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Titlebook: Control of Breathing and Its Modeling Perspective; Yoshiyuki Honda,Yoshimi Miyamoto,John G. Widdicomb Book 1992 Springer Science+Business

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Raphe Magnus-Induced Inhibition of Medullary and Spinal Respiratory Activities in the Catneurons. Recent studies by us. and others. have demonstrated that stimulation in the nucleus raphe magnus (NRM) produced marked inhibitory effects on respiratory activities in cats and other animals. Previous studies. have also provided evidence for the involvement of several putative transmitter su
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Cranial Nerve and Phrenic Respiratory Rhythmicity during Changes in Chemical Stimuli in the Anesthetupper airway muscles also display respiratory modulated activity synchronized with Phr activity. These cranial nerve motoneurons as well as spinal Phr motoneurons (or Phr driving medullary pre-motor neurons) are driven by a common rhythm generating mechanism. There are, however, significant differen
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Synaptic and Non-Synaptic Control of Membrane Potential Fluctuations in Bulbar Respiratory Neurons oe largely dependent upon the periodically arriving synaptic activities. Intrinsic membrane properties also play a certain important role in the generation or modulation of these potentials. Several types of ionic conductance have been demonstrated in the presumed respiration-related neurons in the b
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Acid Infusion Elicits Thromboxane-Mediated Cardio-Respiratory Effectsoversy exists about the existence of such receptors in the venous system. During the search in the cat for CO.-sensitive receptors in the larger venous vessels or the right heart, we have intravenously infused 0.25 . HCl, as has been performed in many studies before us. We have, however, observed ra
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