medulla oblongata. The present study was carried out to test our hypothesis that H 2 S exerts site-specific regulatory action on respiratory rhythm in the medulla oblongata of neonatal rats. The rhythmic discharge of hypoglossal rootlets in medullary slices of neonatal rats was recorded. 200 μM NaHS (an H 2 S donor) increased burst frequency (BF) in 900-μm slices containing the pre-Bötzinger complex (preBötC), whereas it caused diphasic responses in 1200-, 1400- and 1800-μm slices containing both the preBötC and part or all of the parafacial respiratory group (pFRG): an initial decrease in BF followed by an increase. The initial decrease in BF was no longer observed after unilateral lesion of the pFRG region in the 1400-μm slices. In addition, BF was increased by a unilateral micro-injection of NaHS into the preBötC region, but was decreased by an injection into the pFRG region. These data support our hypothesis that the regulatory action of H 2 S on respiratory rhythm in the medulla oblongata is site-specific. The excitatory effect is caused by the preBötC, while the inhibitory effect is from the pFRG." @default.
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- W2015358421 date "2013-03-01" @default.
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- W2015358421 title "Site-specific hydrogen sulfide-mediated central regulation of respiratory rhythm in medullary slices of neonatal rats" @default.
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- W2015358421 doi "https://doi.org/10.1016/j.neuroscience.2012.12.047" @default.
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