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21.
T. N. Bodrova A. I. Korzilov F. F. Tetenev 《Bulletin of experimental biology and medicine》1993,115(1):19-20
Translated fromByulleten' Eksperimental'noi Biologii i Meditsiny, No. 1, pp. 20–21, January, 1993 相似文献
22.
Daudu PA Roy A Rozanov C Mokashi A Lahiri S 《Respiratory physiology & neurobiology》2002,130(1):21-31
The hypothesis that chelation of free iron, by decreasing reactive oxygen species (ROS), might mimic hypoxia and stimulate the carotid body was tested. We used the iron chelators, desferrioxamine (DFO, 200-400 microM) initially, and later ciclopirox olamine (CPX, 2.5-5.0 microM), on rat carotid body in vitro and measured chemosensory activity and [Ca2+]i in isolated cultured glomus cell clusters during normoxia and hypoxia. Although acute treatment of DFO might not penetrate the cell, and extracellular DFO would not influence these activities whereas CPX significantly increased chemosensory activities as well as increased [Ca2+]i in normoxia. We concluded that chelation of extracellular free iron did not alter ROS formation and oxygen sensing. Chelation of intracellular free iron and, therefore, a decrease in intracellular ROS appears to influence oxygen sensing in the carotid body. 相似文献
23.
The aim of the study was to investigate whether wheezing is associated with disturbed sleep and increased daytime symptoms in school-aged children. A random sample of 1234 children, aged 6-14 years, participated in a respiratory health study in the region of Antwerp. The International Study of Asthma and Allergies in Childhood questionnaire and a separate sleep questionnaire were completed. In the children who wheezed in the last 12 months, sleep quality was more frequently disturbed due to nocturnal awakenings and restless sleep compared with children who did not wheeze. Daytime sleepiness and tiredness were more common in wheezing than in non-wheezing children. After adjusting for possible confounders a positive association was found between wheeze and: difficulties falling asleep [odds ratio (OR) = 2.0], restless sleep (OR = 5.0), daytime sleepiness (OR = 3.8) and daytime tiredness (OR = 5.1). Chronic cough (OR = 2.4), snoring (OR = 2.0), chronic rhinitis (OR = 2.6) and eczema (OR = 3.3) were associated with disturbed sleep. Chronic cough (OR = 2.5) and rhinitis (OR = 4.1) were related to daytime tiredness. Chronic rhinitis was an important risk factor for snoring (OR = 1.9). In wheezing school-aged children, decreased quality of sleep and increased daytime tiredness and sleepiness were more often reported. Upper airway symptoms were related to the sleep disturbances. 相似文献
24.
To assess the performance of continuous positive airway pressure devices in treatment of sleep breathing disorders during polysomnographic studies, analysis are based essentially on the patient airflow signal measured by a pneumotachograph and the mask pressure. These signals used either by the softwares or the physicians provide powerful information on respiratory events occurring during the night. However, sometimes signals are artifacted by airflow leaks at the mask or the mouth. These artifacts are causes of information loss and then of possible wrong interpretations. We studied the relationship between airflow and mask pressure at the occurrence of leaks. We used analogy with electrical models and Kirchoff laws to estimate mask leaks and to detect mouth breathing. A Starling model connected to a flow generator simulated respiratory movements. A positive pressure was maintained in the model and artificial leaks comparable to mask leaks were provoked. Then, we replaced the Starling model and the flow generator by two healthy volunteers. We computed mask leaks in both conditions and found no contradiction between the simulated model and the subjects. Equations of the analog circuit were helpful to assess mask leaks and to detect mouth breathing. Such equations could be included in polysomnographs or in pressure generator algorithms either for detecting leaks or adjusting airway pressure. 相似文献
25.
Because yoga practitioners think they are benefiting from their breath training we hypothesized that yoga respiration training (YRT) could modify the respiratory sensation. Yoga respiration (YR) ("ujjai") consisted of very slow, deep breaths (2-3 min(-1)) with sustained breath-hold after each inspiration and expiration. At inclusion in the study and after a 2-month YRT program, we determined in healthy subjects their eupneic ventilatory pattern and their capacity to discriminate external inspiratory resistive loads (respiratory sensation), digital tactile mechanical pressures (somesthetic sensation) and sound-pressure stimulations (auditory sensation). Data were compared to a gender-, age-, and weight-matched control group of healthy subjects who did not undergo the YRT program but were explored at the same epochs. After the 2-month YRT program, the respiratory sensation increased. Thus, both the exponent of the Steven's power law (Psi=kPhin) and the slope of the linear-linear plot between Psi and mouth pressure (Pm) were significantly higher, and the intercept with ordinate axis of the Psi versus Pm relationship was lower. After YRT, the peak Pm developed against inspiratory loads was significantly lower, reducing the load-induced activation of respiratory afferents. YRT induced long-lasting modifications of the ventilatory pattern with a significant lengthening of expiratory duration and a modest tidal volume increase. No significant changes in somesthetic and auditory sensations were noted. In the control group, the respiratory sensation was not modified during a 15-min period of yoga respiration, despite the peak Pm changes in response to added loads were then significantly reduced. These data suggest that training to yoga respiration selectively increases the respiratory sensation, perhaps through its persistent conditioning of the breathing pattern. 相似文献
26.
Montandon G Kinkead R Lomenech AM Bairam A Guénard H 《Respiratory physiology & neurobiology》2005,147(1):117-122
Cerebral blood flow is strictly regulated during hypoxic stress. Because of the preponderant role of the brainstem in cardiorespiratory controls, blood flow response to hypoxia is stronger in this region than in the cortex. However, the brainstem is made up of various regions which differ in their responsiveness to chemical stimuli. The objective of this study was to evaluate the distribution of blood flow during hypoxia using microsphere deposition methods in three brainstem regions containing key structures in cardiorespiratory controls: the nucleus tractus solitarus (NTS), the ventral respiratory groups (VRG) and the pontine respiratory groups (PRG). Microsphere injections were made during normoxia (FIO2=0.21) and after 15 min of hypoxia (FIO2=0.21). Based on this index, blood flow increase during hypoxia was higher in the VRG than in the dorsal part of the brainstem, containing the NTS and the PRG (P=0.002, n=10). These results suggest that blood flow response to hypoxia favours O(2) delivery in brainstem regions involved in respiratory rhythm generation. 相似文献
27.
Pietro Badia John Harsh Joel Culpepper Joseph Shaffer 《Journal of behavioral medicine》1988,11(6):585-592
Behavioral control of abnormal breathing in sleep was studied to determine if an intervention procedure could reduce apnea duration and also SaO
2
(blood oxygen) desaturation levels. Sleep apnea patients (n=11) were instructed while awake that tones would be presented in sleep whenever an apnea event occurred. They were told to breathe deeply to the tones and were given practice in doing so. Intervention and nonintervention hours alternated across 2 nights following 2 baseline nights. As expected, during the intervention hours, the duration but not the frequency of apneic events was reduced. The procedure also resulted in higher SaO
2
levels during the intervention hours. Daytime sleepiness was not greater following intervention but sleep staging effects were observed. The results are sufficiently promising to warrant additional research.This research was supported by NIH Grants 2 HL 27149-84 and HL 34125 entitled Behavioral Control of Respiration in Sleep. 相似文献
28.
Jacopo P. Mortola John T. Fisher Giuseppe Sant'Ambrogio 《Pflügers Archiv : European journal of physiology》1984,401(3):281-286
In an attempt to define the role of SARs on the breathing pattern and respiratory mechanics, we have studied adult rabbits
anaesthetised, supine and tracheostomised during air breathing (A), after SO2 breathing (200 ppm for a period long enough to abolish the apnea following lung inflation, 10–30 min) (S), and after bilateral
vagotomy (V). Tidal volume and inspiratory time increased, while breathing frequency decreased from A to V. The effects of
S depended upon the type of anaesthesia used, with a definite increase in volume and a drop in frequency in the urethane anaesthetized
animals and a trend toward opposite changes with barbiturate anaesthesia. Total and lung compliance increased and total pulmonary
resistance decreased from A to S; no further changes were observed with V. The combined changes in breathing pattern and mechanics
decreased the respiratory work per minute from A to V, suggesting that the primary concern of the vagal afferent information
is to regulation even with SO2 concentration up to 330 ppm for 30 min. From A to V the changes in breathing pattern and compliance were similar to those
observed in the adult. 相似文献
29.
Chemoreceptors in the ventral medulla contribute to the respiratory response to hypercapnia. Do they ‘sense’ intracellular pH (pHi)? We measured pHi in the ventral medulla or cortex (control) using 31P-NMR obtained via a novel 3×5 mm2 surface coil in anesthetized rats breathing air or 7% CO2. During air breathing over 240 min, pHi decreased slightly from 7.13±0.02 to 7.05±0.02 (SEM; n=5; 2 cortex, 3 ventral medulla). During 180 min of hypercapnia, cortical pHi (n=4) decreased from 7.17±0.02 to 6.87±0.01 by 90 min and recovered by 150 min. Ventral medulla pHi showed no such regulation. It decreased from 7.11±0.02 to 6.88±0.02 at 90 min and recovered only after cessation of hypercapnia (n=5), results consistent with pHi being the chemoreceptor stimulus. However, non-chemoreceptor neurons that contribute to our medullary NMR signal also do not appear to regulate pHi in vitro. Regional differences in pHi regulation between cortex and ventral medulla may be due to both chemosensitive and non-chemosensitive neurons. 相似文献
30.
Saito EH Castro MP Menezes SL Haddad R Antonangelo L Teixeira LR Negri EM Capelozzi VL Rocco PR Zin WA 《Respiratory physiology & neurobiology》2004,139(3):271-280
The aim of this study was to determine whether an intrapleural injection of barium sulphate would produce pleurodesis in rats. Additionally, respiratory mechanics and pleural remodelling were analysed. Single intrapleural injection of barium sulphate (100%) or saline was given to Wistar rats. Respiratory system, lung, and chest wall elastic, resistive and viscoelastic/inhomogeneous pressures were measured by the end-inflation occlusion method at 2 and 30 days after injection. The pleura were examined for gross and histopathological evidence of pleural inflammation and fibrosis, and the underlying lungs were also studied by morphometry. All pulmonary mechanical parameters increased at day 2, but were not different from control at 30 days after injection. Chest wall mechanical parameters did not change. Macroscopic evaluation demonstrated pleural adherence without haemothorax. Histopathologic analysis showed pleural inflammation and fibrosis. There was no alveolar inflammation or fibrosis in both groups. In conclusion, barium sulphate induced pleurodesis with either no changes in respiratory mechanics or lung lesion at day 30. 相似文献