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Biomedical subjects

A Jonzon

Publications and source records attributed to A Jonzon.

At least 19 recordsLinked to original sources

Vagal afferent and reflex responses to changes in surface osmolarity in lower airways of dogs.

In anesthetized dogs we examined the sensitivity of afferent vagal endings in the lungs to changes in airway fluid osmolarity. Injection of 0.25-0.5 ml/kg water or hyperosmotic sodium chloride solutions (1,200-2,400 mmol/l) into a lobar bronchus caused bradycardia, arterial hypotension, apnea followed by rapid shallow breathing, and contraction of tracheal smooth muscle. All effects were abolished by vagotomy. We examined the sensory mechanisms initiating these effects by recording afferent vagal impulses arising from the lung lobe into which the liquids were injected. Water stimulated pulmonary and bronchial C-fibers and rapidly adapting receptors; isosmotic saline and glucose solutions were ineffective. Hyperosmotic saline (1,200-9,600 mmol/l, 0.25-1 ml/kg) stimulated these afferents in a concentration-dependent manner. Stimulation began 1-10 s after the injection and sometimes continued for several minutes. Responses of slowly adapting stretch receptors varied. Our results suggest that non-isosmotic fluid in the lower airways initiates defense reflexes by stimulating pulmonary and bronchial C-fibers and rapidly adapting receptors. Conceivably, stimulation of these afferents as a result of evaporative water loss from airway surface liquid could contribute to exercise-induced asthma.

Animals

Airway pressures during positive pressure ventilation with superimposed oscillations before and after lung injury in the cat.

This study was made to determine how oscillations superimposed on intermittent positive pressure ventilation (IPPV) influence the arterial blood gases, pH and the airway pressures during adequate alveolar ventilation i.e. at inhibition of inspiratory activity, before and after experimentally induced lung injury in the anaesthetized cat. Two IPPV frequencies were studied. The lung was injured by instillation of xanthine oxidase into the upper airways during IPPV. The peak, mean and end-expiratory intrapleural and airway (intratracheal) pressures at two levels were measured and the arterial blood gases and pH were determined at inhibition of inspiratory activity with and without superimposition of oscillations on the ventilatory pattern. Before lung injury, superimposed oscillations lowered the airway pressures only at an IPPV rate of 15 breaths per minute (b.p.m.). After lung injury, such oscillations increased the airway pressures only at 15 b.p.m. The airway pressures were always lower at 60 than at 15 b.p.m.

Acid-Base Imbalance

Afferent activity in pulmonary stretch receptors before and after lung injury.

This study was undertaken to determine the effect of a lung-injury on the activity of slowly adapting pulmonary stretch receptors. Comparisons of receptor activity were made at inhibition of inspiratory (phrenic nerve) activity. The inspiratory activity of these receptors was found to be decreased after lung-injury.

Airway Resistance

Lung hyaluronan during development: a quantitative and morphological study.

Hyaluronan, an important constituent of developmental interstitium in fetal lungs, mediates cell-to-cell interactions and thereby directs migrating cells. Furthermore, because of the polyionic nature of the molecule, hyaluronan forms open, hydrated matrices that provide channels for migrating cells. This hydrated matrix undergoes contraction before birth. However, continued growth of the lung in the perinatal period requires newly synthesized hyaluronan. This study's purpose was to elucidate the changes in lung hyaluronan concentration and distribution in the perinatal period. We studied rabbits at days -6, -4, -2, -1, 0, +2, and +4 with respect to term, as well as adult rabbits. We found that hyaluronan concentration was highest in the youngest fetuses studied [682 +/- 115 micrograms/g dry wt (means +/- SD)]. However, hyaluronan concentration decreased to 129 +/- 12 micrograms/g dry wt just before birth then returned to 366 +/- 111 micrograms/g dry wt at day +4; these values were similar to adult values. We found hyaluronan staining decreased during late gestation, particularly in the interalveolar region. In the postnatal period, hyaluronan staining increased in the visceral pleura and, to a lesser extent, beneath the epithelium of the bronchioles. Hyaluronan did not reaccumulate in the interalveolar region in the postnatal period. Our data suggest a change in the predominant role of lung hyaluronan during the perinatal period. Before term, hyaluronan facilitates morphogenesis. However, hyaluronan's major role in neonatal lung is most likely in regulation of fluid balance in interstitium.

Animals

Intravenous injection of hypertonic NaCl solution stimulates pulmonary C-fibers in dogs.

Intravenous injection of hypertonic NaCl solution evokes reflex bradycardia and hypotension, effects thought to result from stimulation of afferent vagal endings in the lungs. To identify the afferents responsible for these effects, we recorded vagal impulses arising from endings in the lungs and lower airways of anesthetized dogs and examined the response to injection of hypertonic solutions into the pulmonary circulation. Injection of 4,800 mmol/l NaCl solution (1 ml/kg) stimulated 39 of 49 pulmonary C-fibers, their impulse frequency increasing 35-fold. Stimulation was concentration dependent, the minimum effective concentration being between 1,200 and 4,800 mmol/l. Rapidly adapting receptors were also stimulated in a concentration-dependent manner, 35 of 41 receptors being stimulated by 4,800 mmol/l NaCl solution, firing increasing fivefold. Bronchial C-fibers were not stimulated by injection into the pulmonary circulation but were by injection into the bronchial artery. Hypertonic urea solutions had qualitatively similar but smaller effects on pulmonary C-fibers and rapidly adapting receptors. The results suggest that the reflex effects of intravenous injection of hypertonic solutions result principally from stimulation of pulmonary C-fibers.

Adaptation, Physiological

Perinatal risk factors for inflammatory bowel disease: a case-control study.

To examine perinatal risk factors for Crohn's disease and ulcerative colitis, the authors analyzed birth records for 257 known case participants delivered from 1924 through 1957 at the University Hospital in Uppsala County, Sweden, and compared them with records for 514 controls delivered at the hospital. The two groups were matched by date of birth, sex, and either maternal age or parity. Eleven study variables were abstracted from standard forms that recorded health events during the pregnancy and the delivery hospitalization. Participants were more likely than controls to have a recorded health event (odds ratio (OR) = 4.4; 95% confidence interval (CI) 3.0-6.4). In a multivariate model, this increased risk was evident for infectious (OR = 3.8; 95% CI 2.6-5.8) and noninfectious (OR = 3.5; 95% CI 2.0-6.3) events. Perinatal health events may have contributed to 40% of the inflammatory bowel disease cases in our study. Infants from families with low socioeconomic status had greater risk of inflammatory bowel disease than did infants from families with high socioeconomic status (OR = 3.0, 95% CI 1.5-6.1). Perinatal health events and low socioeconomic status independently increased the risk of inflammatory bowel disease.

Analysis of Variance

Rapidly adapting receptors monitor lung compliance in spontaneously breathing dogs.

We examined the ability of rapidly adapting receptors (RARs) to monitor changes in dynamic lung compliance (Cdyn) in anesthetized spontaneously breathing dogs by recording RAR impulses from the vagus nerves. We decreased Cdyn in steps through the physiological range by briefly restricting lung expansion with an inflatable cuff around the chest and recording the response after deflating the cuff; we restored Cdyn to control by hyperinflating the lungs. Of 45 RARs, 34 were stimulated by a 40 +/- 2% reduction in Cdyn, their inspiratory discharge increasing on average more than threefold. Two-thirds of responsive RARs were stimulated by less than or equal to 20% reductions in Cdyn; in most, firing increased proportionately with lung stiffness (1/Cdyn) as Cdyn was decreased further. Stimulation by reduced Cdyn was not simply a function of the concomitant increase in transpulmonary pressure, because similar increases in pressure produced by increasing tidal volume produced smaller increases in firing. RAR stimulation was unaffected by atropine and, hence, was not dependent on neurally mediated changes in bronchomotor tone. Our results indicate that during spontaneous breathing RARs provide a signal inversely proportional to Cdyn.

Adaptation, Physiological

Respiratory response to adenosine in newborn lambs is modified by hypoxemia and by heat stress.

A study was made to determine whether adenosine is involved in the regulation of breathing and whether the respiratory response to injections of adenosine and its analogue L-PIA (phenylisopropyl adenosine) is modified by moderate hypoxemia or by heat stress. Unanesthetized lambs with chronically implanted catheters were used for the investigation. Intravenous injections of adenosine caused an increase in the rate of breathing lasting for 5-30 s, except during heat stress, when the rate of breathing decreased. Injection of L-PIA also increased the rate of breathing, but the effects lasted longer than after injection of adenosine. During heat stress the response to injection of L-PIA varied. Both the arterial blood pressure and heart rate decreased transiently after intravenous injection of adenosine or L-PIA, while the central venous pressure increased. Adenosine might thus be part of a positive feedback system that stimulates breathing under normal environmental conditions with or without moderate hypoxemia. The respiratory responses to injection of adenosine during heat stress are different, which might indicate that under this condition the effects of adenosine on breathing are modified by its influence on temperature control.

Adenosine

Airway pressures during positive-pressure ventilation with superimposed oscillations.

This study was undertaken to determine whether oscillations superimposed on a regular ventilatory pattern influence the arterial blood gases and pH and the airway pressures at adequate alveolar ventilation at the onset of inhibition of inspiratory activity. The peak, mean and end-expiratory airway pressures were therefore measured at inhibition of this activity with and without superimposition of oscillations on the ventilatory pattern. It was found that superimposed oscillations lowered the airway pressure only at a low ventilatory frequency, whereas inhibition occurred at almost equal arterial PCO2 and pH values with and without superimposed oscillations on the ventilatory pattern.

Animals

Pancuronium bromide does not lower airway pressures during intermittent positive pressure ventilation in young cats.

High intrapulmonary pressure is probably an important factor in the development of extra-alveolar air leaks and bronchopulmonary dysplasia during neonatal intermittent positive pressure ventilation (IPPV). Spontaneous breathing, which may be asynchronous with the ventilator as a result of hypoventilation or sometimes of the ventilatory pattern of the ventilator, can be prevented by neuromuscular blockade. During neuromuscular blockade with pancuronium bromide the central inspiratory (phrenic nerve activity) activity could be inhibited during IPPV at all ventilatory frequencies tested, but a lower arterial PCO2 and a higher pH were needed to achieve inhibition at a low frequency (15 bpm). In the present study it was observed that central inspiratory activity in cats was stimulated by intravenous injection of pancuronium bromide. In cats not subjected to neuromuscular blockade the inspiratory activity was inhibited during IPPV at all ventilatory frequencies studied. At the onset of inhibition of this activity, the arterial blood gases and pH in these animals were almost the same at all ventilatory frequencies. When ventilation was administered at a low frequency, higher peak intratracheal pressures were needed to obtain inhibition of central inspiratory activity than when high frequencies were used, both before and after neuromuscular blockade.

Animals

Attenuation of pulmonary afferent input by vagal cooling in dogs.

In open chest, artificially ventilated, anesthetized dogs, we examined the effect of vagal cooling on the pulmonary afferent input evoked by hyperinflating the lungs to 3 VT, recording the activity of slowly adapting pulmonary stretch receptors (PSRs), rapidly adapting receptors (RARs) and pulmonary C fibers rostral to the cooling platform. At 15 degrees C and below, input in all three types of fiber was significantly reduced, attenuation being least marked in C fibers. Between 12 degrees C and 7 degrees C, attenuation of RAR input was significantly less than that of PSRs. At 7 degrees C, virtually none of the hyperinflation-evoked increase in PSR activity and only 10% of that in RARs passed the cooling platform--indeed RAR input was less than during normal ventilation at 37 degrees C; by contrast, 40% of the hyperinflation-evoked increase in C fiber activity was still transmitted. Cooling had similar effects on C fiber input evoked by capsaicin. If reflexes are attenuated in proportion to the attenuation of afferent input, our results suggest that a hyperinflation-evoked reflex that survives vagal cooling below 6 degrees C is almost certainly triggered by C fibers.

Afferent Pathways

Influence of radiant heat stress on respiratory water loss in new-born lambs.

Respiratory water loss, oxygen consumption and carbon dioxide production were measured during rest and during moderate radiant heat stress in 9 healthy unanaesthetized lambs, age 4-15 days. The method used is based on an open flow-through system with a mass spectrometer for gas analyses. Respiratory water loss was 12.7 mg/kg min when the lamb was at rest and increased to 24.7 mg/kg min during heat stress. Oxygen consumption was 13.9 ml/kg min at rest and remained unchanged during heat stress. The mean rate of breathing increased from 63 to 125 breaths/min.

Animals

Changes in inspiratory activity after injection of adenosine and hypoxanthine in cats.

The effects of intra-arterial and intravenous injections of adenosine and hypoxanthine were investigated with special reference to respiratory variables in anesthetized young cats. Studies were made of the effects on inspiratory activity (phrenic nerve activity), heart rate, blood pressure and central venous pressure. To assess the risk of accumulation of adenosine degeneration products after several injections measurements were also made of hypoxanthine, xanthine and urate in plasma at intervals after the injections. It was found that intra-arterial and intravenous injections of adenosine increased central inspiratory activity during the first few breaths after the injection. The blood pressure and heart rate decreased slightly and central venous pressure increased slightly after the injection. Degradation of adenosine and its metabolites takes place rapidly and it is therefore unlikely that metabolites influence the results. It is concluded that adenosine causes brief stimulation of inspiratory activity.

Adenosine

Inhibition of phrenic nerve activity during positive-pressure ventilation at high and low frequencies.

A study was made to determine whether the ventilatory pattern, in terms of ventilatory frequency, insufflation period and end-expiratory pressure, influences the arterial blood gas level at which central inspiratory activity is inhibited, and whether further expansion of the lung changes this activity. This was accomplished by measuring arterial pH and blood gases, and intratracheal, intrapleural and transpulmonary pressures, at the setting of positive-pressure ventilation causing inhibition of phrenic nerve activity in chloralose-anaesthetized cats. Spontaneous breathing movements were prevented by muscle relaxation. Ventilatory frequencies of 15-120 breaths per minute (b.p.m.) were studied at at least two different insufflation times. A volume-controlled ventilator with a large compressible volume was used in the frequency range 15-45 b.p.m. and a constant flow respirator with a low-compressible volume in the range 45-120 b.p.m. A much lower PCO2 was needed for phrenic nerve activity to be inhibited at a ventilatory frequency of 15 b.p.m. than at higher frequencies. At ventilatory frequencies between 30 and 120 b.p.m. inhibition could be achieved at a higher PCO2, within the normal range. The inhibition of phrenic nerve activity tended to be less stable when PEEP was added during ventilation with a long insufflation period, but PEEP did not influence the arterial blood gas level at which inhibition occurred. In the lower frequency range of 15-30 b.p.m., inspiratory activity was observed with bursts at the same rate as the insufflations given by the ventilator. The intratracheal peak pressures at ventilation causing inhibition of phrenic nerve activity decreased with increasing ventilatory frequencies.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid-Base Equilibrium

Phrenic and vagal nerve activities during spontaneous respiration and positive-pressure ventilation.

Afferent vagal nerve activity from stretch-receptors in the lung and efferent phrenic nerve activity were recorded during spontaneous respiration and during positive-pressure ventilation with three different types of ventilators. During spontaneous respiration the efferent phrenic nerve activity slightly preceded the afferent vagal nerve activity. Volume-controlled ventilation did not alter the phrenic nerve activity when the ventilation was set at a rate equal to that during spontaneous respiration, but afferent vagal volleys increased in duration. At higher frequencies of insufflation spontaneous inspiration was inhibited. An increase in afferent vagal nerve activity and a concomitant slight decrease in efferent phrenic nerve activity were obtained during animal triggered pressure-controlled ventilation. High-frequency positive-pressure ventilation (HFPPV) gave rise to basal, non-grouped activity in vagal afferents, causing inhibition of inspiration. During HFPPV, spontaneous respiration can take place on activation of other afferents to the respiratory centre. Clinical aspects of respirator treatment from a neurophysiological standpoint are discussed.

Afferent Pathways