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Biomedical subjects

B Wuyam

Publications and source records attributed to B Wuyam.

At least 19 recordsLinked to original sources

Exhaled nitric oxide in single and repetitive prolonged exercise.

This study was performed to determine the influence of single and repetitive exercise on nitric oxide (NO) concentration in the lung. Exhaled NO concentration (FE(NO)) was measured during a constant-flow exhalation manoeuvre (170 ml x s(-1), against a 10 cmH2O resistance) in healthy individuals (a) during and after a 100-min square-wave exercise of between 25 and 60% of maximal power output (n = 18) and (b) before and after five successive prolonged exercises (90-120 min, 75-85% of maximal heart rate) separated by 48 or 24 h (n = 8). The FE(NO0.170) was decreased during and after the 100-min exercise test (mean +/- s(x): 58.5 +/- 3.7% and 76.7 +/- 5.2% of resting value at 90 min of exercise and 15 min post-exercise, respectively; P < 0.05). The five successive exercise sessions induced a similar post-exercise FE(NO0.170) decrement (73.1 +/- 2.9% of resting value 15 min post-exercise), while basal FE(NO0.170) values were not different between the five sessions (P > 0.05). These results suggest that prolonged exercise induces a reduction in NO concentration within the lung that lasts for several minutes after the end of exercise. However, repetitive exercises (at least every 24 h) allow complete NO recovery from one session to another. The implication of such a decrease in NO availability within the lung remains to be clarified.

Adult↗

Awake flow limitation with negative expiratory pressure in sleep disordered breathing.

BACKGROUND AND PURPOSE: Although upper airway collapsibility (UAC) is theoretically useful to anticipate severity of sleep-disordered breathing (SDB), inspiratory UAC measurements are poorly correlated with obstructive sleep apnea (OSA) severity. PATIENTS AND METHODS: We investigated in 15 healthy and 35 SDB awake subjects whether negative expiratory pressure (NEP) could be a technique which would allow us to anticipate SDB severity. We characterized in these subjects, both in supine and sitting position, at -5 and -10 cm H(2)O, the flow-volume curves and a new NEP quantitative index (ratio of the 'areas under the curve' of NEP flow-volume loop vs. spontaneous flow-volume loop). RESULTS: Abnormal flow-volume curves were significantly more frequent in patients with SDB than in healthy subjects, for both negative pressures in sitting posture and -10 cm H(2)O in supine position. The quantitative index decreased with the severity of SDB, independently of confounding factors (age, body mass index (BMI) and expiratory reserve volume (ERV)). In the supine position, at -5 and -10 cm H(2)O, thresholds of less than 160 and 180% respectively identified in 96.6% of SDB, whereas thresholds of greater than 160 and 180% were adequately classified in 76.9% of controls. CONCLUSIONS: NEP flow-volume curves and quantitative index during wakefulness are useful methods to detect UAC. These results, however, should be confirmed by a prospective study in the general population.

Adult↗

[Methacholine challenge in young children: measurement of resistance by interruption].

The aims of this study were 1. To evaluate the measurement of resistance by interruption (Rint) of bronchoconstriction induced by inhalation of methacholine and 2. To determine a threshold of increase of resistance in young children to differentiate responders from non-responders. Forty-six children (mean age 5 [4.3-6.1] years) referred for methacholine challenge were tested by measurement of Rint and transcutaneous oxygen tension. A fall of 20% or more in oxygen tension from the baseline was used to define the responders. The children studied had a baseline Rint significantly higher than normal (0.84 [0.68-1.01] vs. 0.76 [0.60-0.90] kPa L(-1)s; p < 0.03). Forty-one children were responders and had an increase in Rint significantly different from the non-responders (p < 0/04). An increase in Rint of 35% distinguished responders from non-responders in young children with chronic cough. Interrupter resistance increases significantly during bronchial provocation in responding young children and may be used to measure the degree of bronchoconstriction.

Age Factors↗

Exhaled nitric oxide during normoxic and hypoxic exercise in endurance athletes.

AIM: Endogenous nitric oxide (NO) through its relaxing effect on smooth muscle cells may be involved in pulmonary gas exchange as well as in the modulation of the hypoxic pulmonary vasoconstriction. As athletes with exercise-induced hypoxaemia (EIH) present pulmonary gas exchange abnormalities in normoxia that could be even greater in hypoxia, we hypothesized that pulmonary NO may be lower in such athletes with EIH. METHODS: Eleven athletes with EIH [decrease in arterial oxygen blood partial pressure (PaO2) > 12 mmHg] and 9 without EIH (NEIH) exercised at 40%, 60% (10 min) and 90% (5 min) of normoxic maximal power output (Pmax) in normoxia, and at 40% and 60% (10 min) of Pmax in hypoxia (FiO2 = 15%). Exhaled NO concentration during a constant flow exhalation (FENO(0.170)) and arterialized blood gases were measured at every power output. RESULTS: FENO(0.170) decreased from rest to exercise both in normoxia (-27.8 +/- 22.8% at 90% Pmax, P < 0.001) and hypoxia (-23.8 +/- 17.5% at 60% Pmax, P < 0.001). At 90% Pmax in normoxia, EIH athletes showed lower PaO2 (76.7 +/- 5.4 vs. 82.8 +/- 4.4 mmHg, P = 0.013) and greater FENO(0.170) decrement (-37.0 +/- 24.7% vs. -16.6 +/- 14.6%, P = 0.042) than NEIH athletes. During hypoxic exercise, P(a)O(2) and FENO(0.170) decreases were similar in both groups (P > 0.05). CONCLUSION: The present study shows lower pulmonary NO in athletes with gas exchange abnormalities during intense exercise in normoxia, while EIH and NEIH athletes have similar decreases in blood gases and pulmonary NO during hypoxic exercise. Decreased pulmonary NO in such conditions may contribute to ventilation-perfusion inequality and/or increase pulmonary vascular tone in athletes.

Adult↗

[Home pulmonary rehabilitation: results in a cohort of 37 patients with respiratory handicap].

INTRODUCTION: The purpose of this open, prospective, non-controlled study is to evaluate the feasibility and effect of 10 weeks of home-based exercise retraining on a cyclo-ergometer in respiratory patients. METHODS: 75 patients are consecutively referred. 37 patients, (75% COPD), took part in the programme, 38 (51%) did not. Nine dropped out, five had missing data, therefore the analysis is of 23 patients. RESULTS: There was a significant improvement in Quality of life (CRQ) (p=0,02), in endurance and in work rate on the bicycle (p<0.001). There is a correlation between the increase in work rate on the bicycle and the improvement in quality of life (p=0.01, r=0.5). When the patients are divided according to the level of improvement in work rate on the cycle-ergometer (mild 0 to 10% improvement; moderate 11 to 49% and strong > 50%) we find that only mild improvement is found in those with a low initial work rate. CONCLUSION: We confirm the effectiveness of home based training, this being feasible in one out of two patients referred. Co-morbidity and the psycho-social situation were the main exclusion factors. The improvement in effort capacity could be an important determinant of quality of life. Cyclo-ergometer could required too great an effort for training more severe patients.

Exercise Test↗

Brain electrical activity during combined hypoxemia and hypoperfusion in anesthetized rats.

In order to investigate the effects of moderate hypoxemia on brain electrical activity and the consequences of an altered cerebro-vascular response to hypoxemia, we recorded changes in electrical activity of the brain in anesthetized rats following unilateral carotid artery ligation (UCAL). In these animals, on the clamped side, cerebral blood flow, whilst normal during normoxia, shows less augmentation during hypoxemia. Six anesthetized (Halothane) Sprague-Dawley rats with UCAL were studied during 20 min periods of baseline (FI(O(2))=30%), hypoxemia (FI(O(2))=9.5%) and recovery (FI(O(2))=30%): mean arterial pressure of oxygen (PA(O(2))) achieved was 177.0, 37.6 and 160.1 mmHg, respectively. A significant decrease in the frequencies of the ECoG was observed bilaterally during hypoxemia: centroid frequency (fc)=3.37+/-0.14 and 2.85+/-0.13 Hz on the intact and clamped hemisphere respectively during hypoxemia versus fc=4.09+/-0.20 Hz (mean+/-S.E.M.) during baseline, which was not reversed during recovery (3.27+/-0.11 Hz) (ANOVA, P<0.01). The total power of the signal (Pw) was unaffected on the intact hemisphere but diminished on the clamped side during hypoxemia. Our results show that a significant slowing of ECoG is observed during hypoxemia of moderate intensity (40 mmHg) even when cerebro-vascular response to hypoxemia is preserved and that total power of the ECoG signal is severely diminished when the cerebro-vascular response to hypoxemia is impaired.

Animals↗

Characterization of obstructive nonapneic respiratory events in moderate sleep apnea syndrome.

Obstructive nonapneic respiratory events (ONAREs, i.e., obstructive hypopneas [OHs] and respiratory effort related arousals [RERAs]) are clinically important as producing sleep fragmentation but are much more difficult to detect and classify than obstructive apneas. We characterized 1,061 ONAREs in 15 unselected patients with moderate sleep apnea-hypopnea syndrome (OSAHS) according to the 1999 American Academy of Sleep Medicine (AASM) Task Force recommendations concerning accurate skills for respiratory measurements (i.e., pneumotachograph and esophageal pressure [Pes]) and definitions of respiratory events. OHs were defined as > or = 50% decrease in flow or < 50% but > or = 30% decrease in flow associated with either a desaturation of > or = 3% or a cortical arousal. RERAs corresponded to a less than 30% decrease in flow associated with an arousal. OHs represented a large majority of the events (79.9%, n = 848). Among the events demonstrating a 30 to 50% reduction in flow (n = 392), the occurrence of a cortical arousal permitted the classification of 246 events as OHs (62.8%). RERAs represented only 5.3% of the events. Finally 14.8% of the events were classified as indeterminate owing to a < 50% and > or = 30% airflow decrease without arousal or desaturation or an airflow decrease less than 30% without arousal. The same level of DeltaPes was observed at the end of OHs and RERAs (21.9 +/- 5.5 versus 18.9 +/- 5.7 cm H(2)O respectively [NS]) whereas the reduction in flow was as expected, higher for OH (57.9 +/- 10.7 versus 21.3 +/- 4.9%). In a population of moderate OSAHS, OH represented the dominant type of ONAREs when RERAs should be considered as specific but relatively rare respiratory events. The occurrence and the recognition of a microarousal represented the key associated factor for classifying respiratory events as hypopneas. The high rate (15%) of unclassified events demonstrated some limitations in the AASM Task Force recommendations for definitions of respiratory events. Similar levels of DeltaPes found at the end of RERAs and OHs, although the reduction in flow was higher for OHs, suggest that different levels of collapsibility can exist throughout the night in a given patient.

Data Interpretation, Statistical↗

Characterization of pharyngeal resistance during sleep in a spectrum of sleep-disordered breathing.

Aims of the study were 1) to compare Hudgel's hyperbolic with Rohrer's polynomial model in describing the pressure-flow relationship, 2) to use this pressure-flow relationship to describe these resistances and to evaluate the effects of sleep stages on pharyngeal resistances, and 3) to compare these resistances to the pressure-to-flow ratio (DeltaP/V). We studied 12 patients: three with upper airway resistance syndrome (UARS), four with obstructive sleep hypopnea syndrome (OSHS), three with obstructive sleep apnea syndrome (OSAS), and two with simple snoring (SS). Transpharyngeal pressures were calculated between choanae and epiglottis. Flow was measured by use of a pneumotachometer. The pressure-flow relationship was established by using nonlinear regression and was appreciated by the Pearson's square (r(2)). Mean resistance at peak pressure (Rmax) was calculated according to the hyperbolic model during stable respiration. In 78% of the cases, the value of r(2) was greater when the hyperbolic model was used. We demonstrated that Rmax was in excellent agreement with P/V. UARS patients exhibited higher awake mean Rmax than normal subjects and other subgroups and a larger increase from wakefulness to slow-wave sleep than subjects with OSAS, OSHS, and SS. Analysis of breath-by-breath changes in Rmax was also a sensitive method to detect episodes of high resistance during sleep.

Adult↗

Breathing pattern in patients with Parkinson's disease.

The improvement in motor performance resulting from levodopa administration in patients with Parkinson's disease (PD) provides the opportunity to investigate ventilatory changes brought about by the disease. The aim of this study has been to investigate these changes in order to specify the mechanisms of the impairment in breathing in PD. Breathing patterns at rest were investigated in 11 patients with idiopathic PD both before (OFF) and after (ON) administration of levodopa at a dose improving their motor performance by at least 30%. Airflow (Fleisch head mounted on a mask), rib cage and abdomen movements (inductance plethysmography) were recorded in the OFF condition 1 h after subjects woke up. Subjects then received levodopa and a new set of recordings was obtained 1 h later, in the ON condition. Breath-by-breath processing of recordings was carried out, and tidal volume (VT), inspiratory (TI) and expiratory (TE) durations were measured. The main finding was a lengthening of TI resulting in a decrease in ventilation and in VT/TI, and an increase in TI/TTOT in the ON compared to the OFF condition. In the ON condition abnormal rib cage-abdomen plots patterns were found in four out of six subjects. A hypothesis on the effect of PD on breathing is proposed on grounds of normal diaphragmatic activity but impaired activity of the other respiratory muscles and more specifically the intercostal muscles.

Aged↗

High prevalence and persistence of sleep apnoea in patients referred for acute left ventricular failure and medically treated over 2 months.

AIMS: Cardiac failure patients were studied systematically using polysomnography 1 month after recovering from acute pulmonary oedema, and again after 2 months of optimal medical treatment for cardiac failure. METHODS AND RESULTS: This prospective study of consecutive patients was conducted in a cardiac care unit of a university hospital. V o(2)measurements and left ventricular ejection fraction were recorded. Thirty-four patients, initially recruited with pulmonary oedema, improved after 1 month of medical treatment to NYHA II or III. They were aged less than 75 years and had a left ventricular ejection fraction less than 45% at the time of inclusion. Age was 62 (9) years, body mass index= 27 (5) kg x m(-2)and an ejection fraction= 30 (10)%. Eighteen of the 34 patients (53%) had coronary artery disease. Twenty-eight of the 34 had sleep apnoea syndrome with an apnoea+hypopnoea index >15 x h(-1)of sleep. Thus, the prevalence of sleep apnoea in this population was 82%. Twenty-one of 28 (75%) patients had central sleep apnoea and seven of 28 (25%) had obstructive sleep apnoea. Patients with central sleep apnoea had a lower Pa co(2)than those with obstructive sleep apnoea (33 (5) vs 37 (5) mmHg, P<0.005). Significant correlations were found between apnoea+hypopnoea index and peak exercise oxygen consumption (r= -0.73, P<0.01), and apnoea+hypopnoea index and Pa co(2)(r= -0.42, P = 0.03). When only central sleep apnoea patients were considered, a correlation between apnoea+hypopnoea index and left ventricular ejection fraction was also demonstrated (r= -0.46, P<0.04). After 2 months of optimal medical treatment only two patients (both with central sleep apnoea) showed improvement (apnoea+hypopnoea index <15 x h(-1)). CONCLUSIONS: We have demonstrated a high prevalence of sleep apnoea, which persisted after 2 months of medical treatment, in patients referred for acute left ventricular failure. Central sleep apnoea can be considered a marker of the severity of congestive heart failure.

Aged↗

Peripheral neuropathy in sleep apnea. A tissue marker of the severity of nocturnal desaturation.

Because chronic obstructive pulmonary disease (COPD) is well known to induce peripheral neuropathy and resistance to ischemic nerve conduction failure (RICF), we performed a case-control study examining peripheral nerve function during ischemia in 17 patients with severe obstructive sleep apnea (OSA) without daytime hypoxemia and 10 control subjects. Median nerve conduction was studied before, during, and after a 30-min period of ischemia. Preischemic sensory and mixed nerve potential amplitudes and sensory conduction velocity were lower in OSA patients than in control subjects despite higher supramaximal stimulation. During ischemia, seven OSA patients manifested RICF (OSA-RICF), whereas both the other 10 patients, who were nonresistant to ischemic conduction failure (OSA-NR), and control subjects did not. OSA-RICF patients had the lowest initial nerve-potential amplitude, whereas OSA-NR patients had a response intermediate between that of control subjects and OSA-RICF patients. OSA-RICF patients had a lower mean nocturnal SaO2 and a higher body mass index (BMI) and duration of SaO2 < 70% than did OSA-NR patients. Seven patients (four OSA-RICF and three OSA-NR) were reevaluated after at least 2 mo of treatment with nasal continuous positive airway pressure (nCPAP). RICF disappeared in all OSA-RICF patients, whereas preischemic nerve conduction parameters were unchanged in both OSA-RICF and OSA-NR patients. Thus OSA patients have peripheral nerve dysfunction whose severity is partly related to the level of nocturnal hypoxemia. Abnormal preischemic nerve conduction suggests axonal lesions, whereas RICF, which appears to be a sensitive but nonspecific tissue marker of the severity of hypoxemia, may result from adaptative mechanisms.

Adult↗

Lung function and exercise capacity in thalassaemia major.

Lung function abnormalities in thalassaemia major are various and complex; however, patients still die from cardiac lesions. This study aimed to investigate pulmonary and cardiac involvement at an early stage in thalassaemic patients and study their respective implications at rest and during exercise. Ten patients (five adults and five children) with thalassaemia major were investigated by echocardiography, lung function and exercise testing a few days after transfusion. All have had regular transfusions and chelation with deferoxamine and none had chronic pulmonary disease symptoms. Minor lung function abnormalities were found: two patients had moderate obstructive syndrome and two had a decreased carbon monoxide transfer factor. Hypoxaemia was never found at rest and no desaturation was observed at the end of exercise. Echocardiographic abnormalities were also moderate. Peak oxygen consumption (V'O2) was decreased in three adults and was lower in adults than children (means 27.7+/-4.6 and 41.1+/-4.8 mL.kg(-1).min(-2) respectively). The V'O2/cardiac frequency slope was lower in adults than children (0.25+/-0.06 versus 0.42+/-0.10 mL.kg(-1).min(-2)), whereas end-exercise breathing reserve was >40% maximal voluntary ventilation for all patients. In conclusion, none of the patients had ventilatory limitations but older patients had cardiac limitations assessed by the relationship between oxygen consumption and cardiac frequency. Exercise testing may detect cardiac impairment in thalassaemia major earlier than investigations at rest.

Adolescent↗