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Ventilatory function in cervical and high thoracic spinal cord injury. Relationship to level of injury and tone.

Weakness and spasticity of chest wall muscles are known to adversely affect pulmonary function in spinal cord-injured patients. To test the assertion that impaired strength and increased tone contribute to ventilation deficits, 52 patients with recent acute traumatic cervical and high thoracic spinal cord injury underwent complete pulmonary function testing. Regression analyses were performed to determine relationships between spinal cord injury level and pulmonary function test results and between Ashworth scale tone ratings and pulmonary function test results. Level of injury was found to be significantly correlated with expiratory reserve volume (and percent predicted expiratory reserve volume), residual volume/total lung capacity ratio, and negative inspiratory pressure but not with vital capacity, forced expiratory volume in one second, forced expiratory volume in one second/vital capacity ratio, inspiratory capacity, total lung capacity, functional residual capacity, residual volume, or positive expiratory pressure. There were significant correlations between Ashworth Scale tone ratings and negative inspiratory pressure but not between tone ratings and any of the other pulmonary function test results. It appears that muscle strength may be a more important factor than muscle tone in determining pulmonary function in spinal cord-injured patients and that both strength and tone are closely related to negative inspiratory pressure.

Adolescent↗

A comparison of two breathing exercise programs for patients with quadriplegia.

This study compared the use of abdominal weights (AbWts) to inspiratory resistive muscle training (IMT) on selected measures of pulmonary function. Eleven patients, aged 16 to 41 years (mean = 27.8, SD = 8.3) with complete cervical injuries were randomly assigned to either an AbWts or IMT treatment group. Subjects in both treatment groups received daily treatments (five times weekly) for 7 weeks. Forced vital capacity (FVC), inspiratory capacity (IC), maximal voluntary ventilation (MVV), peak expiratory flow rate (PEFR), and inspiratory mouth pressure (PImax) were measured weekly. Analysis of variance for repeated measures showed no difference between the AbWts and IMT treatments; there were significant differences within each respective treatment group for all five variables. Although the data did not support the effectiveness of one method of training over the other, the larger increase in MVV with the IMT protocol may be indicative of an endurance training effect with this protocol. Future research should compare the effects of breathing exercise training to spontaneous recovery of the respiratory muscles in control subjects.

Adolescent↗

Obstructive flow-volume loop contours after single lung transplantation.

The development of spirometric airflow obstruction may be a diagnostic dilemma in recipients of single lung allografts. The contribution of bronchial anastomotic stenosis to the observed spirometric obstruction may be clinically difficult to distinguish from that of obliterative bronchiolitis. Similarly, differentiating the "normal" obstructive defect after single lung transplantation for emphysema from obliterative bronchiolitis may be clinically challenging. We retrospectively reviewed the maximum inspiratory and expiratory flow-volume loop contours of lung transplant recipients with either obliterative bronchiolitis (n = 7) or bronchoscopically diagnosed severe bronchial anastomotic stenosis (n = 3). Five patients underwent single lung transplantation for obstructive native lung diseases and underwent observation before and after development of obliterative bronchiolitis. Bronchial anastomotic stenosis-maximum inspiratory and expiratory flow-volume loops were analyzed both before and after correction of stenosis by niobium: yttrium-aluminum-garnet laser photoresection or endobronchial silicone stent placement. Measures of airflow derived from maximum inspiratory and expiratory flow-volume loops, such as peak expiratory flow, peak inspiratory flow, forced expiratory flow at 50% vital capacity, forced inspiratory flow at 50% vital capacity, and forced expiratory volume in 1 second/peak expiratory flow ratio could not differentiate patients with bronchial anastomotic stenosis versus obliterative bronchiolitis. The most clinically useful index was the maximum inspiratory and expiratory flow-volume contour, which was characterized by terminal plateaus during exhalation and inhalation in patients with bronchial anastomotic stenosis. This index was reflected in a lower forced inspiratory flow at 75% vital capacity and forced inspiratory flow at 75% vital capacity/peak inspiratory flow ratio in bronchial anastomotic stenosis that increased after elimination of the anastomotic obstruction.(ABSTRACT TRUNCATED AT 250 WORDS)

Airway Obstruction↗

Improvement of upper airway obstruction after 131I-treatment of multinodular nontoxic goiter evaluated by flow volume loop curves.

Symptoms of tracheal-esophageal compression are often related to a large nontoxic goiter. The aim of the present study was to evaluate to what degree upper airway obstruction, as measured by flow volume loops, FIF50% and FEF50%/FIF50% (Forced Expiratory Flow at 50% of the vital capacity/ Forced Inspiratory Flow at 50% of the vital capacity) exists in nontoxic multinodular goiter, and whether changes occur after 131I-treatment. Thirteen patients with large multinodular nontoxic goiters were evaluated by estimation of FIF50%, FEF50%/FIF50% ratio and a graphic plot of the flow volume loop curve before and three, six and 12 months after treatment with 131I. FIF50% increased over 12 months from median 1.79 l/sec (range 1.46-3.02) to 2.84 l/sec (1.13-5.69) (p = 0.01). A progressive increase was seen over time (p = 0.001, trend analysis). The FEF50%/FIF50% ratio decreased from in 1.45 (0.32-2.26) to 1.03 (0.43-2.13) 12 months after treatment (p < 0.001). A progressive decrease was seen over time (p = 0.001, trend analysis). By visual evaluation 11 had a flow volume loop curve typical for an upper airway obstruction and in 9 patients the FEF50%/FIF50% ratio was > 1.2. In conclusion we found that upper airway obstruction is present in patients with multinodular nontoxic goiter, and seems to be reduced after 131I-treatment. Flow volume loop curves and measurement of FEF50% and FIF50% are important estimates for upper airway obstruction in these patients.

Aged↗

[Chronic hypercapnia at rest or exercise-induced and ventilatory patterns in patients suffering from chronic obstructive bronchopulmonary disease].

The authors review the recent literature on hypercapnia at rest and on exertion in patients suffering from chronic airflow obstruction. At rest, the data in the literature has shown that for varying degrees of airflow obstruction, chronic hypercapnic patients show similar occlusion pressures to normocapnic patients. (The occlusion pressure is an index of the amplitude of neuro-muscular signals coming from the respiratory centre). However, their respiratory profile is characterised by a smaller tidal volume due to a reduction of the inspiratory time and often of a more rapid respiratory rate at a lower minute ventilation (VE). This pattern alone could explain CO2 retention by alveolar hypoventilation. On effort, various authors have shown that hypercapnic patients, or those becoming so during exercise, differ from normals by adopting a ventilatory pattern characterised by a reduction in ventilation linked to their airflow obstruction and a smaller tidal volume. The limited increase in tidal volume on effort is dependent on the duration of inspiration and the reduction of vital capacity and inspiratory capacity. As at rest, the two populations cannot be distinguished in terms of occlusion pressure.

Chronic Disease↗

Inspiratory and expiratory vital capacity.

Vital capacity (VC) is frequently measured by two different methods (inspiration vs expiration). The difference in results is not readily available in the literature. The VC was measured both ways in 60 subjects, including many with obstructive airway disease. Only a minor difference in mean VC (75 +/- ml SD) was found. The methods are probably interchangeable.

Aged↗

Patterns and predictors of sleep disordered breathing in primary myopathies.

BACKGROUND: Sleep disordered breathing (SDB) is common in neuromuscular diseases but its relationship to respiratory function is poorly defined. A study was undertaken to identify distinct patterns of SDB, to clarify the relationships between SDB and lung and respiratory muscle function, and to identify daytime predictors for SDB at its onset, for SDB with continuous hypercapnic hypoventilation, and for diurnal respiratory failure. METHODS: Upright and supine inspiratory vital capacity (IVC, % predicted), maximal inspiratory muscle pressure (PImax), respiratory drive (P(0.1)), respiratory muscle effort (P(0.1)/PImax), and arterial blood gas tensions were prospectively compared with polysomnography and capnometry (PtcCO(2)) in 42 patients with primary myopathies. RESULTS: IVC correlated with respiratory muscle function and gas exchange by day and night. SDB evolved in three distinct patterns from REM hypopnoeas, to REM hypopnoeas with REM hypoventilation, to REM/non-REM (continuous) hypoventilation, and preceded diurnal respiratory failure. SDB correlated with IVC and PImax which yielded highly predictive thresholds for SDB onset (IVC <60%, PImax <4.5 kPa), SDB with continuous hypoventilation (IVC <40%, PImax <4.0 kPa), and SDB with diurnal respiratory failure (IVC <25%, PImax <3.5 kPa). CONCLUSION: Progressive ventilatory restriction in neuromuscular diseases correlates with respiratory muscle weakness and results in progressive SDB which, by pattern and severity, can be predicted from daytime lung and respiratory muscle function.

Adolescent↗

Perception of dyspnoea during acute changes in lung function in patients with either asthma or COPD.

The aim of the study was to evaluate the relationship between several lung function indices and perceived dyspnoea during bronchoconstriction. Acute changes in lung function were induced by inhaled histamine followed by terbutaline, in 12 asthmatics and 12 subjects with chronic obstructive pulmonary disease (COPD). A bipolar visual analogue scale (VAS), allowing subjects to report either improvement or worsening when moving off from a 'nochange' midpoint, was used to rate shortness of breath. Large swings in ratings were seen in all asthmatics and in seven out of 12 COPD subjects (high perceivers). Using linear regression of VAS rating against parallel change in lung function, on a within-subject basis, the highest degree of correlation between dyspnoea and objective response was found to involve the change in specific inspiratory resistance (sRin) in the asthmatics. In the five low perceivers, the ability to discriminate an increase in airway obstruction, estimated as the VAS/change in lung function slope, was very poor. Using a stepwise multiple regression analysis, the sensation of dyspnoea was found to be significantly related to the FEV1 and the sRin in the asthmatics, to the inspiratory vital capacity and the maximal inspiratory flow at 50% FVC (MIF50) in the COPD subjects with high perception, and to the MIF50 in the COPD subjects with low perception.

Aged↗

[Evaluation of a new method for detection of obstructive disease in children asthma: the negative expiratory pressure (NEP)].

INTRODUCTION: To take in charge of an asthmatic child it is necessary to evaluate the lung function. METHODS: In this study, the Negative Expiratory Pressure (NEP) has been used for the first time in children with asthma. After lung spirometry by plethysmography, we have used the NEP to assess the prevalence of expiratory flow limitation (FL) during resting breath in 27 asthmatic children (mean age: 11 +/- 2,5 years) 3-4 days after a crisis in both sitting and supine positions. RESULTS: All the children presented an obstructive defect (FEV 1: 63 +/- 13% med) and a dynamic hyperinflation (FRC: 128 +/- 25% med). According to the NEP, 11 children presented an expiratory flow limitation (FL). Asthma was more severe in the FL than in non-FL children (GINA 2002 classification). Among the 11 FL children, 5 were FL in both sitting and supine position and 6 only in supine. Nine of the 27 children were FL with the conventional method. NEP seems a more accurate method to assess the clinical gravity of asthma than FEV 1. The reduction of FRC in the supine position probably explains the greater incidence of FL in supine position. CONCLUSION: Because of its easy execution, NEP seems to be well adapted for children. Links between FL detected by NEP and clinical signs of asthma has to be assessed by furthers studies including more patients.

Adolescent↗

Training to yoga respiration selectively increases respiratory sensation in healthy man.

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.

Adult↗

Spirometry in office practice: getting full measure from a useful tool.

Spirometry is a simple but underutilized test that is particularly well suited for office practice. With it, the physician can distinguish among different types of ventilatory impairment and follow the patient's course. It also permits detection of small-airway disease at an early stage, when measures to prevent development of chronic bronchitis and emphysema may be effective.

Expiratory Reserve Volume↗

Predictive value of mechanomyography and accelerometry for pulmonary function in partially paralyzed volunteers.

BACKGROUND: Accelerometry (ACM) of adductor pollicis muscle has been used for monitoring of neuromuscular blockade but its validity compared with the gold standard, mechanomyography (MMG), has been questioned. During neuromuscular blockade we compared these methods and we assessed pulmonary function. METHODS: In awake partially paralyzed volunteers we spirometrically assessed pulmonary function every 5 min until recovery. Rocuronium (0.01 mg kg(-1) + 2-10 microg kg(-1) min(-1)) was administered to maintain train-of-four (TOF)-ratios (assessed every 15 s) of approximately 0.5 and 0.8 over a period of more than 5 min. The TOF-ratio associated with 'acceptable' pulmonary recovery [forced vital capacity (FVC) and forced inspiratory volume in 1 s (FIV1) of > or =90% of baseline] was calculated using a linear regression model. During 5-min periods of repetitive nerve stimulation we compared the squared residuals of the FVC and FIV1 estimates from TOFACM vs. TOFMMG, and compared variance of values derived from ACM and MMG using Wilcoxon's test. RESULTS: Limits of agreement of TOF-ratio derived from ACM and MMG were wide [0.15+/-0.016 (SD)], and variability of TOFACM exceeded that of TOFMMG[variance: 77+/-105 vs. 51+/-55% (P<0.01)]. Calculated TOF(ACM) and TOFMMG ratios of 0.56 (0.22-0.71) [mean (95%CI) and 0.6 (0.28-0.74)], respectively, predict 'acceptable' (90%) recovery of FVC while FIV1 remains impaired until TOF-ratios of 0.91 (0.82-1.07) and 0.95 (0.82-1.18), respectively. In turn, TOFMMG (TOFACM) of unity predicted 'acceptable' recovery of FVC and FIV1 in 94 (93) % and 68 (73) % of measurements, respectively. CONCLUSIONS: Accelerometry predicts effects of relaxation on pulmonary function as valid as the gold standard mechanomyography. We recommend that recovery of TOF ratio to 0.9-1.0 should be used as an indication of sufficient neuromuscular recovery in daily practice.

Adult↗

Effect of three different surgical prone positions on lung volumes in healthy volunteers.

Ten healthy volunteers were placed in three different surgical prone positions (knee-chest, Eschmann frame and two supports, one each for the thorax and pelvis); the normal prone position without any supports was used as a control. Lung volumes using helium dilution and spirometry were calculated for each volunteer in each position. Compared with the control position, functional residual capacity, expiratory reserve volume, residual volume and total lung capacity were significantly higher in the knee-chest position. Functional residual capacity and expiratory reserve volume were significantly higher in the frame position. No advantage was gained with the use of the two supports position. We conclude that, of these three prone positions in awake volunteers, the knee-chest position causes least respiratory restriction.

Adult↗

Bronchoconstriction induced by repeated forced vital capacity manoeuvres.

An asthmatic atopic patient who developed bronchoconstriction during repeated forced vital capacity manoeuvres and after exercise is reported. Since increases in total airway and upper segment resistances and drop in FEV1 and Vmax 50 were induced, it is considered that bronchoconstriction involved most of the airways. Partial prevention of this effect could be demonstrated after inhalation of an adrenergic bronchidilator or disodium cromoglycate. Atropine completely prevented the flow response but did not alter the total airway resistance increase. Bronchoconstriction is interpreted as partially related to mast cell disruption and cholinergically mediated stimuli.

Adolescent↗

Putative cerebral cortical involvement in the ventilatory response to inhaled CO2 in conscious man.

1. The response of the diaphragm to both transcranial magnetic stimulation and electrical phrenic nerve stimulation was studied in thirteen normal subjects under conditions of either a 'reflex' drive to ventilation with inhaled CO2 or during volitional ventilation of similar magnitude. 2. The induced compound action potential in the diaphragm was recorded using an oesophageal electrode, and in some cases transdiaphragmatic pressure was recorded using oesophageal and gastric balloon catheters. 3. The response of the diaphragm to transcranial magnetic stimulation was invariably facilitated with volitional inspiration; there was either minimal or no response at functional residual capacity. 4. Facilitation with inspiration was also seen during a 'reflex' drive to ventilation with inhaled CO2 in the presumed absence of any volitional contribution to ventilation. A similar degree of facilitation was seen with voluntary ventilation of similar magnitude and pattern. 5. If the facilitation is predominantly a cortical phenomenon, then these results imply that there is a behavioural component in the previously supposed purely 'reflex' drive to ventilation with inhaled CO2. We also discuss the interpretation of these results if some of the facilitation occurs at the phrenic motoneurone.

Action Potentials↗

Unspecific bronchial reactivity to carbachol in healthy subjects--effect of age and smoking habits.

Chronic inflammatory processes of the airways induced by long-time cigarette consumption are a crucial factor in the pathogenesis of chronic obstructive pulmonary disease. In contrast, the role of cigarette smoking in the pathogenesis of bronchial hyperreactivity (BHR) is still unclear. The aim of this study was to assess the effect of chronic cigarette consumption on pulmonary function tests and BHR in healthy subjects. 63 healthy smokers and 63 lifetime nonsmokers matched for sex, age, height and weight were evaluated. Pulmonary function was determined by body plethysmography and spirometry. Bronchial provocation was performed by inhalation of increasing doses of carbachol (up to 25 g/l) in isotonic NaCl solution. Pulmonary function tests were within normal limits in all subjects. Nevertheless, midexpiratory flow at 25% of forced vital capacity was significantly smaller, and functional residual capacity was significantly greater in middle-aged smokers (age: 40-60 years) compared to middle-aged nonsmokers (p < 0.05, both comparisons). In young smokers and nonsmokers (age: 20-30 years) pulmonary function tests were not different (p > 0.28, all comparisons). Importantly, the carbachol concentration that provoked a 50% rise in specific airway resistance (PD50sRaw) was similar in smokers and nonsmokers of both age groups (p > 0.05, both comparisons) and did not correlate with the age of the subjects (p > 0.2). No correlations between baseline values of pulmonary function tests and PD50sRaw were observed (p > 0.34, all comparisons). The observations confirm that the distribution profile of BHR is unimodal and apparently not affected by age and smoking habits.

Adult↗

A lung computed tomographic assessment of positive end-expiratory pressure-induced lung overdistension.

The aim of this study was to assess positive end-expiratory pressure (PEEP)-induced lung overdistension and alveolar recruitment in six patients with acute lung injury (ALI) using a computed tomographic (CT) scan method. Lung overdistension was first determined in six healthy volunteers in whom CT sections were obtained at FRC and at TLC with a positive airway pressure of 30 cm H2O. In patients, lung volumes were quantified by the analysis of the frequency distribution of CT numbers on the entire lung at zero end-expiratory pressure (ZEEP) and PEEP. In healthy volunteers at FRC, the distribution of the density histograms was monophasic with a peak at -791 +/- 12 Hounsfield units (HU). The lowest CT number observed was -912 HU. At TLC, lung volume increased by 79 +/- 35% and the peak CT number decreased to -886 +/- 26 HU. More than 70% of the increase in lung volume was located below -900 HU, suggesting that this value can be considered as the threshold separating normal aeration from overdistension. In patients with ALI, at ZEEP the distribution of density histograms was either monophasic (n = 3) or biphasic (n = 3). The mean CT number was -319 +/- 34 HU. At PEEP 13 +/- 3 cm H2O, lung volume increased by 47 +/- 19% whereas mean CT number decreased to -538 +/- 171 HU. PEEP induced a mean alveolar recruitment of 320 +/- 160 ml and a mean lung overdistension of 238 +/- 320 ml. In conclusion, overdistended lung parenchyma of healthy volunteers is characterized by a CT number below -900 HU. This threshold can be used in patients with ALI for differentiating PEEP-induced alveolar recruitment from lung overdistension.

Adult↗