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1.
Respir Physiol Neurobiol ; 189(1): 10-21, 2013 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-23774145

RESUMO

Herein we compare the effects of perturbations in the Kölliker-Fuse nucleus (KFN) and the lateral (LPBN) and medial (MPBN) parabrachial nuclei on the coordination of breathing and swallowing. Cannula was chronically implanted in goats through which ibotenic acid (IA) was injected while awake. Swallows in late expiration (E) always reset while swallows in early inspiration (I) never reset the respiratory rhythm. Before cannula implantation, all other E and I swallows did not reset the respiratory rhythm, and had small effects on E and I duration and tidal volume (VT). However, after cannula implantation in the MPBN and KFN, E and I swallows reset the respiratory rhythm and increased the effects on I and E duration and VT. Subsequent injection of IA into the KFN eliminated the respiratory phase resetting of swallows but exacerbated the effects on I and E duration and VT. We conclude that the KFN and to a lesser extent the MPBN contribute to coordination of breathing and swallowing.


Assuntos
Deglutição/fisiologia , Ponte/fisiologia , Fenômenos Fisiológicos Respiratórios , Animais , Cabras , Respiração
2.
Respir Physiol Neurobiol ; 175(2): 272-82, 2011 Feb 15.
Artigo em Inglês | MEDLINE | ID: mdl-21145433

RESUMO

The purpose of this retrospective study was to gain insight into the contribution of the dorsolateral pons to the coordination of swallowing and breathing in awake goats. In 4 goats, cannulas were chronically implanted bilaterally through the lateral (LPBN) and medial (MPBN) parabrachial nuclei just dorsal to the Kölliker-Fuse nucleus (KFN). After >2weeks recovery from this surgery, the goats were studied for 5½h on a control day, and on separate days after receiving 1 and 10µl injections of ibotenic acid (IA) separated by 1week. The frequency of swallows did not change during the control and 1µl IA studies, but after injection of 10µl IA, there was a transient 65% increase in frequency of swallows (P<0.05). Under control conditions swallows occurred throughout the respiratory cycle, where late-E swallows accounted for 67.6% of swallows. The distribution of swallow occurrence throughout the respiratory cycle was unaffected by IA injections. Consistent with the concept that swallowing is dominant over breathing, we found that swallows increased inspiratory (T(I)) and expiratory (T(E)) time and decreased tidal volume (V(T)) of the breath of the swallow (n) and/or the subsequent (n+1) breath. Injections of 10µl IA attenuated the normal increases in T(I) and T(E) and further attenuated V(T) of the n breath. Additionally, E and I swallows reset respiratory rhythm, but injection of 1 or 10µl IA progressively attenuated this resetting, suggesting a decreased dominance over respiratory motor output with increasing IA injections. Post mortem histological analysis revealed about 50% fewer (P<0.05) neurons remained in the KFN, LPBN, and MPBN in lesioned compared to control goats. We conclude that dorsolateral pontine nuclei have a modulatory role in a hypothesized holarchical neural network regulating swallowing and breathing particularly contributing to the normal dominance of swallowing over breathing in both rhythm and motor pattern generation.


Assuntos
Deglutição/fisiologia , Ponte/fisiologia , Ventilação Pulmonar/fisiologia , Respiração , Animais , Feminino , Cabras , Ácido Ibotênico/farmacologia , Ponte/efeitos dos fármacos , Ponte/lesões , Ventilação Pulmonar/efeitos dos fármacos , Estudos Retrospectivos , Vigília/efeitos dos fármacos , Vigília/fisiologia
3.
Respir Physiol Neurobiol ; 175(1): 1-11, 2011 Jan 31.
Artigo em Inglês | MEDLINE | ID: mdl-20601204

RESUMO

Abrupt, bilateral destruction of the pre-Bötzinger Complex (preBötC) leads to terminal apnea in unanesthetized goats and rats. In contrast, respiratory rhythm and pattern and arterial blood gases in goats during wakefulness and sleep are normal after incremental (over a month) destruction of > 90% of the preBötC. Here, we tested the hypothesis that the difference in effects between abrupt and incremental destruction of the preBötC are a result of time-dependent plasticity, which manifests as anatomic changes at sites within the respiratory network. Accordingly, we report data from histological analyses comparing the brainstems of control goats, and goats that had undergone bilateral, incremental, ibotenic acid (IA)-induced preBötC lesioning. A major focus was on the parafacial respiratory group/retrotrapezoid nucleus (pFRG/RTN) and the pontine respiratory group (PRG), which are sites thought to contribute to respiratory rhythmogenesis. We also studied the facial (FN), rostral nucleus ambiguus (NA), medullary raphé (MRN), hypoglossal (HN), and the dorsal motor vagal (DMV) nuclei. Neuronal counts, count region area (mm²), and neuronal densities were calculated using computer-assisted analyses and/or manual microscopy to compare control and preBötC-lesioned animals. We found that within the ventral and lateral medulla 2mm rostral to the caudal pole of the FN (presumed pFRG/RTN), there were 25% and 65% more (P < 0.001) neurons, respectively, in preBötC-lesioned compared to control goats. Lesioned goats also showed 14% and 13% more (P < 0.001) neurons in the HN and medial parabrachialis nucleus, but 46%, 28%, 7%, and 17% fewer (P < 0.001) neurons in the FN, NA, DMV, and Kölliker-Fuse nuclei, respectively. In the remaining sites analyzed, there were no differences between groups. We conclude that anatomic changes at multiple sites within the respiratory network may contribute to the time-dependent plasticity in breathing following incremental and near-complete destruction of the preBötC.


Assuntos
Núcleo Celular/patologia , Bulbo/patologia , Centro Respiratório/lesões , Centro Respiratório/patologia , Análise de Variância , Animais , Contagem de Células/métodos , Cabras , Ácido Ibotênico/toxicidade , Bulbo/metabolismo , Rede Nervosa/patologia , Neurônios/patologia , Neurotoxinas/toxicidade , Análise Numérica Assistida por Computador , Fosfopiruvato Hidratase/metabolismo , Receptor Muscarínico M1/metabolismo , Receptores da Neurocinina-1/metabolismo , Fatores de Tempo , Vigília
4.
J Appl Physiol (1985) ; 109(1): 171-88, 2010 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-20431022

RESUMO

To probe further the contributions of the rostral pons to eupneic respiratory rhythm and pattern, we tested the hypothesis that ibotenic acid (IA) injections in the pontine respiratory group (PRG) would disrupt eupneic respiratory rhythm and pattern in a site- and state-specific manner. In 15 goats, cannulas were bilaterally implanted into the rostral pontine tegmental nuclei (RPTN; n = 3), the lateral (LPBN; n = 4) or medial parabrachial nuclei (MPBN; n = 4), or the Kölliker-Fuse nucleus (KFN; n = 4). After recovery from surgery, 1- and 10-microl injections (1 wk apart) of IA were made bilaterally through the implanted cannulas during the day. Over the first 5 h after the injections, there were site-specific ventilatory effects, with increased (P < 0.05) breathing frequency in RPTN-injected goats, increased (P < 0.05) pulmonary ventilation (Vi) in LPBN-injected goats, no effect (P < 0.05) in MPBN-injected goats, and a biphasic Vi response (P < 0.05) in KFN-injected goats. This biphasic response consisted of a hyperpnea for 30 min, followed by a prolonged hypopnea and hypoventilation with marked apneas, apneusis-like breathing patterns, and/or shifts in the temporal relationships between inspiratory flow and diaphragm activity. In the awake state, 10-15 h after the 1-microl injections, the number of apneas was greater (P < 0.05) than during other studies at night. However, there were no incidences of terminal apneas. Breathing rhythm and pattern were normal 22 h after the injections. Subsequent histological analysis revealed that for goats with cannulas implanted into the KFN, there were nearly 50% fewer neurons (P < 0.05) in all three PRG subnuclei than in control goats. We conclude that in awake goats, 1) IA injections into the PRG have site-specific effects on breathing, and 2) the KFN contributes to eupneic respiratory pattern generation.


Assuntos
Periodicidade , Ponte/fisiologia , Ventilação Pulmonar/fisiologia , Respiração , Vigília/fisiologia , Animais , Diafragma/efeitos dos fármacos , Diafragma/fisiologia , Agonistas de Aminoácidos Excitatórios/administração & dosagem , Feminino , Cabras , Ácido Ibotênico/administração & dosagem , Ponte/anatomia & histologia , Ponte/efeitos dos fármacos , Ventilação Pulmonar/efeitos dos fármacos , Vigília/efeitos dos fármacos
5.
J Appl Physiol (1985) ; 109(1): 159-70, 2010 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-20431024

RESUMO

For many years, acetylcholine has been known to contribute to the control of breathing and sleep. To probe further the contributions of cholinergic rostral pontine systems in control of breathing, we designed this study to test the hypothesis that microdialysis (MD) of the muscarinic receptor antagonist atropine into the pontine respiratory group (PRG) would decrease breathing more in animals while awake than while in NREM sleep. In 16 goats, cannulas were bilaterally implanted into rostral pontine tegmental nuclei (n = 3), the lateral (n = 3) or medial (n = 4) parabrachial nuclei, or the Kölliker-Fuse nucleus (KFN; n = 6). After >2 wk of recovery from surgery, the goats were studied during a 45-min period of MD with mock cerebrospinal fluid (mCSF), followed by at least 30 min of recovery and a second 45-min period of MD with atropine. Unilateral and bilateral MD studies were completed during the day and at night. MD of atropine into the KFN at night decreased pulmonary ventilation and breathing frequency and increased inspiratory and expiratory time by 12-14% during both wakefulness and NREM sleep. However, during daytime studies, MD of atropine into the KFN had no effect on these variables. Unilateral and bilateral nighttime MD of atropine into the KFN increased levels of NREM sleep by 63 and 365%, respectively. MD during the day or at night into the other three pontine sites had minimal effects on any variable studied. Finally, compared with MD of mCSF, bilateral MD of atropine decreased levels of acetylcholine and choline in the effluent dialysis fluid. Our data support the concept that the KFN is a significant contributor to cholinergically modulated control of breathing and sleep.


Assuntos
Acetilcolina/fisiologia , Ponte/fisiologia , Ventilação Pulmonar/fisiologia , Respiração , Sono REM/fisiologia , Vigília/fisiologia , Acetilcolina/antagonistas & inibidores , Animais , Atropina/farmacologia , Feminino , Cabras , Antagonistas Muscarínicos/farmacologia , Ponte/efeitos dos fármacos , Ventilação Pulmonar/efeitos dos fármacos , Sono REM/efeitos dos fármacos , Vigília/efeitos dos fármacos
6.
J Appl Physiol (1985) ; 108(5): 1321-35, 2010 May.
Artigo em Inglês | MEDLINE | ID: mdl-20167677

RESUMO

The objective of the present study was to test the hypothesis that, in the in vivo awake goat model, perturbation/lesion in the pontine respiratory group (PRG) would decrease the sensitivity to hypercapnia and hypoxia. The study reported herein was part of two larger studies in which cholinergic modulation in the PRG was attenuated by microdialysis of atropine and subsequently ibotenic acid injections neurotoxically lesioned the PRG. In 14 goats, cannula were bilaterally implanted into either the lateral (n=4) or medial (n=4) parabrachial nuclei or the Kölliker-Fuse nucleus (KFN, n=6). Before and after cannula implantation, microdialysis of atropine, and injection of ibotenic acid, hypercapnic and hypoxic ventilatory sensitivities were assessed. Hypercapnic sensitivity was assessed by three 5-min periods at 3, 5, and 7% inspired CO2. In all groups of goats, CO2 sensitivity was unaffected (P>0.05) by any PRG perturbations/lesions. Hypoxic sensitivity was assessed with a 30-min period at 10.8% inspired O2. The response to hypoxia was typically triphasic, with a phase 1 increase in pulmonary ventilation, a phase 2 roll-off, and a phase 3 prolonged increase associated with shivering and increased metabolic rate and body temperature. In all groups of goats, the phase 1 of the hypoxic ventilatory responses was unaffected by any PRG perturbations/lesions, and there were no consistent effects on the phase 2 responses. However, in the KFN group of goats, the phase 3 ventilatory, shivering, metabolic rate, and temperature responses were markedly attenuated after the atropine dialysis studies, and the attenuation persisted after the ibotenic acid studies. These findings support an integrative or modulatory role for the KFN in the phase 3 responses to hypoxia.


Assuntos
Estado de Consciência , Hipóxia/fisiopatologia , Pulmão/inervação , Ponte/fisiopatologia , Ventilação Pulmonar , Animais , Atropina/administração & dosagem , Metabolismo Basal , Regulação da Temperatura Corporal , Modelos Animais de Doenças , Agonistas de Aminoácidos Excitatórios/administração & dosagem , Feminino , Cabras , Hipercapnia/fisiopatologia , Ácido Ibotênico/administração & dosagem , Injeções , Microdiálise , Antagonistas Muscarínicos/administração & dosagem , Ponte/efeitos dos fármacos , Ponte/patologia , Ventilação Pulmonar/efeitos dos fármacos , Estremecimento , Fatores de Tempo
7.
J Appl Physiol (1985) ; 107(5): 1591-9, 2009 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-19745186

RESUMO

Opioids are clinically important in the alleviation of pain. An undesirable side effect of opioids is depression of breathing. Data from isolated preparations suggest this effect is due to attenuation of discharge activity of neurons in the pre-Bötzinger complex (preBötzC), a medullary area with respiratory rhythmogenic properties. The purpose of this study was to examine how [d-Ala(2),N-Me-Phe(4),Gly(5)-ol]-enkephalin (DAMGO), a mu-opioid receptor agonist, affected breathing after injection into the presumed preBötzC of the adult awake goat. We hypothesized that DAMGO would cause breathing to decrease and become irregular when injected into the presumed preBötzC and the surrounding region of the conscious animal. We further hypothesized that ventilatory sensitivity to CO(2) and hypoxia would be blunted after the injection of DAMGO. Microtubules were bilaterally implanted into the presumed preBötzC of 10 adult female goats. After recovery from the surgery, DAMGO (0.5-10 mul, 1 nM-10 muM) was injected into the presumed preBötzC during the awake state. DAMGO had no effect on pulmonary ventilation [inspiratory minute ventilation (Vi)], respiratory rhythm and pattern, the activation pattern of inspiratory and expiratory muscles, or arterial blood gases during eupneic breathing conditions (P > 0.10). However, DAMGO attenuated (P < 0.05) the evoked increase in breathing frequency when inspired CO(2) was increased, and DAMGO attenuated the Vi response to reduction of inspired O(2) to 10.8% (P < 0.05). We conclude that our data do not provide support for the concept that in awake mammals opioid depression of breathing is due to a directed action of opioids on preBötzC neurons.


Assuntos
Ala(2)-MePhe(4)-Gly(5)-Encefalina/administração & dosagem , Bulbo/fisiologia , Receptores Opioides mu/agonistas , Receptores Opioides mu/metabolismo , Centro Respiratório/fisiologia , Mecânica Respiratória/fisiologia , Animais , Feminino , Cabras , Injeções , Bulbo/efeitos dos fármacos , Centro Respiratório/efeitos dos fármacos , Mecânica Respiratória/efeitos dos fármacos , Vigília
8.
J Appl Physiol (1985) ; 106(1): 241-50, 2009 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-19008492

RESUMO

There are widespread chemosensitive areas in the brain with varying effects on breathing. In the awake goat, microdialyzing (MD) 50% CO(2) at multiple sites within the medullary raphe increases pulmonary ventilation (Vi), blood pressure, heart rate, and metabolic rate (Vo(2)) (11), while MD in the rostral and caudal cerebellar fastigial nucleus has a stimulating and depressant effect, respectively, on these variables (17). In the anesthetized cat, the pre-Bötzinger complex (preBötzC), a hypothesized respiratory rhythm generator, increases phrenic nerve activity after an acetazolamide-induced acidosis (31, 32). To gain insight into the effects of focal acidosis (FA) within the preBötzC during physiological conditions, we tested the hypothesis that FA in the preBötzC during wakefulness would stimulate breathing, by increasing respiratory frequency (f). Microtubules were bilaterally implanted into the preBötzC of 10 goats. Unilateral MD of mock cerebral spinal fluid equilibrated with 6.4% CO(2) did not affect Vi, tidal volume (Vt), or f. Unilateral MD of 25 and 50% CO(2) significantly increased Vi and f by 10% (P < 0.05, n = 10, 17 trials), but Vt was unaffected. Bilateral MD of 6.4, 25, or 50% CO(2) did not significantly affect Vi, Vt, or f (P > 0.05, n = 6, 6 trials). MD of 80% CO(2) caused a 180% increase in f and severe disruptions in airflow (n = 2). MD of any level of CO(2) did not result in any significant changes in mean arterial blood pressure, heart rate, or Vo(2). Thus the data suggest that the preBötzC area is chemosensitive, but the responses to FA at this site are unique compared with other chemosensitive sites.


Assuntos
Acidose/fisiopatologia , Células Quimiorreceptoras/metabolismo , Hipercapnia/fisiopatologia , Ventilação Pulmonar , Centro Respiratório/fisiopatologia , Mecânica Respiratória , Vigília , Acidose/induzido quimicamente , Acidose/metabolismo , Animais , Dióxido de Carbono , Modelos Animais de Doenças , Cabras , Concentração de Íons de Hidrogênio , Hipercapnia/induzido quimicamente , Hipercapnia/metabolismo , Microdiálise , Centro Respiratório/metabolismo , Volume de Ventilação Pulmonar , Fatores de Tempo
9.
J Appl Physiol (1985) ; 106(2): 605-19, 2009 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-19095752

RESUMO

Abrupt neurotoxic destruction of >70% of the pre-Bötzinger complex (preBötzC) in awake goats results in respiratory and cardiac failure (Wenninger JM, Pan LG, Klum L, Leekley T, Bastastic J, Hodges MR, Feroah TR, Davis S, Forster HV. J Appl Physiol 97: 1629-1636, 2004). However, in reduced preparations, rhythmic respiratory activity has been found in other areas of the brain stem (Huang Q, St. John WM. J Appl Physiol 64: 1405-1411, 1988; Janczewski WA, Feldman JL. J Physiol 570: 407-420, 2006; Lieske SP, Thoby-Brisson M, Telgkamo P, Ramierz JM. Nature Neurosci 3: 600-607, 2000; St. John WM, Bledsoe TA. J Appl Physiol 59: 684-690, 1985); thus we hypothesized that, when the preBötzC is destroyed incrementally over weeks, time-dependent plasticity within the respiratory network will result in a respiratory rhythm capable of maintaining normal blood gases. Microtubules were bilaterally implanted into the presumed preBötzC of seven goats. After recovery from surgery, studies were completed to establish baseline values for respiratory parameters. At weekly intervals, increasing volumes (in order 0.5, 1, 5, and 10 microl) of ibotenic acid (IA; 50 mM) were then injected into the preBötzC. All IA injections resulted in an acute tachypnea and dysrhythmia featuring augmented breaths, apneas, and increased breath-to-breath variation in breathing. In studies at night, apneas were nearly all central and occurred in the awake state. Breath-to-breath variation in breathing was greater (P < 0.05) during wakefulness than during non-rapid eye movement sleep. However, one week after the final IA injection, the breathing pattern, breath-to-breath variation, and arterial blood gases and pH were unchanged from baseline, but there was a 20% decrease in respiratory frequency (f) and CO(2) sensitivity (P < 0.05), as well as a 40% decrease in the ventilatory response to hypoxia (P < 0.001). In subsequent histological analysis of the presumed preBötzC region of lesioned goats, it was determined that there was a 90 and 92% reduction from control goats in total and neurokinin-1 receptor neurons, respectively. Therefore, it was concluded that 1) the dysrhythmic effects on breathing are state dependent; and 2) after incremental, near total destruction of the presumed preBötzC region, time-dependent plasticity within the respiratory network provides a rhythm capable of sustaining normal arterial blood gases.


Assuntos
Dióxido de Carbono/sangue , Degeneração Neural/fisiopatologia , Plasticidade Neuronal , Oxigênio/sangue , Centro Respiratório/fisiopatologia , Mecânica Respiratória , Sono , Vigília , Adaptação Fisiológica , Animais , Pressão Sanguínea , Agonistas de Aminoácidos Excitatórios/administração & dosagem , Feminino , Cabras , Concentração de Íons de Hidrogênio , Ácido Ibotênico/administração & dosagem , Injeções , Modelos Animais , Degeneração Neural/induzido quimicamente , Degeneração Neural/patologia , Periodicidade , Ventilação Pulmonar , Centro Respiratório/efeitos dos fármacos , Centro Respiratório/patologia , Fatores de Tempo
10.
Respir Physiol Neurobiol ; 157(2-3): 242-51, 2007 Aug 01.
Artigo em Inglês | MEDLINE | ID: mdl-17336598

RESUMO

The purpose of this study was to test the hypothesis that an intact cerebellar fastigial nucleus (CFN) is an important determinant of CO(2)-H(+) sensitivity during wakefulness. Bilateral, stainless steel microtubules were implanted into the CFN (N=9) for injection (0.5-10 microl) of the neurotoxin ibotenic acid. Two or more weeks after implantation of the microtubules, eupneic breathing and CO(2)-H(+) sensitivity did not differ significantly (P>0.10) from pre-implantation conditions. Injection of ibotenic acid (50 mM) did not significantly alter eupneic Pa(CO2) (P>0.10). The coefficient of variation of eupneic Pa(CO2) was 4.0+/-0.6 and 3.7+/-0.4% over the 2 weeks before and after the lesion, respectively. CO(2)-H(+) sensitivity expressed as inspired ventilation/Pa(CO2) decreased from 2.15+/-0.17 pre-lesion to 1.58+/-0.26 l/(min mmHg) 3-6 days post-lesion (P<0.02, -27%). There was no significant (P>0.10) recovery of sensitivity between 7 and 10 days post-lesion. The lesion also increased (P<0.05) the day-to-day variability of this index by nearly 100%. When CO(2) sensitivity was expressed as elevated inspired CO(2)/room air V (I), values at 7%, but not 3 and 5% inspired CO(2), were reduced and more variable (P<0.05) after the ibotenic acid injections. We conclude that during wakefulness, the CFN contributes relatively more to overall ventilatory drive at high relative to low levels of hypercapnia.


Assuntos
Núcleos Cerebelares/fisiologia , Cabras/fisiologia , Mecânica Respiratória/fisiologia , Vigília/fisiologia , Análise de Variância , Animais , Pressão Sanguínea/fisiologia , Dióxido de Carbono/análise , Núcleos Cerebelares/efeitos dos fármacos , Agonistas de Aminoácidos Excitatórios/farmacologia , Feminino , Cabras/anatomia & histologia , Hidrogênio/análise , Ácido Ibotênico/farmacologia , Masculino , Troca Gasosa Pulmonar/efeitos dos fármacos , Troca Gasosa Pulmonar/fisiologia , Mecânica Respiratória/efeitos dos fármacos
11.
J Appl Physiol (1985) ; 101(4): 1199-206, 2006 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-16763105

RESUMO

The purpose of this study was to test the hypothesis that an intact cerebellar fastigial nucleus (CFN) is necessary for the hyperpnea to meet the gas exchange needs of submaximal exercise. Bilateral stainless steel microtubules were implanted in the cerebellum inside (n = 12) or outside (n = 2) the CFN for injection (0.5 to 10 microl) of the neurotoxin ibotenic acid. All goats had difficulty maintaining normal posture and walking for up to 1 mo after the implantation of the microtubules and again for hours or days after the neurotoxin was injected. Postmortem histology indicated there were 55% fewer living neurons (P < 0.001, n = 9, 3,720 +/- 553 vs. 1,670 +/- 192) in the CFN of the experimental goats compared with a control group of goats. As is typical for goats before implantation of the microtubules, the decrease in arterial Pco(2) from rest during mild and moderate treadmill exercise was 2.0 +/- 0.39 and 3.5 +/- 0.45 Torr, respectively. Implantation of the microtubules did not significantly change this exercise hyperventilation. However, neurotoxic lesioning with 10 mul ibotenic acid significantly (P < 0.05) attenuated the decrease in arterial Pco(2) by 1.3 and 2.8 Torr at the first and second workload, respectively. The modest attenuation of the exercise hypocapnia at both workloads in CFN-lesioned goats suggests that the CFN is part of the control system that enables the ventilatory response to meet the gas exchange requirements of submaximal exercise.


Assuntos
Núcleos Cerebelares/patologia , Hiperventilação/patologia , Neurônios/patologia , Condicionamento Físico Animal/fisiologia , Troca Gasosa Pulmonar/fisiologia , Animais , Núcleos Cerebelares/efeitos dos fármacos , Núcleos Cerebelares/fisiologia , Teste de Esforço , Feminino , Cabras , Hiperventilação/etiologia , Hiperventilação/fisiopatologia , Ácido Ibotênico/toxicidade , Masculino , Metisergida/farmacologia , Modelos Animais , Neurônios/efeitos dos fármacos , Neurônios/fisiologia , Consumo de Oxigênio/efeitos dos fármacos , Troca Gasosa Pulmonar/efeitos dos fármacos , Respiração/efeitos dos fármacos , Vasoconstritores/farmacologia
12.
J Appl Physiol (1985) ; 101(1): 241-8, 2006 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-16497844

RESUMO

Our objective in this study was to test the hypothesis that focal acidosis (FA) in the cerebellar fastigial nucleus (CFN) of awake goats arising from global brain acidosis induced by increasing inspired CO2 will increase breathing. FA was created by reverse microdialysis of mock cerebral spinal fluid, equilibrated with 6.4, 25, 50, or 80% CO2 through chronically implanted microtubules (cannula). Dialysis with 6.4% CO2 had no significant effects on any physiological parameters. However, microdialysis at higher levels of CO2 increased pulmonary ventilation (V(I)) in one group of studies and decreased V(I) in a second group and the difference between the groups was significant (t = 9.16, P < 0.001). In one group of studies (n = 8), FA with 50 and 80% CO2 significantly increased (P < 0.05) Vi by 16 and 12%, respectively, and significantly increased (P < 0.05) heart rate by 13 and 9%, respectively. In contrast, in another group of studies (n = 6), FA with 25 and 50% CO2 significantly decreased (P < 0.05) Vi by 7 and 10%, respectively. In this group oxygen consumption was decreased during dialysis with 80% CO2. On the basis of histology, we estimate that the increased and decreased responses were associated with FA primarily in the rCFN and cCFN, respectively. We conclude that there are CO2/H+-sensitive neurons in the CFN that do not uniformly affect breathing. In addition, the significant changes in heart rate and oxygen consumption during FA indicate that the CFN can also influence non-respiratory-related control systems.


Assuntos
Acidose Respiratória/fisiopatologia , Núcleos Cerebelares/fisiologia , Células Quimiorreceptoras/fisiologia , Cabras/fisiologia , Mecânica Respiratória/fisiologia , Vigília/fisiologia , Animais , Dióxido de Carbono/análise , Feminino , Hidrogênio/análise , Masculino , Microdiálise/métodos , Microtúbulos , Consumo de Oxigênio/fisiologia , Ventilação Pulmonar/fisiologia , Respiração
13.
J Appl Physiol (1985) ; 98(4): 1234-42, 2005 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-15579571

RESUMO

Our aim was to determine the effects of carotid body denervation (CBD) on the ventilatory responses to focal acidosis and ibotenic acid (IA) injections into the medullary raphe area of awake, adult goats. Multiple microtubules were chronically implanted into the midline raphe area nuclei either before or after CBD. For up to 15 days after bilateral CBD, arterial PCO2 (PaCO2) (13.3 +/- 1.9 Torr) was increased (P < 0.001), and CO2 sensitivity (-53.0 +/- 6.4%) was decreased (P <0.001). Thereafter, resting PaCO2 and CO2 sensitivity returned (P <0.01) toward control, but PaCO2 remained elevated (4.8 +/- 1.9 Torr) and CO2 sensitivity reduced (-24.7 +/- 6.0%) > or =40 days after CBD. Focal acidosis (FA) at multiple medullary raphe area sites 23-44 days post-CBD with 50 or 80% CO(2) increased inspiratory flow (Vi), tidal volume (Vt), metabolic rate (VO2), and heart rate (HR) (P <0.05). The effects of FA with 50% CO2 after CBD did not differ from intact goats. However, CBD attenuated (P <0.05) the increase in Vi, Vt, and HR with 80% CO2, but it had no effect on the increase in VO2. Rostral but not caudal raphe area IA injections increased Vi, BP, and HR (P < 0.05), and these responses were accentuated (P <0.001) after CBD. CO2 sensitivity was attenuated (-20%; P <0.05) <7 days after IA injection, but thereafter it returned to prelesion values in CBD goats. We conclude the following: 1) the attenuated response to FA after CBD provides further evidence that the carotid bodies provide a tonic facilitory input into respiratory control centers, 2) the plasticity after CBD is not due to increased raphe chemoreceptor sensitivity, and 3) the "error-sensing" function of the carotid body blunts the effect of strong stimulation of the raphe.


Assuntos
Acidose/fisiopatologia , Corpo Carotídeo/fisiopatologia , Corpo Carotídeo/cirurgia , Oxigênio/metabolismo , Ventilação Pulmonar , Núcleos da Rafe/efeitos dos fármacos , Acidose/induzido quimicamente , Adaptação Fisiológica/efeitos dos fármacos , Animais , Corpo Carotídeo/efeitos dos fármacos , Denervação , Feminino , Cabras , Ácido Ibotênico , Masculino , Orquiectomia
15.
J Appl Physiol (1985) ; 97(6): 2236-47, 2004 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-15322066

RESUMO

The major objective of this study was to gain insight into whether under physiological conditions medullary raphe area neurons influence breathing through CO(2)/H(+) chemoreceptors and/or through a postulated, nonchemoreceptor modulatory influence. Microtubules were chronically implanted into the raphe of adult goats (n = 13), and breathing at rest (awake and asleep), breathing during exercise, as well as CO(2) sensitivity were assessed repeatedly before and after sequential injections of the neurotoxins saporin conjugated to substance P [SP-SAP; neurokinin-1 receptor (NK1R) specific] and ibotenic acid (IA; nonspecific glutamate receptor excitotoxin). In all goats, microtubule implantation alone resulted in altered breathing periods, manifested as central or obstructive apneas, and fractionated breathing. The frequency and characteristics of the altered breathing periods were not subsequently affected by injections of the neurotoxins (P > 0.05). Three to seven days after SP-SAP or subsequent IA injection, CO(2) sensitivity was reduced (P < 0.05) by 23.8 and 26.8%, respectively, but CO(2) sensitivity returned to preinjection control values >7 days postinjection. However, there was no hypoventilation at rest (awake, non-rapid eye movement sleep, or rapid eye movement sleep) or during exercise after these injections (P > 0.05). The neurotoxin injections resulted in neuronal death greater than three times that with microtubule implantation alone and reduced (P < 0.05) both tryptophan hydroxylase-expressing (36%) and NK1R-expressing (35%) neurons at the site of injection. We conclude that both NK1R- and glutamate receptor-expressing neurons in the medullary raphe nuclei influence CO(2) sensitivity apparently through CO(2)/H-expressing chemoreception, but the altered breathing periods appear unrelated to CO(2) chemoreception and thus are likely due to non-chemoreceptor-related neuromodulation of ventilatory control mechanisms.


Assuntos
Dióxido de Carbono/metabolismo , Células Quimiorreceptoras/fisiologia , Bulbo/fisiologia , Núcleos da Rafe/fisiologia , Mecânica Respiratória/fisiologia , Substância P/análogos & derivados , Animais , Contagem de Células , Denervação , Agonistas de Aminoácidos Excitatórios/toxicidade , Feminino , Cabras , Ácido Ibotênico/toxicidade , Imunotoxinas/toxicidade , Bulbo/patologia , Núcleos da Rafe/patologia , Proteínas Inativadoras de Ribossomos Tipo 1 , Saporinas , Substância P/toxicidade , Vigília/fisiologia
16.
J Appl Physiol (1985) ; 97(6): 2303-9, 2004 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-15322068

RESUMO

To gain insight into why there are chemoreceptors at widespread sites in the brain, mircrotubules were chronically implanted at two or three sites in the medullary raphe nuclei of adult goats (n = 7). After >2 wk, microdialysis (MD) probes were inserted into the microtubules to create focal acidosis (FA) in the awake state using mock cerebral spinal fluid (mCSF) equilibrated with 6.4% (pH = 7.3), 50% (pH = 6.5), or 80% CO(2) (pH = 6.3), where MD with 50 and 80% CO(2) reduces tissue pH by 0.1 and 0.18 pH unit, respectively. There were no changes in all measured variables with MD with 6.4% at single or multiple raphe sites (P > 0.05). During FA at single raphe sites, only 80% CO(2) elicited physiological changes as inspiratory flow was 16.9% above (P < 0.05) control. However, FA with 50 and 80% CO(2) at multiple sites increased (P < 0.05) inspiratory flow by 18.4 and 30.1%, respectively, where 80% CO(2) also increased (P < 0.05) tidal volume, heart rate, CO(2) production, and O(2) consumption. FA with 80% CO(2) at multiple raphe sites also led to hyperventilation (-2 mmHg), indicating that FA had effects on breathing independent of an increased metabolic rate. We believe these findings suggest that the large ventilatory response to a global respiratory brain acidosis reflects the cumulative effect of stimulation at widespread chemoreceptor sites rather than a large stimulation at a single site. Additionally, focal acidification of raphe chemoreceptors appears to activate an established thermogenic response needed to offset the increased heat loss associated with the CO(2) hyperpnea.


Assuntos
Acidose Respiratória/fisiopatologia , Células Quimiorreceptoras/fisiologia , Bulbo/fisiologia , Núcleos da Rafe/fisiologia , Respiração , Animais , Dióxido de Carbono/metabolismo , Feminino , Cabras , Masculino , Microdiálise , Mecânica Respiratória/fisiologia , Descanso/fisiologia , Vigília/fisiologia
17.
J Appl Physiol (1985) ; 97(5): 1620-8, 2004 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-15247160

RESUMO

In awake rats, >80% bilateral reduction of neurokinin-1 receptor (NK1R)-expressing neurons in the pre-Bötzinger complex (pre-BötzC) resulted in hypoventilation and an "ataxic" breathing pattern (Gray PA, Rekling JC, Bocchiaro CM, Feldman JL, Science 286: 1566-1568, 1999). Accordingly, the present study was designed to gain further insight into the role of the pre-BötzC area NK1R-expressing neurons in the control of breathing during physiological conditions. Microtubules were chronically implanted bilaterally into the medulla of adult goats. After recovery from surgery, the neurotoxin saporin conjugated to substance P, specific for NK1R-expressing neurons, was bilaterally injected (50 pM in 10 microl) into the pre-BötzC area during the awake state (n = 8). In unoperated goats, 34 +/- 0.01% of the pre-BötzC area neurons are immunoreactive for the NK1R, but, in goats after bilateral injection of SP-SAP into the pre-BötzC area, NK1R immunoreactivity was reduced to 22.5 +/- 2.5% (29% decrease, P < 0.01). Ten to fourteen days after the injection, the frequency of abnormal breathing periods was sixfold greater than before injection (107.8 +/- 21.8/h, P < 0.001). Fifty-six percent of these periods were breaths of varying duration and volume with an altered respiratory muscle activation pattern, whereas the remaining were rapid, complete breaths with coordinated inspiratory-expiratory cycles. The rate of occurrence and characteristics of abnormal breathing periods were not altered during a CO2 inhalation-induced hyperpnea. Pathological breathing patterns were eliminated during non-rapid eye movement sleep in seven of eight goats, but they frequently occurred on arousal from non-rapid eye movement sleep. We conclude that a moderate reduction in pre-BötzC NK1R-expressing neurons results in state-dependent transient changes in respiratory rhythm and/or eupneic respiratory muscle activation patterns.


Assuntos
Bulbo/citologia , Bulbo/fisiologia , Neurônios/citologia , Neurônios/fisiologia , Receptores da Neurocinina-1/fisiologia , Respiração , Substância P/análogos & derivados , Animais , Ataxia/induzido quimicamente , Ataxia/fisiopatologia , Feminino , Cabras , Imunotoxinas/administração & dosagem , Imunotoxinas/farmacologia , Injeções , Masculino , Bulbo/metabolismo , Bulbo/fisiopatologia , Neurônios/metabolismo , Periodicidade , Receptores da Neurocinina-1/metabolismo , Proteínas Inativadoras de Ribossomos Tipo 1 , Saporinas , Substância P/administração & dosagem , Substância P/farmacologia , Vigília
18.
J Appl Physiol (1985) ; 97(5): 1629-36, 2004 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-15247161

RESUMO

In awake goats, 29% bilateral destruction of neurokinin-1 receptor-expressing neurons in the pre-Bötzinger complex (pre-BötzC) area with saporin conjugated to substance P results in transient disruptions of the normal pattern of eupneic respiratory muscle activation (Wenninger JM, Pan LG, Klum L, Leekley T, Bastastic J, Hodges MR, Feroah T, Davis S, and Forster HV. J Appl Physiol 97: 1620-1628, 2004). Therefore, the purpose of these studies was to determine whether large or total lesioning in the pre-BötzC area of goats would eliminate phasic diaphragm activity and the eupneic breathing pattern. In awake goats that already had 29% bilateral destruction of neurokinin-1 receptor-expressing neurons in the pre-BötzC area, bilateral ibotenic acid (10 microl, 50 mM) injection into the pre-BötzC area resulted in a tachypneic hyperpnea that reached a maximum (132 +/- 10.1 breaths/min) approximately 30-90 min after bilateral injection. Thereafter, breathing frequency declined, central apneas resulted in arterial hypoxemia (arterial Po2 approximately 40 Torr) and hypercapnia (arterial Pco2 approximately 60 Torr), and, 11 +/- 3 min after the peak tachypnea, respiratory failure was followed by cardiac arrest in three airway-intact goats. However, after the peak tachypnea in four tracheostomized goats, mechanical ventilation was initiated to maintain arterial blood gases at control levels, during which there was no phasic diaphragm or abdominal muscle activity. When briefly removed from the ventilator (approximately 90 s), these goats became hypoxemic and hypercapnic. During this time, minimal, passive inspiratory flow resulted from phasic abdominal muscle activity. We estimate that 70% of the neurons within the pre-BötzC area were lesioned in these goats. We conclude that, in the awake state, the pre-BötzC is critical for generating a diaphragm, eupneic respiratory rhythm, and that, in the absence of the pre-BötzC, spontaneous breathing reflects the activity of an expiratory rhythm generator.


Assuntos
Bulbo/fisiologia , Respiração , Animais , Diafragma/fisiologia , Feminino , Cabras , Ácido Ibotênico , Inalação , Masculino , Bulbo/fisiopatologia , Periodicidade , Transtornos Respiratórios/induzido quimicamente , Transtornos Respiratórios/fisiopatologia , Músculos Respiratórios/fisiologia , Vigília
19.
J Appl Physiol (1985) ; 96(5): 1815-24, 2004 May.
Artigo em Inglês | MEDLINE | ID: mdl-14672965

RESUMO

Our aim was to determine the effects of focal acidification in the raphe obscurus (RO) and raphe pallidus (RP) on ventilation and other physiological variables in both the awake and sleep states in adult goats. Through chronically implanted microtubules, 1) a focal acidosis was created by microdialysis of mock cerebrospinal fluid (mCSF), equilibrated with various levels of CO2, and 2) medullary extracellular fluid (ECF) pH was measured by using a custom-made pH electrode. Focal acidosis in the RO or RP, by dialyzing either 25 or 80% CO2 (mCSF pH approximately 6.8 or 6.3), increased (P < 0.05) inspiratory flow by 8 and 12%, respectively, while the animals were awake during the day, but not at night while they were awake or in non-rapid eye movement sleep. While the animals were awake during the day, there were also increases in heart rate and blood pressure (P < 0.05) but no significant change in metabolic rate or arterial Pco2. Dialysis with mCSF equilibrated with 25 or 80% CO2 reduced ECF pH by the same amount (25%) or three times more (80%) than when inspired CO2 was increased to 7%. During CO2 inhalation, the reduction in ECF pH was only 50% of the reduction in arterial pH. Finally, dialysis in vivo only decreased ECF pH by 19.1% of the change during dialysis in an in vitro system. We conclude that 1) the physiological responses to focal acidosis in the RO and RP are consistent with the existence of chemoreceptors in these nuclei, and 2) local pH buffering mechanisms act to minimize changes in brain pH during systemic induced acidosis and microdialysis focal acidosis and that these mechanisms could be as or more important to pH regulation than the small changes in inspiratory flow during a focal acidosis.


Assuntos
Acidose/fisiopatologia , Encefalopatias/fisiopatologia , Bulbo , Núcleos da Rafe/fisiopatologia , Respiração , Sono , Vigília , Acidose/induzido quimicamente , Administração por Inalação , Animais , Pressão Sanguínea , Encefalopatias/induzido quimicamente , Soluções Tampão , Dióxido de Carbono/administração & dosagem , Líquido Extracelular/metabolismo , Cabras , Frequência Cardíaca , Concentração de Íons de Hidrogênio , Microdiálise
20.
Respir Physiol Neurobiol ; 138(1): 59-75, 2003 Oct 16.
Artigo em Inglês | MEDLINE | ID: mdl-14519378

RESUMO

Experimentally induced neuronal dysfunction in respiratory regions of the rostral medulla decrease breathing more in anesthetized mammals than in awake mammals. Sleep is similar to anesthesia in that excitatory inputs to respiratory neurons are reduced compared to the awake state; thus, we hypothesized that neurotoxic lesions in rostral medullary nuclei would, relative to wakefulness (WK), induce and/or accentuate hypoventilation during non-rapid eye movement (NREM) sleep. To test the hypothesis, goats were studied between 21:00 h and 03:00 h: (1) before and 30 days after chronically implanting microtubules bilaterally into the rostral medulla and, (2) 9-15 h and 2-17 days after unilateral injections of 100 nl to 1 microl, 50 mM ibotenic acid into the vestibular, gigantocellularis reticularis, or facial nuclei, or the retrotrapezoid nucleus/parapyramidal region. Arterial blood was repeatedly sampled in all studies during WK, and NREM and rapid eye movement (REM) sleep states. There was no significant (P>0.10) change in Pa(CO(2)) between WK and NREM sleep (and REM sleep when sufficient data were obtained) before or after implantation of microtubules and in studies after creating the neurotoxic lesions. Breathing frequency also did not significantly (P>0.10) differ between states in any of the studies. The data thus did not support the hypothesis. We speculate that in goats efficient compensatory mechanisms maintain Pa(CO(2)) homeostasis during normal sleep and the same and/or other mechanisms maintain homeostasis when excitatory drive is further reduced by lesions in rostral medullary nuclei.


Assuntos
Tronco Encefálico/fisiologia , Hipoventilação/fisiopatologia , Bulbo/fisiologia , Mecânica Respiratória/fisiologia , Fases do Sono/fisiologia , Animais , Cabras , Ventilação Pulmonar/fisiologia , Vigília/fisiologia
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