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Respiratory mechanics and maximal expiratory flow in the anesthetized mouse.

Mice have been widely used in immunologic and other research to study the influence of different diseases on the lungs. However, the respiratory mechanical properties of the mouse are not clear. This study extended the methodology of measuring respiratory mechanics of anesthetized rats and guinea pigs and applied it to the mouse. First, we performed static pressure-volume and maximal expiratory flow-volume curves in 10 anesthetized paralyzed C57BL/6 mice. Second, in 10 mice, we measured dynamic respiratory compliance, forced expiratory volume in 0.1 s, and maximal expiratory flow before and after methacholine challenge. Averaged total lung capacity and functional residual capacity were 1.05 +/- 0.04 and 0.25 +/- 0.01 ml, respectively, in 20 mice weighing 22.2 +/- 0.4 g. The chest wall was very compliant. In terms of vital capacity (VC) per second, maximal expiratory flow values were 13.5, 8.0, and 2.8 VC/s at 75, 50, and 25% VC, respectively. Maximal flow-static pressure curves were relatively linear up to pressure equal to 9 cm H(2)O. In addition, methacholine challenge caused significant decreases in respiratory compliance, forced expiratory volume in 0.1 s, and maximal expiratory flow, indicating marked airway constriction. We conclude that respiratory mechanical parameters of mice (after normalization with body weight) are similar to those of guinea pigs and rats and that forced expiratory maneuver is a useful technique to detect airway constriction in this species.

Anesthesia↗

Diffusing capacity in idiopathic scoliosis and its interpretation regarding alveolar development.

We measured lung volumes, diffusing capacity by the single breath method (DL), membrane permeability (DM), and capillary blood volume (Vc) in 22 subjects with idiopathic scoliosis (mean angle of curvature, 66 degrees). Compared with an age-matched group, vital capacity, total lung capacity, and functional residual capacity were respectively, 21% (p less than 0.0001), 18% (p less than 0.01), and 15% (p less than 0.05) lower. The DL was 17% lower (p less than 0.01), but specific DL (DL divided by alveolar volume = DLVA) was the same. For both groups, DLVA was inversely correlated with VA. The same qualitative relationship existed between DM, Vc, their specific values, and VA except for a larger spread of Vc in the scoliotic group. The data show that DL and its components, DM and Vc, are normal in idiopathic scoliosis when reduced lung volumes are allowed for. These findings are consistent with partial failure of alveolar enlargement as a result of the thoracic deformity rather than any atrophy of the alveoli or pulmonary vasculature. Thus scoliosis results in a delay of lung development, such that in a group of symptomatic patients with moderate degrees of deformity (mean angle of curvature, 66 degrees), lung volumes and DL are about 80% of that of an age-matched control group; the alveolar characteristics of a 12-yr-old with scoliosis are therefore similar to those of a 9-yr-old normal child.

Adolescent↗

Chest wall stiffness in patients with chronic respiratory muscle weakness.

Using the weighted spirometer technique we studied chest wall compliance (Cw) in 16 nonobese patients with chronic weakness of the respiratory muscles and 20 healthy control subjects. In order to evaluate the validity of the technique, while Cw was being measured, we monitored thoracoabdominal configuration with 2 pairs of linearized magnetometers and electrical activity of the external oblique with a concentric needle electrode in 3 healthy subjects and 4 patients; in addition, we recorded in 3 subjects the electrical activity from the intercostal muscles and diaphragm throughout the procedure. The method was reproducible within 5.8% and provided Cw values that compared well with those yielded by the relaxation technique. In each subject, the weight-induced shifts in end-expiratory lung volume showed a very good linear correlation with the changes in transrespiratory pressure at end-expiration (r greater than or equal to 0.91). In addition, in none of the subjects tested did the electromyograms reveal any intercostal, diaphragmatic, or abdominal muscle activity at end-expiration, nor did the end-expiratory level ever show a significant departure from the relaxed thoracoabdominal configuration, thus suggesting adequate respiratory muscle relaxation. The reduction in inspiratory muscle force in the patients ranged from 17 to 94% of predicted (mean +/- SE, 43 +/- 6). The decrease in vital capacity, total lung capacity, and functional residual capacity averaged 59, 34, and 15% of predicted, respectively. Both the patient and the control groups showed a large interindividual variability regarding Cw. It varied from 0.117 to 0.258 L/cm H2O (mean +/- SE, 0.162 +/- 0.012) in the patients and from 0.163 to 0.366 L/cm H2O (mean +/- SE, 0.248 +/- 0.013) in the healthy subjects.(ABSTRACT TRUNCATED AT 250 WORDS)

Abdominal Muscles↗

Response of lung volumes to inhaled salbutamol in a large population of patients with severe hyperinflation.

OBJECTIVES: Current criteria use FEV(1) to assess bronchodilator responsiveness, despite its insensitivity and inability to predict improvement in symptoms or exercise tolerance. Response in lung volumes remains largely unexplored even though volume parameters, such as inspiratory capacity (IC), closely correlate with functional improvements. Therefore, we assessed the response of lung volumes (i.e., by IC, total lung capacity [TLC], functional residual capacity [FRC], residual volume [RV], and FVC) to salbutamol and the relationship of these changes to improvements in the spirometry in these patients. DESIGN: A retrospective review of data extracted from a large database of patients who were undergoing spirometry and static lung volume measurements before and after the administration of 200 microg salbutamol. PATIENTS: Patients with an FEV(1)/FVC ratio of < 85% of predicted values were defined as being severely hyperinflated (SH) if TLC was > 133% of predicted and as being moderately hyperinflated (MH) if TLC was 115 to 133% of predicted. RESULTS: Two hundred eighty-one SH patients and 676 MH patients were identified. Salbutamol significantly reduced the mean (+/- SEM) TLC (SH patients, 222 +/- 23 mL; MH patients, 150 +/- 10 mL; p < 0.001), FRC (SH patients, 442 +/- 26 mL; MH patients, 260 +/- 39 mL; p < 0.001), and RV (SH patients, 510 +/- 28 mL; MH patients, 300 +/- 14 mL; p < 0.001) and increased both the IC (SH patients, 220 +/- 15 mL; MH patients, 110 +/- 11 mL; p < 0.001) and FVC (SH patients, 336 +/- 21 mL; MH patients, 204 +/- 13 mL; p < 0.001). FEV(1) improved in a minority of patients (SH patients, 33%; MH patients, 26%), but if lung volume measurements are also considered, the overall bronchodilator response may improve to up to 76% of the SH group and up to 62% of the MH group. Changes in volumes correlated poorly with changes in maximal airflows. CONCLUSIONS: Bronchodilators reduce hyperinflation. Measurements of lung volumes before and after bronchodilators add sensitivity when examining for bronchodilator responsiveness.

Aged↗

[Circulatory and respiratory systems in children after surgical correction of atrial septal defect type II (ASD II)].

The main objective of the study was to evaluate the conditions of circulatory and respiratory system 1-5 years after surgical correction of atrial septal defect (ASD II) in 112 children who had been operated at Silesian Medical Centre in Katowice in 1989-1993. Obtained results were compared with these ones found in the group of 60 healthy children. Mean age of study group was 7.78 +/- 4.46 years at the time of examination and 5.34 +/- 3.98 at the time of the operation. Twenty older children in the mean age 11 +/- 4.5 years (necessity for cooperation) were selected from the study group to perform the respiratory system tests. These tests were performed 7 days prior to operation and repeated 8 to 12 months afterwards. The following indices were determined: FVC--forced volume capacity, FRC--functional residual capacity, RV--residual volume, TLC--total lung capacity, FEV1--forced first second expiratory volume, PEF--peak expiratory flow, MEF 75-50-25% FVC--maximum expiratory flow at 75-50-25% of forced volume capacity, ITGV--intrathoracic gas volume, Raw-respiratory tract resistance, CL, st--static compliance of lung, DL, CO[SB]--lung diffusion capacity for carbon monoxide and D/VA--Krogh transfer coefficient. Circulatory system tests included: medical interview, physical examination, routine and 24-hour ambulatory ECG, echocardiography. There was found that children after ASD II closure have efficient circulatory system and most of them have normal ECHO results. Almost 40% of the children within 1 to 5 years following ASD operations have cardiac arrhythmias found in 24-hour ECG, but significant arrhythmias are seen only in 17.8% of the subjects. Most of the rhythm disturbances were mild. Significant arrhythmias and sinus node dysfunction were observed more frequently among the children who underwent surgical correction than in the healthy control group. Statistically significant deterioration of lung diffusion capacity for carbon monoxide (DL,CO[SB]) and Krogh coefficient (D/VA) has been found after the surgery. Thus, it is concluded that some pulmonary abnormalities may persist or even increase after successful ASD operation.

Child↗

Postoperative respiratory function after laparoscopic cholecystectomy.

Open cholecystectomy causes changes in pulmonary function test volumes; such changes can be related to respiratory complications of hypoxemia and atelectasis. Little data is available on lung volume changes after laparoscopic cholecystectomy. We measured preoperative and postoperative vital capacity (VC), functional residual capacity (FRC), arterial PO2, and chest X-ray atelectasis in 31 patients undergoing laparoscopic cholecystectomy and found small but significant decreases (p < 0.01) in VC (13 +/- 19%) and FRC (7 +/- 17%). The PO2 decreased from 89 +/- 11 mm Hg to 82 +/- 14 mm Hg, with only one patient's PO2 less than 60 mm Hg. Three patients demonstrated new segmental lobar collapse on postoperative chest X-ray. The postoperative changes in FRC (R2 = 0.40, p < 0.04) and atelectasis (R2 = 0.46, p < 0.03) could be predicted by multiple regression of risk factors, including obesity, smoking, use of narcotics, age, and symptoms of prior respiratory disease. We conclude that the respiratory changes after laparoscopic surgery are small in comparison to those expected after open cholecystectomy.

Cholecystectomy, Laparoscopic↗

Aerosol delivery to ventilated infant and pediatric patients.

Infants have low tidal volume, vital capacity, and functional residual capacity, and short respiratory cycles (low I:E ratio), which result in a low residence time for aerosol particles and, thus, low pulmonary deposition of aerosol particles (< 1% of the nominal dose), compared to adults (8-22%). Scintigraphy data suggest aerosol deposition of < 1% in both intubated and nonintubated infants. In vitro testing appears to overestimate pulmonary deposition, partly because in vitro testing does not account for exhaled aerosol. Animal models of infant ventilation tend to agree with data from human studies. However, though only a small percentage of the aerosol deposits in the lung, infants nevertheless receive considerably more aerosolized drug per kilogram of body weight than do adults. Efficient aerosol delivery to infants is challenging because of low deposition and high inter-patient and intra-patient variability, but existing systems can effectively delivery various aerosolized drugs, including bronchodilators, anti-inflammatories, and anti-infectives. Use of a nebulizer that has a low residual volume (of drug remaining in the device after nebulization) delivers up to 13%. Awareness of the variables that impact aerosol delivery efficiency can result in more effective treatment of mechanically ventilated infants.

Administration, Inhalation↗

Human body buoyancy: a study of 98 men.

The specific gravity and buoyancy of 98 men were calculated at various lung volumes. The data indicated that all subjects would be capable of floating in either freshwater or seawater at total lung capacity. At functional residual capacity, the value approximating the lung volume of a recently dead body, 69% of the subjects would float in seawater, whereas only 7% would float in freshwater. Results of this study indicate that while drowned bodies are more likely to sink than bodies dead of other causes, no conclusion regarding the cause of death can be made on the basis of whether bodies float or sink.

Body Composition↗

The effect of transcutaneous electric nerve stimulation on postoperative pain and pulmonary function.

Surgery on the upper abdomen is associated with marked postoperative pulmonary dysfunction that results largely from restriction of lung expansion secondary to incisional pain. This study, utilizing three groups of patients (a control group, a sham group, and a group receiving transcutaneous electric nerve stimulation [TENS] for pain control), was designed to determine whether this modality is effective in alleviating postoperative pain. Spirometry, arterial blood gases, clinical as well as radiologic evidence of postoperative pulmonary complications, and the frequency of analgesic requests were determined. Of the 40 patients studied, the 15 receiving TENS required only 4.7 +/- 2.5 doses of narcotic analgesics in the first 72 hours as opposed to 10.1 +/- 2.7 and 10.4 +/- 2.7 in the other two groups (P less than 0.005). There were a total of six postoperative pulmonary complications, all occurring in the groups not receiving TENS. Postoperative arterial Po2, vital capacity, and functional residual capacity were least depressed in the TENS group. The data suggest that TENS minimizes the tendency toward postoperative alteration in respiratory mechanics and decreases the incidence of pulmonary complications by alleviating incisional pain.

Abdomen↗

Lung volumes in healthy nonsmoking adults.

Total lung capacity (TLC), functional residual capacity, residual volume, and corresponding 95% confidence intervals were measured in 245 healthy nonsmoking person (122 women, 123 men) using a single-breath helium technique. Prediction equations for lung volumes were generated by multiple linear regression. The resultant equations are similar to previously published equations using multiple-breath gas equilibration techniques. Measured 95% confidence intervals can be closely approximated by using two times the standard error of the estimate for each equation, but cannot be approximated by using +/- 20% of the predicted value. Radiographic TLC was not significantly different from the helium dilution TLC.

Adult↗

CT of saber-sheath trachea. Correlation with clinical, chest radiographic and functional findings.

The diagnosis of saber-sheath trachea is easy at CT due to its cross-sectional imaging, but the significance of this CT sign has not been evaluated in the diagnosis of chronic obstructive pulmonary disease (COPD). Various signs of COPD were compared between a series of 20 patients with a saber-sheath trachea at CT (tracheal index < or = 66%) and a group of 20 pneumologic control patients without saber-sheath trachea (tracheal index > or = 70%). These signs included clinical and standard radiographic indices of COPD, sternum-spine distance and 3 functional tests of COPD: forced expiratory volume in one second, carbon monoxide diffusing lung capacity, and functional residual capacity (FRC). A significant difference was found between the 2 groups, concerning the values of FRC (p < 10(-4)) and of sternum-spine distance (p < 10(-2)). The tracheal index was significantly correlated with the FRC values (r = -0.611; p < 10(-5)) and with the sternum-spine distance (r = -0.322; p < 0.05). No other significant difference was observed. It is concluded that saber-sheath trachea is basically a sign of hyperinflation.

Adult↗

Noninvasive clearance of airway secretions.

Airway clearance techniques are indicated for specific diseases that have known clearance abnormalities (Table 2). Murray and others have commented that such techniques are required only for patients with a daily sputum production of greater than 30 mL. The authors have observed that patients with diseases known to cause clearance abnormalities can have sputum clearance with some techniques, such as positive expiratory pressure, autogenic drainage, and active cycle of breathing techniques, when PDPV has not been effective. Hasani et al has shown that use of the forced exhalatory technique in patients with nonproductive cough still resulted in movement of secretions proximally from all regions of the lung in patients with airway obstruction. It is therefore reasonable to consider airway clearance techniques for any patient who has a disease known to alter mucous clearance, including CF, dyskinetic cilia syndromes, and bronchiectasis from any cause. Patients with atelectasis from mucous plugs and hypersecretory states, such as asthma and chronic bronchitis, patients with pain secondary to surgical procedures, and patients with neuromuscular disease, weak cough, and abnormal patency of the airway may also benefit from the application of airway clearance techniques. Infants and children up to 3 years of age with airway clearance problems need to be treated with PDPV. Manual percussion with hands alone or a flexible face mask or cup and small mechanical vibrator/percussors, such as the ultrasonic devices, can be used. The intrapulmonary percussive ventilator shows growing promise in this area. The high-frequency oscillator is not supplied with vests of appropriate sizes for tiny babies and has not been studied in this group. Young patients with neuromuscular disease may require assisted ventilation and airway oscillations can be applied. CPAP alone has been shown to improve achievable flow rates that will increase air-liquid interactions for patients with these diseases or airway malacia. Use of positive pressure to maintain airway patency in these children allows cephalad clearance of secretions. Patients with segmental atelectasis, particularly related to asthma, may benefit from intrapulmonary percussive ventilator, positive expiratory pressure, or PDPV. Prevention of postoperative atelectasis is particularly well suited to positive expiratory pressure, which is not as painful as techniques using oscillations. Neurologically abnormal patients who are unable to cooperate with any active method are also treated using intrapulmonary percussive ventilator, PDPV, and suctioning, if necessary. Musculoskeletal abnormalities, muscular dystrophies, myasthenia gravis, poliomyelitis, or other similar diseases require stabilization of bellows function. Optimizing ventilation in patients with such abnormalities may require positive pressure ventilation either during sleep or continuously. Externally applied pressure, such as with the In-Exsufflator or the cyclically inflated pneumatic belt, can augment the patient's own efforts and is sometimes helpful. Normalizing the vital capacity and functional residual capacity typically helps to improve the ability to cough and clear secretions. Assisted cough devices or maneuvers are described in other papers by Bach and Hill. Not all patients who have weak muscles require nocturnal or continuous support, and may benefit from positive expiratory pressure mask treatments. Further studies are sorely needed for this population. Long-term controlled trials are urgently needed to help establish the best types of treatment for patients with CF and bronchiectasis. Such studies will become more complicated by the introduction of new treatments, such as DNase and other therapies that alter secretions, and may begin to change mucociliary or cough clearance. The selection of appropriate outcome measures is central to studying these questions, and it is unclear which are the most important. (ABSTRACT TRUNCATED)

Drainage↗

[Effect of hyaluronidase on porcine pancreatic elastase-induced lung injury].

The present study was conducted to investigate the effects of hyaluronidase on elastase-induced lung injury in rats. Male Wistar rats were divided into 4 groups: 1) Control group, single tracheal instillation of 0.3 ml saline; 2) PPE group, single tracheal instillation of 120 micrograms porcine pancreatic elastase (PPE); 3) HD group, intravenous injection of 240 mg/kg hyaluronidase (HD); and 4) HE + PPE group, intravenous injection of HD before single tracheal instillation of PPE. Cellular component and protein concentration in bronchoalveolar lavage fluid (BALF), myeloperoxidase (MPO) activity and hyaluronan content in lungs were examined 24 hours after treatment. After 8 weeks of treatment, hyaluronan content in the lungs and physiological parameters such as total lung capacity (TLC), functional residual capacity (FRC) and static compliance (Cst) were examined. The number of BALF nucleated cells in the HD + PPE group 6 h after treatment, and lung MPO activity in the HD group after 1 h and 3 h. were both higher than the corresponding measurements in the PPE group. After 6 h of treatment, the number of BALF nucleated cells in the HD + PPE group was significantly higher than in the HD group. The BALF albumin concentrations in the HD + PPE and HD groups were also significantly higher than in the control group. After 8 weeks of treatment, the measurements of TLC and Cst indicated greater emphysematous changes in the HD + PPE group. These results suggest that decreased interstitial HA accelerates acute inflammation and emphysematous changes in elastase-induced lung injury.

Animals↗

The effect of transfusion on lung capacity, diffusing capacity, and arterial oxygen saturation in patients with thalassemia major.

Our previous cross-sectional study of patients with thalassemia major suggested progressive lung changes characterized by low total lung capacity, hypoxemia, and elevated transfer factor for carbon monoxide. We reevaluated nine of the patients for three reasons: to determine the relationship of the previous findings to the immediate effects of blood transfusion; to assess the longitudinal progression of the lung changes; and to evaluate the effect of splenectomy on lung volume changes in these patients, all of whom underwent splenectomy in the interval between the two studies. We found that during the 5- to 6-yr period between studies total lung capacity had decreased significantly (p less than 0.05) from a mean 86% predicted to a mean 79% predicted. However, vital capacity increased significantly (p less than 0.05) from a mean 81% predicted to 88% with no significant change in functional residual capacity. There was no significant immediate effect of transfusion on total lung capacity, vital capacity, or functional residual capacity. However, the diffusion constant for carbon monoxide increased significantly (p less than 0.005) immediately following transfusion and there was a positive correlation between the increase and the amount of blood transfused (r = 0.74, p less than 0.05). Arterial oxygen saturation was below 95% in five of eight patients and increased significantly with transfusion (p less than 0.05). We conclude: 1) thalassemia major and/or its treatment is associated with hypoxemia and a progressive reduction in total lung capacity. 2) Despite the progressive reduction in total lung capacity, splenectomy in patients with thalassemia major increases expiratory reserve volume and thereby increases vital capacity.

Adolescent↗

Effect of heat delivery and extraction on airway conductance in normal and in asthmatic subjects.

Ten asthmatic and 10 normal subjects were exposed to 7 air conditions varying in temperature (-2 to 49 degrees C) and relative humidity (10 or 100%). Normocapnic hyperventilation for 3 min at 40% maximal voluntary ventilation was performed for each condition. A constant-volume body plethysmograph measured functional residual capacity and specific airway conductance (SGaw). Three to five sets of functional residual capacity and SGaw measurements were taken before and 1, 5, and 10 min after each challenge. All conditions that extracted heat from the airway caused SGaw to fall in both subject groups. In normal subjects, this response was greatest immediately after challenge. In asthmatic subjects, the immediate response exceeded the normal response, and airway function worsened in the 5 to 10 min after exposure. The quantity of heat extracted correlated moderately well with change from baseline SGaw in both normal (r = 0.55 at 5 min) and asthmatic (r = 0.64) subjects. When heat was added to the airway by hyperventilation of warm, humid air, SGaw increased in normal subjects. However, marked bronchoconstriction followed the same challenge in asthmatic subjects. Changing osmolality of the respiratory mucosa rather than thermal exchange may be responsible for the bronchospasm consequent to heat delivery.

Adult↗

Restrictive impairment in patients with asthma.

BACKGROUND: Patients with asthma have intermittent or persistent airflow obstruction, most often manifested spirometrically by reduced forced expiratory volume in 1s (FEV(1)) and FEV(1)/vital capacity (VC) ratio. In some patients, the VC may be reduced by air trapping, with an increase in functional residual capacity (FRC) and residual volume (RV) (pseudorestriction). We have reported 12 asthmatic patients with reduced VC and no increase in RV, i.e., a true restrictive impairment [Gill et al. True restrictive impairment in bronchial asthma. Am J Respir Crit Care Med 1999:159:A652]. OBJECTIVES: To confirm previous observations of true restrictive impairment (not attributable to air trapping) in patients with asthma, and to estimate its frequency in an asthmatic population. METHODS: Review of pulmonary function tests and clinical records of all post-pubertal patients diagnosed as asthma between January 2000 and September 2003 in a 184 bed inner city teaching hospital in Jamaica, Queens, New York. The clinical diagnosis of asthma was accepted when one or more of the following pulmonary function criteria were met: Positive bronchodilator response (BD), positive methacholine, repeated variability in spirometric values. Restriction was defined as decrease in total lung capacity (TLC) or decrease in VC with no increase in functional residual capacity (FRC) plus normal or high FEV(1)/FVC ratio. Patients with any clinical finding consistent with restriction, including a decreased diffusing capacity (DL) or obesity (BMI >30) were excluded. RESULTS: A total of 100 of 413 (24%) patients with asthma had restriction; 21 of these met all exclusions (including DL and BMI) and 11 (of 46) patients with an increased BMI and normal DL normalized their FVC on BD therapy, demonstrating that their pre-BD restrictive impairment could not be attributed to obesity. Plethysmographic FRC was measured in 81 of the 100 patients with restriction and was increased in only seven. CONCLUSION: True restrictive impairment was noted in at least 32 of 413 asthmatics (8%), consistent with previous observations in asthma and reactive airways dysfunction syndrome. This finding is not widely recognized and should not preclude the diagnosis of asthma, BD testing or appropriate therapy for asthma.

Adult↗

Perfluorocarbon-associated gas exchange (partial liquid ventilation) in respiratory distress syndrome: a prospective, randomized, controlled study.

OBJECTIVE: To determine the efficacy of perfluorocarbon-associated gas exchange (partial liquid ventilation) in respiratory distress syndrome. DESIGN: Prospective, randomized, controlled study. SETTING: State University of New York at Buffalo, School of Medicine and Biomedical Sciences. SUBJECTS: Eleven premature lambs with respiratory distress syndrome, delivered by cesarean section. INTERVENTIONS: Five lambs were supported by conventional mechanical ventilation alone. Six lambs were switched to perfluorocarbon-associated gas exchange after 60 to 90 mins of conventional mechanical ventilation. Perfluorocarbon-associated gas exchange was accomplished by instilling a volume of liquid perfluorocarbon equivalent to normal functional residual capacity (30 mL/kg) into the trachea, performing 3 to 4 mins of tidal liquid ventilation, and, at end-expiration, with liquid functional residual capacity of 30 mL/kg remaining in the lung, reconnecting the animal to the volume ventilator for gas tidal volumes. MEASUREMENTS AND MAIN RESULTS: Serial arterial blood gases and lung mechanics were measured. While receiving conventional ventilation, all animals developed progressive hypoxemia, hypercarbia, and acidosis. However, in the perfluorocarbon-associated gas exchange group, within 5 mins of the initiation of perfluorocarbon-associated gas exchange, mean PaO2 increased four-fold, from 59 +/- 6 torr (7.9 +/- 0.8 kPa) during conventional ventilation to 250 +/- 28 torr (33.3 +/- 3.7 kPa; p < .05) during perfluorocarbon-associated gas exchange, and this increase was sustained at 60 mins of perfluorocarbon-associated gas exchange (268 +/- 38 torr; 35.7 +/- 5.1 kPa; p < .05). Mean PaCO2 decreased progressively from 62 +/- 4 torr (8.3 +/- 0.5 kPa) during conventional ventilation to 38 +/- 3.3 torr (5.1 +/- 0.4 kPa) at 60 mins of perfluorocarbon-associated gas exchange (p < .05). Mean pH concomitantly increased. Dynamic compliance increased three-fold within 15 mins of instituting perfluorocarbon-associated gas exchange, from 0.31 +/- 0.02 mL/cm H2O during conventional ventilation to 0.90 +/- 0.11 mL/cm H2O during perfluorocarbon-associated gas exchange, and this increase was sustained at 60 mins of perfluorocarbon-associated gas exchange (p < .05). Mean peak expiratory flow and mean expiratory resistance were essentially unchanged during perfluorocarbon-associated gas exchange as compared with conventional ventilation in the same group. CONCLUSIONS: We conclude that perfluorocarbon-associated gas exchange, which employs liquid functional residual capacity and gas tidal volumes delivered by a conventional ventilator, can facilitate oxygenation and CO2 removal, and dramatically improve lung mechanics in the premature lamb with respiratory distress syndrome.

Airway Resistance↗

Diagnostic role of residual volume in paediatric patients with chronic symptoms of the lower airways.

In bronchial asthma, measurement of absolute lung volumes may reveal lung dysfunction more readily than forced expiratory spirometry. Sixty-one children (aged 4-16 years) with mild to moderate bronchial asthma and 35 children (aged 7-16 years) with other symptoms of the lower airways (OSLA) were studied, and the plethysmographic results were compared with data obtained from 36 healthy volunteers aged 6-16 years. In the first test session, repeatability of forced expiratory volume in one second (FEV1), forced vital capacity (FVC), residual volume (RV), functional residual capacity (FRC) and total lung capacity (TLC) were good. Control subjects were also tested the next day, and intra-subject variability of repeat pulmonary function testing was in the normal range. The FEV1/FVC ratio was significantly higher in control subjects than in patients with asthma or OSLA, but only the decrease in RV after bronchodilator challenge separated patients with asthma from patients with OSLA. Changes in FEV1 and RV after bronchodilator challenge had a significant, although low, inverse correlation. An increase of > or = 5% in FEV1 had a positive predictive value of 44% and a negative predictive value of 68% for the clinical diagnosis of bronchial asthma; for a decrease of > or = 24% in RV, the figures were 86% and 71% respectively. The support of baseline absolute lung volumes on clinical decision-making is not necessarily great. Bronchodilator response, particularly in RV, is more pertinent and may enhance the detection of reversible lung dysfunction.

Adolescent↗