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Biomedical subjects

F Palecek

Publications and source records attributed to F Palecek.

At least 19 recordsLinked to original sources

Hypoventilation after acute phrenicotomy of the urethane anaesthetized rats.

The aim of this study was to explore the mechanism resulting in hypoventilation in rats with denervated diaphragm. Bilateral cervical phrenicotomy (PX) was performed in 15 male rats anaesthetized with urethane (1.3 g/kg i.p.); other 8 rats were sham operated (SX). Ventilation, PaCO2 and the integrated EMG of the external intercostal muscles (iEMG) were measured before and after the surgery, at regular intervals, up to 4 hours postoperatively. During the 4 hours after PX there was a progressive decrease in minute ventilation and an increase in PaCO2 compared with the control values and with that in the SX rats. The increase in PaCO2 was accompanied by an increase in the peak amplitude of the iEMG to 155 +/- 18% of control values after PX and to 228 +/- 33% 4 hours later. Despite the augmented EMG activity tidal volume gradually decreased. The iEMG of the intercostal muscles, however, did not reach a maximum because the shortlasting stimulation of breathing by acute hypercapnia and hypoxia as the result of added dead space (0.5 ml) increased the iEMG still further. These results indicate that both the central and peripheral mechanisms contribute to hypoventilation in anaesthetized rats with denervated diaphragm.

Anesthesia

Fixed breathing frequency decreases end-tidal PCO2 in humans.

We tested the effect of a fixed breathing frequency on the partial pressure of CO2 in the end-tidal air (PETCO2) in resting healthy subjects. In the first experiment, three different rates of breathing were dictated: the same frequency of breathing as the subject's control one (1f), a double frequency (2f), and half of the control frequency (0.5f). 10 min dictate of 1f and 2f induced a decrease of PETCO2. The dictate of 0.5f had no significant effect on PETCO2. In the second experiment, 1f was dictated for 30 min, inducing a decrease of PETCO2 throughout the duration of the dictate. These results demonstrate that fixing the breathing frequency by the dictate affects the chemostatic control of ventilation.

Adult

Breathing of phrenicotomized rats.

Bilateral paralysis of the diaphragm can result in normo or hypoventilation, according to the species studied. Our aim was to ascertain the results of bilateral phrenicotomy in the rat and, if hypoventilation should be present, to try to identify its pathophysiology. We used 33 male rats under urethane anaesthesia (1.3 g/kg i.p.). They were divided into three groups: control animals, rats with bilateral phrenicotomy and a group with two doses of pentobarbital (25 mg/kg i.p. each) on top of the urethane anaesthesia. We observed pronounced hypoventilation both in the rats after phrenicotomy and those with pentobarbital. At comparable levels of hypoventilation (PaCO2 = 5.61 +/- 0.28 kPa immediately after phrenicotomy and 5.91 +/- 0.25 kPa after the first dose of pentobarbital; and 7.21 +/- 0.47 kPa 4 hours after phrenicotomy and 7.38 +/- 0.39 kPa after the second dose of pentobarbital) the only difference was a longer relative duration of inspiration in phrenicotomized rats; (0.39 +/- 0.04 and 0.34 +/- 0.04 after phrenicotomy; 0.32 +/- 0.04 and 0.24 +/- 0.05 in rats after pentobarbital). Immediately after phrenicotomy and 2 and 4 hours later, and also after both doses of pentobarbital breathing was stimulated by hypoxia and hypercapnia due to the additional external dead space (0.5 ml) for 5 min. There was no pronounced differences in the ventilatory response to the dead space between the two groups; the response changed from an isocapnic (in control rats and before phrenicotomy or pentobarbital) to an isoventilatory one (four hours after phrenicotomy and after the second dose of pentobarbital). The rats after the second dose of pentobarbital did not, however, survive the added dead space.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Aminophylline enhances ventilation in phrenicotomized rats.

The aim was to test the effects of aminophylline (AP) on breathing of phrenicotomized rats. Fifty seven male rats of the Wistar strain were anaesthetized with 1.3 g.kg-1 urethane i.p. They were phrenicotomized, divided into 6 groups and given 5, 10, 20, 40 and 80 mg.kg-1 AP i.v. or a corresponding volume of saline. Ventilation, tracheal occlusion pressure and arterial blood gases were measured. In all animals phrenicotomy resulted in hypoventilation with corresponding hypoxaemia (from control 11.9 +/- 1.0 to 10.4 +/- 0.8 kPa) and hypercapnia (from control 4.6 +/- 0.5 to 5.5 +/- 0.6 kPa). In the control group (with saline) 4 h later the PaO2 was 8.6 +/- 1.1 kPa and PaCO2 7.2 +/- 0.6 kPa. After AP 1 h after phrenicotomy the minute ventilation increased in a dose-dependent manner by 1-66%. 4 h after phrenicotomy the minute ventilation of rats with 20 and 40 mg.kg-1 of AP was significantly higher than that of the control group. AP prevented hypoventilation when injected into phrenicotomized rats. The results give no unequivocal basis from which to decide the proportion of central and peripheral effects of AP.

Aminophylline

The pattern of breathing and the ventilatory response to breathing through a tube and to physical exercise in sport divers.

Well-trained divers can be expected to differ from healthy controls in their ventilatory response to breathing through a tube and to physical exercise. Therefore, we measured their minute ventilation (VE) at rest and during breathing through a tube combined with two levels of physical exercise (1 or 2 W.kg body weight-1). For breathing through a tube an additional dead space of 600 ml was used. All divers were trained in the breath-hold technique and in the use of the breathing apparatus. Their mean period of training as divers was 9 +/- 6 years. The approximate age of the subjects was 25 years. The pattern of breathing and the oxygen uptake were measured by spirometer, the end-tidal concentration of CO2 was measured and all experiments were carried out above sea level. The ventilation of the divers at rest was comparable to that of the controls. During physical exercise it was smaller whether during breathing through a tube or not. The inadequate increase of VE during exercise in divers was associated with hypercapnia only at a higher physical work intensity (of 2 W.kg-1). This finding is interpreted as a lower chemoregulatory response to the combined stimuli of hypercapnia, hypoxia and physical exercise. In some situations significant bradypnoea and higher tidal volumes were found in the divers.

Adolescent

Reflex responses to capsaicin: intravenous, aerosol, and intratracheal administration.

Intravenous capsaicin elicits the "pulmonary chemoreflex" (apnea, bradycardia, and hypotension) presumably through the stimulation of "pulmonary C-fibers." The present study was designed to ascertain whether tracheobronchial C-fibers play a role in the above reflex response. We compared the effects of capsaicin injected intravenously, administered as an aerosol, and administered topically into the intrathoracic trachea in anesthetized dogs (n = 17) and rats (n = 17). We measured esophageal, subglottic, and arterial pressures together with abdominal muscle electromyogram. Changes in expiratory duration [(TE), measured as the ratio TEtest to TEcontrol, mean +/- SD] due to capsaicin were similar with all three routes of administration in both dogs (intravenous, 7.9 +/- 4.6; aerosol, 5.5 +/- 3.1; topically into intrathoracic trachea, 7.1 +/- 4.8) and rats (intravenous, 22.6 +/- 10.3; aerosol, 11.1 +/- 8.2; topically into intrathoracic trachea, 21.6 +/- 4.6). An increase in laryngeal resistance was a constant finding in the rat, but it was less frequent in the dog. Cardiovascular responses consisting of bradycardia and hypotension occurred with all three routes of administration but had longer delays than the respiratory responses. Capsaicin instillation into the extrathoracic trachea in dogs (n = 7) also induced qualitatively similar cardiorespiratory responses. We conclude that 1) capsaicin-sensitive receptors are accessible from both the pulmonary circulation and the airway lumen and 2) afferents, even in the extrapulmonary portion of the tracheobronchial tree, can play a role in the reflex responses to intraluminal capsaicin.

Administration, Inhalation

Elastic properties of the rat respiratory system related to age.

The experiments were performed on male rats of the Wistar strain under urethane anaesthesia (1.3 g/kg i.p.). Changes of oesophageal and tracheal pressures were registered in a group of 30 spontaneously breathing, supine rats, of 295 +/- 13 g average body weight during lung inflations with 1-5 ml of air. In another group of 25 rats of 70 +/- 6 g average body weight (young rats) we made the measurements during inflation with volumes 0.5-2 ml. The measurements were also performed in a group of 10 paralyzed, ventilated rats with 347 +/- 24 g average body weight and inflations 1-5 ml. Compliance of the lungs (CL), chest wall (CW) and of the respiratory system (Crs) was calculated from the linear part of the pressure-volume curve during inflation. The results indicate: 1. Cw is significantly (p less than 0.001) higher in young (134.7 ml.kPa-1.kg-1) than in adult rats (44.1 ml.kPa-1.kg-1). CL (related to body weight) is not significantly different in young and adult rats. 2. Cw is significantly (p less than 0.001) higher than CL. 3. No difference was observed in CLs Cw and Crs between paralyzed and spontaneously breathing animals.

Aging

Electromyographic activity of expiratory muscles in the rat.

We examined the participation of expiratory muscles on breathing in the rat. The experiments were performed on 16 male rats in halothane [1.5%] or urethane [1.3 g/kg i.p.] anaesthesia. We recorded the electromyographic [EMG] activity of intercostal and abdominal muscles with a concentric needle electrode during quiet breathing, breathing against increased pressure in the airways and during the expiration reflex. In halothane anaesthesia the EMG expiratory phasic activity was observed only in internal intercostal muscles in 40% of spots examined during quiet breathing and in 58.5% when breathing against increased pressure. The EMG activity during the expiratory reflex was difficult to evaluate. In the abdominal muscles permanent EMG activity was found in 66% of trials. In urethane anaesthesia no phasic expiratory EMG activity was observed in intercostal or abdominal muscles. In abdominal muscles in 9% of trials a permanent activity was found.

Anesthesia

Pulmonary hypertension in rats with papain emphysema.

Lung emphysema was produced in 80 rats by tracheal chronic constriction and repeated instillations of 0.1% papain solution intratracheally. 17 animals survived 90 days of the experiment; a complete examination was performed on 14 experimental and 11 control animals. 9 rats of the experimental group had pulmonary hypertension, in 5 other rats the pulmonary arterial blood pressure was not different from that in the controls. The experimental animals with hypertension had arterial hypoxemia and increased weight of the right ventricle. All experimental rats (with and without pulmonary hypertension) had increased air spaces in the lung and thickened media of distal pulmonary vessels. After breathing 100% oxygen for 20 min, the pulmonary arterial blood pressure in animals with pulmonary hypertension decreased but did not reach the control level. The decrease of the mean pulmonary arterial blood pressure after oxygen breathing correlated well with the initial level of pulmonary hypertension and with the degree of hypoxemia during air breathing.

Animals

Effect of anaesthesia on the pattern of breathing.

The pattern of breathing of male rats was studied after stimulating respiration with carbon dioxide at different levels of general anaesthesia. Anaesthesia was induced by the inhalation of halothane or by the i.p. injection of urethane. Ventilation values were measured in intubated rats in body plethysmograph. It was found that a linear relationship between minute ventilation and tidal volume was maintained during the decrease of minute ventilation due to deepening of anaesthesia. The slope of the relationship after stimulating respiration with carbon dioxide also diminished during deeper anaesthesia. The duration of inspiration did not alter significantly, despite marked changes in tidal volume. Tidal volume correlated with the duration of expiration at different anaesthesia levels. In vagotomized rats, the duration of expiration shortened as ventilation was depressed by deepening anaesthesia.

Anesthesia, Inhalation

Pattern of breathing in the rat.

The basic ventilation values - tidal volume (VT), breathing frequency (f), minute ventilation (VE) and the duration of inspiration (TI) and expiration (TE) -- were determined in adult male rats. The range of these values is given and the pattern of breathing is defined as the relationship between VE and VT, which in the rat is linear throughout its entire range. The role of TI and TE in changing f in the rat were evaluated. The breathing pattern of the rat was compared with data for the rabbit and man, using percentual expression of the basic values. A shift of the breathing pattern to higher f values was observed in rats with experimental lung diseases. In these rats, the inhalation of 100% O2 shifted the pattern of breathing markedly to lower VE values, though not to values comparable with the controls. Bilateral cervical vagotomy was followed by a pronouced decrease in f, an increase in VT and T1 persisted even after vagotomy, however; it can be assumed that this relationship is effected either by means of receptors in the chest muscles, or by the direct action of CO2 which is used to stimulate breathing, on the bulbopontine pacemaker.

Anesthesia

Causes of experimental pulmonary hypertension in rats.

Experimental pulmonary hypertension was induced in young male rats by means of tracheoconstriction and repeated injections of aqueous bean (Phaseolus vulg.) extract into the trachea. After 120 days, the blood pressure of the experimental and control animals was measured in the pulmonary artery with a shaped polyethylene catheter, without opening the chest. In all the experimental animals the blood pressure in the pulmonary artery was higher than in the controls. The mean pressure in the pulmonary artery of the experimental rats was 25 +/- 1 torr and in the controls 16 +/- 0.4 torr. The right ventricle of the experimental animals was larger than in the controls. No difference was found between the systemic blood pressure values, measured in the femoral artery, in the experimental animals and the controls. The experimental animals had a faster heart rate. Cardiac output, measured by the dye dilution method, was the same in the control and experimental animals and there was likewise no difference in the PO2 PCO2 and pH values in the arterial blood. The inhalation of oxygen instead of air did not affect the blood pressure in the pulmonary artery. The pulmonary blood vessels were evaluated quantitatively in histological sections of the experimental and control animal's lungs. There was no different between the thickness of the media of the distal pulmonary vessels, expressed as a percentage of the outer diameter of the vessel, in the experimental animals and the controls. A media thicker than 7% was found in 15% of the evaluated vessels from experimental animals and in 8% of those from the controls. No correlation between the mean thickness of the media and the mean blood pressure in the pulmonary artery was found in any of the animals.

Animals