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Biomedical subjects

J W Fitting

Publications and source records attributed to J W Fitting.

At least 19 recordsLinked to original sources

[Pulmonary infiltrates and peripheral blood eosinophilia].

A 43-year-old asthmatic woman was hospitalised because of fever, cough, expectorations and asthenia. Chest X-rays showed bilateral pulmonary infiltrates. Peripheral blood eosinophilia was greater than 9 G/l. Bronchoalveolar lavage revealed a massive eosinophilia. The clinical features were consistent with a chronic eosinophilic pneumonia. All the symptoms resolved with the initiation of prednisone treatment. The differential diagnosis of eosinophilic pneumonia is discussed.

Adrenal Cortex Hormones↗

Outcome after unilateral lung volume reduction surgery in patients with severe emphysema.

OBJECTIVE: Bilateral lung volume reduction surgery (LVRS) has emerged as a palliative treatment option in patients with severe pulmonary emphysema. However, it is not known if a sustained functional improvement can be obtained using an unilateral approach. METHODS: We hypothesized that a palliative effect can also be obtained by unilateral LVRS and prospectively assessed lung function, walking distance, and dyspnea before and 3, 6, 12, 18, 24 and 36 months after unilateral LVRS. RESULTS: Twenty-eight patients were operated by the use of video-assisted thoracoscopic surgery (VATS) with a mean follow-up of 16.5 months (range 3-36 months). Forced expiratory volume in 1 s (FEV1) was significantly improved up to 3 months (1007+/-432 compared to 1184+/-499 ml, P<0.001), residual volume up to 24 months (4154+/-1126 compared to 3390+/-914 ml, P<0.01), dyspnea up to 12 months (modified Borg dyspnea scale 6.6+/-1.8 compared to 3.9+/-1.8, P=0.01) and walking distance up to 24 months (343+/-107 compared to 467+/-77 m, P<0.05) after unilateral LVRS compared to preoperative values. Overall, 25 of 28 patients reported a subjective benefit after unilateral LVRS. There was no 30-day mortality. Only two patients required surgery on the contralateral side after 4.5 and 6 months, respectively, both suffering from alpha-1-antitrypsin deficiency. CONCLUSIONS: Unilateral LVRS by the use of VATS results in a sustained beneficial effect, improving walking distance and dyspnea for up to 24 months in patients with severe emphysema. The preservation of the contralateral side for future intervention if required renders unilateral LVRS an attractive concept in this difficult palliative situation.

Aged↗

Pulmonary toxicity with mefloquine.

This report presents a case of acute lung injury developing within hours after administration of mefloquine for a low-level Plasmodium falciparum malaria, which was persistent despite halofantrine therapy. Extensive microbiological investigation remained negative and video-assisted thoracoscopic lung biopsy demonstrated diffuse alveolar damage. The evolution was favourable without treatment. This is the second report of acute lung injury and diffuse alveolar damage caused by mefloquine. Glucose-6-phosphate dehydrogenase deficiency was present in the former case and was thought to contribute to the lung injury. However, glucose-phosphate dehydrogenase was normal in the present case, suggesting that it is not a predisposing condition to the lung injury.

Antimalarials↗

Usefulness of sniff nasal pressure in patients with neuromuscular or skeletal disorders.

Inspiratory muscle strength is an important variable in patients with neuromuscular or skeletal disorders. It is usually assessed by measuring maximal inspiratory pressure (PI(max)), but this test may prove difficult for some patients, and low values may originate from incomplete effort or air leaks. We assessed the usefulness of the novel sniff nasal pressure (Pn(sn)) test in 126 patients with a neuromuscular or a skeletal disorder, aged 5 to 49 yr. Pn(sn) was measured in an occluded nostril during maximal sniffs performed through the contralateral nostril. All patients performed the Pn(sn) maneuver easily, whereas 10 young and weak patients with neuromuscular disorders could not perform the PI(max) maneuver. Data were analyzed for the 116 patients who could perform both tests (92 patients with neuromuscular and 24 with skeletal disorders). When expressed as percents of the predicted values, Pn(sn) was similar to PI(max) in patients with neuromuscular disorders (54 +/- 25% predicted [mean +/- SD] versus 52 +/- 24% predicted), and was higher than PI(max) in patients with skeletal disorders (70 +/- 25% predicted versus 61 +/- 27% predicted, p < 0.05). Pn(sn) appeared to be the main determinant of VC in patients with neuromuscular disorders, whereas the Cobb angle and PI(max) were the main determinants of VC in patients with skeletal disorders. We conclude that inspiratory muscle strength can be easily assessed with Pn(sn) in children and adults with various neuromuscular and skeletal disorders. This new muscular parameter appears particularly useful in neuromuscular disorders, in which it represents a major determinant of VC.

Adolescent↗

Effect of elective antibiotic therapy on resting energy expenditure and inflammation in cystic fibrosis.

Cystic fibrosis (CF) patients often present with malnutrition which may partly be due to increased resting energy expenditure (REE) secondary to inflammation. Both REE and tumour necrosis factor-alpha (TNF-alpha), as other markers of inflammation, are elevated during respiratory exacerbations and decrease after antibiotic treatment. However, the effect of antibiotic therapy on REE and inflammation in patients without respiratory exacerbation is not known. The aim of our study was to determine the effect of such an elective antibiotic therapy on REE, TNF-alpha, and other serum markers of inflammation. Twelve CF patients 5F/7M, age 15.9 +/- 6.1 years, weight for height ratio 89 +/- 8% without clinically obvious exacerbation and treated by intravenous antibiotics were studied. Both before (D0) and after (D14) treatment, pulmonary function tests were performed. REE was measured by indirect calorimetry and blood taken to measure inflammation parameters. Body weight increased by 1.1 kg from D0 to D14 (P < 0.001), composed of 0.3 kg fat mass and 0.8 kg fat-free mass (FFM). The forced expiratory volume at 1 s increased from 43 +/- 15% of predicted at D0 to 51 +/- 15% of predicted at D14 (P < 0.01). Mean REE was 41.1 +/- 7.6 kcal/kg FFM per day at D0 and did not change significantly at D14 (40.6 +/- 8.5 kcal/kg FFM per day). Serum markers of inflammation decreased from D0 to D14: C-reactive protein 17 +/- 17 mg/l to 4 +/- 7 mg/l (P < 0.05), elastase 62 +/- 29 microg/l to 45 +/- 18 microg/l (P < 0.02), orosomucoid acid 1.25 +/- 0.11 g/l to 0.80 +/- 0.15 g/l (P < 0.001), and TNF-alpha 37 +/- 14 pg/ml to 29 +/- 6 pg/ml (P = 0.05). Individual values showed a correlation between changes in REE and in TNF-alpha (P < 0.02). The contribution of inflammation to energy expenditure is possible but appears to be minimal in cystic fibrosis patients treated by antibiotics on a regular basis in the absence of clinically obvious exacerbation.

Adolescent↗

Does the 'oxygen cost diagram' reflect changes in six minute walking distance in follow up studies?

The oxygen cost diagram (OCD) is a simple scale for quantifying a patient's evaluation of his tolerance to exercise frequently used in clinical trials; it has been shown to be well correlated with objective measures of capacity of ambulation such as the 6 min walk test (6' W). This study aimed to determine whether the OCD accurately depicts changes in capacity of ambulation either quantitatively or qualitatively. OCD ratings were analysed at baseline and after a 1 yr follow-up, in patients treated by non-invasive home mechanical ventilation, as well as objective measurements of pulmonary function [forced expiratory volume in 1 sec (FEV1), forced vital capacity (FVC), arterial blood gases], physical autonomy (6' W), resting dyspnoea (Borg scale) and scores for anxiety or depressive disorders (HAD). Forty-five patients (24 male, 21 female, aged 62 +/- 16 years, mean FEV1: 38 +/- 17% of predicted) were evaluated at baseline. OCD ratings were significantly correlated with 6 min walking distance (P < 0.0001)--although with a large variability around the regression line--but not with resting dyspnoea (Borg). Patients were re-evaluated after 352 +/- 90 days. Changes in OCD ratings were not significantly correlated with changes in FFV1 FVC, PaO2, PaCO2, 6' W, HAD scores or resting dyspnoea; furthermore--albeit for Borg scores--changes in OCD did not reflect the trend of changes in these parameters. These results show that although OCD ratings are well correlated with results of a 6' W test, they cannot be used to extrapolate individual performances, because of a large variability around the regression line, furthermore, changes in the OCD over 1 yr did not depict objective changes in 6' W test results, either quantitatively or qualitatively. The use of the OCD in clinical trials should be limited to the description of the patient's perception of exercise tolerance, as a component of health-related quality of life, with the awareness of possible discrepancies between changes in objective performances and changes in OCD ratings.

Activities of Daily Living↗

Sniff nasal inspiratory pressure. Reference values in Caucasian children.

Like in adults, normal values of maximal inspiratory pressure (PImax) and maximal expiratory pressure (PEmax) span a large range in children, making interpretation of low values difficult. Recently, sniff nasal inspiratory pressure (Pnsn) was developed as a new noninvasive test of inspiratory muscle strength. In healthy adults, Pnsn is most often higher than PImax. The aim of this study was to establish reference values of Pnsn in children and to compare them with PImax. A group of 180 unselected healthy children age 6 to 17 yr was studied in a school setting. All had a forced vital capacity (FVC) > 80% of predicted and a ratio of forced expiratory volume in one second/forced vital capacity (FEV1/ FVC) > 85% of predicted. All maneuvers were performed in the sitting position. The Pnsn was measured using a catheter occluding one nostril during maximal sniffs performed through the contralateral nostril from FRC. The PImax was measured from FRC and residual volume, and PEmax from FRC and total lung capacity. All children were able to perform the Pnsn maneuver easily. Pnsn was 104 +/- 26 cm H2O in boys and 93 +/- 23 cm H2O in girls (p < 0.005). These values were similar to those previously measured in healthy adults. Pnsn correlated with age, weight, and height in boys, but not in girls. In both sexes, Pnsn was higher than PImax measured at the same lung volume (FRC) (p < 0. 0001). Pnsn was >= PImaxFRC in 73 of 93 boys and 79 of 87 girls. We conclude that Pnsn can be easily used to assess inspiratory muscle strength in children age 6 yr or more, providing values higher than PImax. Normal values are independent of age in girls, and can be predicted from age by a first-degree equation in boys. Being easy and noninvasive, Pnsn may prove useful to assess inspiratory muscle strength in children with neuromuscular disorders.

Adolescent↗

[Acute respiratory failure due to neuromuscular disorders].

Numerous acute and chronic neuromuscular disorders may induce an acute ventilatory failure. The latter is sometimes triggered by a complication like a bronchial aspiration, a pneumonia, or an atelectasis. The acute ventilatory failure often develops insidiously and may be missed until the terminal event. Four different clinical presentations are depicted in this review: slowly progressive (Duchenne muscular dystrophy), rapidly progressive (Guillain-Barré syndrome), chronic with exacerbations (myasthenia gravis), and a form consecutive to critical care (critical care polyneuropathy and myopathy). For each type of ventilatory failure, the review discusses the preventive surveillance, the treatment of acute respiratory failure, and the long-term management.

Acute Disease↗

Sniff nasal pressure: a sensitive respiratory test to assess progression of amyotrophic lateral sclerosis.

Impairment of pulmonary function is a major prognostic indicator in amyotrophic lateral sclerosis (ALS). Forced vital capacity (FVC) and maximal voluntary ventilation (MVV) decline linearly and are commonly used to assess disease progression. The aim of this study was to evaluate the usefulness of testing respiratory muscle strength in ALS with a novel test, sniff nasal pressure (Pn(sn)), in parallel with more classic tests such as maximal inspiratory pressure (PI(max)) and maximal expiratory pressure (PE(max)). Sixteen patients with ALS were examined monthly over a period of 18 +/- 10 months. At the time of inclusion in the study, values were normal for FVC (107% of predicted value) and MVV (87% of predicted value) but abnormally low for Pn(sn) (67% of predicted value), PI(max) (69% of predicted value), and PE(max) (54% of predicted value). Late in the course of ALS, all patients could perform Pn(sn) whereas 6 could not perform PI(max) and 7 could not perform PE(max). The rate of deterioration was most often linear and similar for FVC (-4.1% of predicted value per month), MVV (-4.3% of predicted value per month), and Pn(sn) (-4.2% of predicted value per month). We conclude that Pn(sn) was the single respiratory test combining linear decline, sensitivity in mild disease, and feasibility in advanced disease. Being easy to perform and inexpensive, Pn(sn) appears well suited to assess the decline of respiratory muscle strength in ALS.

Adult↗

[Evaluation of respiratory muscles].

Respiratory muscle weakness may be the sole cause of dyspnea or may aggravate dyspnea due to another respiratory disease, and is often difficult to recognise clinically. The assessment of respiratory muscles should follow a graded approach using tests of increasing complexity. Clinical examination should look for dyspnea, orthopnea, morning headache, daytime somnolence, fatigability, tachypnea, abdominal, or rib cage paradox, and amyotrophy. Imaging is useful in diagnosing diaphragmatic paralysis using chest radiograph, fluoroscopy or ultrasound. In cases of moderate to severe respiratory muscle weakness, lung volumes show reduced vital capacity and total lung capacity. Measuring the change in vital capacity from sitting to supine position is useful since it shows a 25-50% fall in cases of diaphragmatic paralysis. The specific and classical tests of respiratory muscle strength are maximum inspiratory and expiratory pressures (MIP and MEP) sustained during one second against near complete occlusion. Sniff nasal inspiratory pressure (SNIP) is a new and easier test of inspiratory muscle strength. Normal values obtained with these simple tests rule out clinically significant respiratory muscle weakness. In case of doubt, more complex and invasive tests can be used such as transdiaphragmatic pressure and magnetic stimulation of the phrenic nerves.

Diagnosis, Differential↗

Non-invasive home ventilation in patients over 75 years of age: tolerance, compliance, and impact on quality of life.

The adequacy of domiciliary non-invasive positive pressure ventilation (NIHV) for hypercapnic restrictive pulmonary disease in patients aged 75 years or above has been questioned, because of a lower life expectancy, a higher risk of neuropsychological impairment and a lower potential for adapting to NIHV. This study aims to illustrate that the use of NIHV is possible and efficient in this age group. In our referral area, all patients under NIHV have been included in a database since 1994; at the end of 1996, all patients in whom NIHV had been initiated at age 75 years or above were studied. We performed a cross-sectional study of six patients (two men, four women, age: 79 +/- 3 years at time of study) who had been under NIHV for 31 +/- 17 months. Patients underwent pulmonary function testing, assessment of respiratory muscle strength, physical disability and neuropsychological performance, tolerance and compliance to NIHV, and health-related quality of life (SF-36, St. George Respiratory Questionnaire: SGRQ). Hospitalization rates were recorded for the year prior and the 2 yr following initiation of NIHV. By the time of the study, all patients showed improved arterial blood gases when compared to values before NIHV (PaCO2: 46 +/- 9 vs 66 +/- 10 mmHg, P = 0.04). Patients adapted well to NIHV, with minor side-effects and an average daily use of ventilator of 10.5 +/- 2 h. None of the patients showed signs of emotional disturbance. SF-36 scores for mental health, subjective well-being and vitality, or social functioning, did not differ from that of age-matched controls. SGRQ scores were similar to those published for younger patients under NIHV. Use of health care facilities was similar to that of younger patients under NIHV; hospitalization rates decreased significantly after initiating NIHV (40 +/- 31 days for year before NIHV, vs 13 +/- 14 days and 0.8 +/- 0.4 days for the 2 yr following NIHV, P = 0.02). Age above 75 years should not be considered per se as a contraindication to NIHV in patients with well-accepted indications for this treatment. Our results suggest that in this age group, the cost/benefit ratio of NIHV may be favourable.

Age Factors↗

Reproducibility of twitch mouth pressure, sniff nasal inspiratory pressure, and maximal inspiratory pressure.

Twitch mouth pressure (Pmo,tw) during magnetic phrenic nerve stimulation and sniff nasal inspiratory pressure (SNIP) were recently proposed as alternative noninvasive methods for assessing inspiratory muscle strength. This study aimed to compare their reproducibility with maximal inspiratory pressure (MIP) in normal subjects. Ten healthy subjects were studied at functional residual capacity in semirecumbent position. Cervical magnetic phrenic nerve stimulation was performed during gentle expiration against an occlusion incorporating a small leak. Constancy of stimulation was controlled by recording diaphragmatic electromyogram. Within and between-session reproducibility of pressure were studied for Pmo,tw, SNIP, and MIP. The subjects were studied during a session of 10 manoeuvres repeated after 1 day and 1 month. The mean values were 16 cmH2O for Pmo,tw, 118 cmH2O for SNIP, and 115 cmH2O for MIP. For the three tests, the within subject variation was small in relation to between-subject variation, with the intraclass correlation coefficient ranging 0.79-0.90 for Pmo,tw, 0.85-0.92 for SNIP, and 0.88-0.92 for MIP. At 1 day interval, the coefficient of repeatability (2 SD of differences) was 3.6 cmH2O for Pmo,tw, 32 cmH2O for SNIP and 28 cmH2O for MIP. At 1 month interval, the coefficient of repeatability was 5.8 cmH2O for Pmo,tw, 23 cmH2O for SNIP and 21 cmH2O for MIP. We conclude that the within session reproducibility of the new tests twitch mouth pressure and sniff nasal inspiratory pressure is sufficient to be clinically useful. For sniff nasal inspiratory pressure, the between session reproducibility established after 1 day was maintained after 1 month. For twitch mouth pressure, the between session reproducibility declined slightly after 1 month. These characteristics should be considered when using these methods to follow an individual patient over time.

Adult↗

New bioelectrical impedance formula for patients with respiratory insufficiency: comparison to dual-energy X-ray absorptiometry.

Malnutrition in patients with severe respiratory insufficiency can lead to severe complications, justifying the use of objective nutritional assessment techniques, such as bioelectrical impedance analysis (BIA), which is an easy, noninvasive method of measuring body composition. The purpose of this study was to develop, and validate against dual-energy X-ray absorptiometry (DXA), a BIA formula to predict fat-free mass (FFM) specific for patients with chronic severe respiratory insufficiency. Seventy-five ambulatory patients (15 females and 60 males) with severe chronic respiratory insufficiency (obstructive and restrictive) aged 63.6+/-19.2 yrs (mean+/-SD), in a stable pulmonary and cardiac condition for > or = 2 months, were measured simultaneously with BIA and DXA. Patients younger than 45 yrs of age and with a body mass index > or = 32 kg x m(-2) were excluded. The best-fitting multiple regression equation to predict FFM = -6.06 +/- (height x 0.283) +/- (weight x 0.207) - (resistance x 0.024) +/- (sex (males=1, females=0) x 4.036), gave a correlation coefficient of r=0.952, slope+/-SEM 0.902+/-0.034, standard error of the estimate 1.670, and p<0.0001. The mean difference for FFM was 0.2+/-2.3 kg (mean+/-SD) and percentage fat mass was -0.7+/-3.8%. These results suggest that the bioelectrical impedance analysis formula specific to patients with severe respiratory insufficiency give a better correlation and smaller mean differences than 12 different bioelectrical impedance analysis formulae described in the medical literature. A prediction equation, validated against dual-energy X-ray absorptiometry and based on subjects with similar clinical characteristics, is more applicable to the patients with respiratory insufficiency than a formula developed for healthy subjects.

Absorptiometry, Photon↗