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Biomedical subjects

Per M Gustafsson

Publications and source records attributed to Per M Gustafsson.

14 recordsLinked to original sources

Peripheral airway involvement in CF and asthma compared by inert gas washout.

Multiple-breath N2 washouts were performed before and after bronchodilation in 15 patients with moderately severe asthma (mean age 13 years), and in 11 patients with cystic fibrosis (CF; mean age 16 years) matched for FEV1. Eighteen healthy subjects (mean age 15 years) were studied before bronchodilation. The lung clearance index (LCI) was determined from the washout curve and gas trapping was assessed from five subsequent large breaths. Analysis of the progression of the concentration normalized phase III slopes (Sn(III)) over the washout was used to determine inhomogeneity in the conducting airways (S(cond)) and inhomogeneity close to or within the gas exchange zone (S(acin)). Before bronchodilation all washout indexes were abnormal in the CF group, and all but S(acin) in the asthma group. Two indexes were higher in CF than in asthma: LCI (11.5 (3.3) vs. 8.7 (1.3); P < 0.01), and S(acin) (0.307 (0.207) vs. 0.142 (0.071); P < 0.01), while gas trapping indexes and S(cond) (0.151 (0.071) vs. 0.127 (0.041)) did not differ significantly. After bronchodilation, all indexes improved in asthma and only S(cond) remained abnormally elevated. In CF, only a modest but statistically significant S(acin) improvement was seen and all indexes stayed abnormal. The study shows that overall ventilation inhomogeneity and particularly inhomogeneity in or close to the gas exchange zone are more pronounced in CF than in asthma matched for FEV1, while inhomogeneity in the conducting airway zone is similar. After bronchodilation, residual abnormalities of airway function are seen all through the airway tree in CF but only in the conducting airways in asthma.

Adolescent↗

Asthma symptoms in early childhood--what happens then?

AIM: To study the outcome in early adulthood for children with early asthma symptoms and to analyse the factors associated with current asthma. METHODS: In a prospective study, we have re-investigated 89/101 children who were hospitalized before the age of two years due to wheezing. The children were investigated using a questionnaire and allergy and bronchial hyper-responsiveness tests at the age of 17-20 years and compared with age-matched controls. RESULTS: In the cohort, 43% had had asthma symptoms in the preceding 12 months compared with 15% in the control group. The strongest risk factors for asthma were current allergy, bronchial hyper-responsiveness and female gender. Female gender and passive smoking in infancy were independent infantile risk factors. In addition to female gender, two pathways led to current asthma: an allergic pathway from family atopy via the development of allergy and another pathway from early passive smoking via hyper-responsiveness and active smoking. CONCLUSION: In children with early wheezing disorder, current allergy, bronchial hyper-responsiveness and female gender were the strongest risk factors for asthma in early adulthood, while female gender and passive smoking in infancy were independent infantile risk factors. The effects of early passive smoking persist longer than previously reported.

Adolescent↗

Inert gas washout in preschool children.

The multiple-breath inert gas washout (MBW) method is used to measure the efficiency of ventilation distribution in the lungs and to measure the functional residual capacity (FRC). It involves recordings of the concentration of an inert marker gas and respiratory flow at the airway opening when a subject breathes through a sealed facemask or a mouthpiece. The MBW method is particularly useful for lung function testing in preschool children (2-6 years) because it requires only passive cooperation and tidal breathing. The lung clearance index (LCI) is the cumulative expired volume required to clear an inert gas from the lungs, divided by the FRC. The LCI has been shown to be more sensitive than spirometry or airway resistance measurements in detecting lung function abnormalities in young children with cystic fibrosis (CF). The MBW method may be useful also for screening for several other disorders that affect the peripheral airways in children.

Breath Tests↗

Contributions of lower limb and abdominal compression to ventilation inhomogeneity in hypergravity.

Gravito-inertial load in the head-to-foot direction (Gz) and compression of the lower body half by an anti-G suit (AGS) are both known to influence ventilation distribution in the lungs. To study the interaction of Gz and AGS and to asses the separate contributions from lower limbs and abdominal compressions to large and small-scale ventilation inhomogeneities nine males performed SF6/He vital capacity (VC) single-breath washouts at 1, 2, and 3 Gz in a centrifuge, with abdominal and/or lower limbs compressions. SF6/He and (SF6-He) phase III slopes were used for determination of overall and small-scale ventilation inhomogeneity. Closing volume and phase IV height were used as measures of large-scale inhomogeneity. VC decreased marginally with G-load but markedly with lower limbs compression. Small-scale ventilation inhomogeneity increased slightly with G-load, but substantially with AGS pressurization. Small-scale ventilation inhomogeneity increased with AGS pressurization. Large-scale inhomogeneity increased markedly with G-load. Translocation of blood to the lungs might be the key determinant for changes in small-scale ventilation inhomogeneity when pressurizing an AGS.

Abdomen↗

Severe respiratory syncytial virus bronchiolitis in infancy and asthma and allergy at age 13.

We have prospectively studied wheezing disorder and allergy in 47 children hospitalized with respiratory syncytial virus (RSV) bronchiolitis in infancy and 93 matched control subjects. Subjects with at least three episodes of wheezing were defined as recurrent wheezers and as having asthma if the episodes were doctor verified. Here we report the outcome at age 13 years in 46/47 children with RSV and 92/93 control subjects. Wheezing disorder and clinical allergy were estimated using a questionnaire. Skin prick tests were performed and serum IgE antibodies measured. Spirometry was undertaken at rest, after dry air challenge, and after beta2-agonist inhalation. The occurrence of symptoms over the previous 12 months was significantly higher in the RSV group than among the control subjects, 43% versus 8% for asthma/recurrent wheezing and 39% versus 15% for allergic rhinoconjunctivitis. Sensitization to common inhaled allergens was more frequent in the RSV group than in the control subjects, judged by skin prick tests (50% versus 28%; p = 0.022), or by serum IgE antibodies (45% versus 26%; p = 0.038). Compared with the control subjects, the RSV group showed mild airway obstruction both at rest and after bronchodilation, and had slightly more reactive airways. RSV bronchiolitis in infancy severe enough to cause hospitalization is a risk factor for allergic asthma in early adolescence.

Adolescent↗

Method for assessment of volume of trapped gas in infants during multiple-breath inert gas washout.

A breath-by-breath inert gas washout method for assessment of the volume of trapped gas in the lungs (V(TG)) in sedated sleeping infants is described. It is based on washin using a gas mixture containing 4% sulfur hexafluoride (V(TG,SF6)) and washout with air. A mass spectrometer was used for continuous gas concentration measurements, and a Fleisch no. 0 pneumotachometer for flow measurement. When equilibration of the tracer gas was achieved with tidal breathing washin, five passive inflations with a maximum positive airway pressure of 20 cm of H(2)O were performed to ensure filling of lung spaces not communicating during tidal breathing. After tidal washout of the tracer gas by air until the end-tidal concentration was 1/40th of its starting concentration, five passive inflations with air were instituted again. The V(TG,SF6) was calculated from the volume of SF(6) mobilized by these large breaths, and expressed as the corresponding volume of air. Triplets of V(TG,SF6) determination in 8 infants aged 9-31 months with varying degrees of airway obstruction showed an average volume of 13.7 mL (range, 4.7-25.0). The average SD of the triplets was 2.1 mL (range, 0.1-5.5 mL). Subjects with high V(TG,SF6)/FRC results demonstrated lower maximal expiratory flow at FRC (V'(max)FRC) results (Z-scores) and greater inhomogeneity of ventilation distribution than those with low trapped gas volumes. It is concluded that gas trapping can be assessed with acceptable precision with this washout method. Further studies are needed to establish the sensitivity and usefulness of the method in infants with various types of airway pathology.

Airway Obstruction↗

Pulmonary gas trapping increases in asthmatic children and adolescents in the supine position.

This study aimed to see if gas trapping or ventilation inhomogeneity during tidal breathing increases in young asthmatic subjects when recumbent over a period of 1 hr. Ten asthmatic children and teenagers and 12 control subjects performed tidal breathing multiple-breath N(2)-washout in the sitting position and immediately, 30 min, and 60 min after assuming the supine position. The asthma group also performed the same lung function tests on another day, but then remained in the sitting position throughout. When assuming the supine position, both groups showed significant falls in vital capacity (4-8%) and in functional residual capacity (FRC) (>20%). Gas trapping increased significantly after 30 and 60 min in the supine position only in the asthma group, but other indices of ventilation inhomogeneity did not change with body position. When in the supine position, the trapped gas volume was on average 10% of FRC in the asthma group, which was twice as much as when sitting and three times higher than in supine control subjects. It is concluded that assuming the supine position leads to increased gas trapping in young asthmatics but not in healthy subjects; this could be one of several mechanisms that contribute to nocturnal worsening of asthma.

Age Distribution↗

Peripheral airway function in childhood asthma, assessed by single-breath He and SF6 washout.

To assess whether the peripheral airways are involved in pediatric asthma, 10 asthmatic children (aged 8-15 years), hyperresponsive to dry-air hyperventilation challenge (DACh), performed spirometry and a vital capacity He/SF(6) single-breath washout test at rest, after DACh, and after beta(2)-therapy. The normalized phase III slopes (Sn(III)) of the expired He and SF(6) concentrations served as measures of overall ventilation inhomogeneity, and the (SF(6) - He) Sn(III) difference served to indicate where along the peripheral airways obstruction occurs. While a greater increase in the He vs. SF(6) slope indicates that obstruction has occurred in the vicinity of the acinar entrance, the reverse suggests obstruction deeper in the intraacinar airways. The mean (SD) fall in FEV(1) after DACh was 35 (14)%. Both He and SF(6) Sn(III) increased significantly (P < 0.05) after the challenge, and were restituted after beta(2)-therapy (P < 0.05). After DACh, Sn(III) increased more for He than for SF(6), resulting in a negative (SF(6) - He) Sn(III) difference (P < 0.01), which was restituted after beta(2)-therapy (P < 0.05). Even though there was no correlation between baseline FEV(1) and the magnitude of the subsequent fall in this parameter after DACh (r(2) = 0.04; n.s.), a strong correlation was found between the (SF(6) - He) Sn(III) difference at rest and its change after DACh (r(2) = 0.81; P < 0.001). We conclude that airways close to the acinar entrance participate in the airway response to DACh in asthmatic children. The magnitude of this peripheral airway response is related to the severity of resting peripheral airway dysfunction.

Adolescent↗

Inter- and intraregional ventilation inhomogeneity in hypergravity and after pressurization of an anti-G suit.

This study assessed the effects of increased gravity in the head-to-foot direction (+G(z)) and anti-G suit (AGS) pressurization on functional residual capacity (FRC), the volume of trapped gas (V(TG)), and ventilation distribution by using inert- gas washout. Normalized phase III slope (Sn(III)) analysis was used to determine the effects on inter- and intraregional ventilation inhomogeneity. Twelve men performed multiple-breath washouts of SF(6) and He in a human centrifuge at +1 to +3 G(z) wearing an AGS pressurized to 0, 6, or 12 kPa. Hypergravity produced moderately increased FRC, V(TG), and overall and inter- and intraregional inhomogeneities. In normogravity, AGS pressurization resulted in reduced FRC and increased V(TG), overall, and inter- and intraregional inhomogeneities. Inflation of the AGS to 12 kPa at +3 G(z) reduced FRC markedly and caused marked gas trapping and intraregional inhomogeneity, whereas interregional inhomogeneity decreased. In conclusion, increased +G(z) impairs ventilation distribution not only between widely separated lung regions, but also within small lung units. Pressurizing an AGS in hypergravity causes extensive gas trapping accompanied by reduced interregional inhomogeneity and, apparently, results in greater intraregional inhomogeneity.

Adult↗

Mechanisms of ventilation inhomogeneity during vital capacity breaths standing and supine.

Overall inhomogeneity of ventilation distribution, as measured by single-breath vital capacity (VC) washout (SBW) is known to be greater supine vs. standing. To establish the underlying mechanisms 13 healthy males performed VC SBW of 4% SF(6) and He, standing and supine, with or without a 10 sec breathhold (BH). Overall inhomogeneity, as indicated by normalized phase III slopes, was >50% greater supine (SF(6) 13.1 x 10(-3); He 10.7 x 10(-3) L(-1)) than standing (SF(6) 8.6 x 10(-3); He 6.4 x 10(-3) L(-1); P<0.001). The (SF(6)-He) slope, an index of intraacinar inhomogeneity, did not change with posture. Breathholding, assumed to eliminate convective dependent inhomogeneity within and/or between small lung units, produced twice as great reduction of inhomogeneity when supine vs. standing. After BH inhomogeneity remained significantly greater supine vs. standing. In conclusion, at least two events seem to underlie the increased inhomogeneity when supine: (1) a substantially increased convection dependent non-uniformity between well-separated lung regions; and (2) a somewhat increased convection dependent non-uniformity within and/or between peripherally located lung units.

Adult↗

Effects of body posture and tidal volume on inter- and intraregional ventilation distribution in healthy men.

The influences of body posture and tidal volume (VT) on inter- and intraregional ventilation inhomogeneity were assessed by normalized phase III slope (Sn(III)) analysis of multiple-breath washout recordings of SF(6) and He in 11 healthy men. Washouts with target VT of 750, 1,000, and 1,250 ml were performed standing and supine. A linear-fit method was used to establish the contributions of convection-dependent (interregional) (cdi) and diffusion-convection interaction-dependent (intraregional) inhomogeneity (dcdi). Overall inhomogeneity was defined as the sum of cdi and dcdi. The difference in first-breath Sn(III) for SF(6) vs. He, the (SF(6) - He)Sn(III), served as an index of intra-acinar inhomogeneity. Multiple-regression analysis revealed greater cdi supine vs. standing (P < 0.001) but no significant effects of posture on dcdi or overall inhomogeneity. Larger VT were associated with greater cdi (P < 0.001), particularly when supine, but reduced dcdi (P < 0.001), overall inhomogeneity (P < 0.001), and (SF(6) - He)Sn(III) (P = 0.031). In conclusion, during resting breathing overall and intraregional ventilation inhomogeneities remain unchanged when the supine posture is assumed and improve with larger VT, but supine posture and larger breaths result in greater interregional inhomogeneities.

Adolescent↗