Physiology and consequences of lung hyperinflation in COPD
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[1] S V Dawson,et al. Wave-speed limitation on expiratory flow-a unifying concept. , 1977, Journal of applied physiology: respiratory, environmental and exercise physiology.
[2] F. Maltais,et al. Improvements in symptom-limited exercise performance over 8 h with once-daily tiotropium in patients with COPD. , 2005, Chest.
[3] D. Leith,et al. Dynamic mechanisms determine functional residual capacity in mice, Mus musculus. , 1979, Journal of applied physiology: respiratory, environmental and exercise physiology.
[4] Sharp Jt. The respiratory muscles in emphysema. , 1983 .
[5] J E Cotes,et al. Lung volumes and forced ventilatory flows. Report Working Party Standardization of Lung Function Tests, European Community for Steel and Coal. Official Statement of the European Respiratory Society. , 1993, The European respiratory journal. Supplement.
[6] D. Leith,et al. Human lung volumes and the mechanisms that set them. , 1999, The European respiratory journal.
[7] D. O’Donnell,et al. Effects of hyperoxia on ventilatory limitation during exercise in advanced chronic obstructive pulmonary disease. , 2001, American journal of respiratory and critical care medicine.
[8] R. Howard,et al. Multiple system atrophy presenting as central sleep apnoea , 2004, European Respiratory Journal.
[9] D. O’Donnell,et al. Measurement of symptoms, lung hyperinflation, and endurance during exercise in chronic obstructive pulmonary disease. , 1998, American journal of respiratory and critical care medicine.
[10] D. O’Donnell,et al. Dynamic hyperinflation and exercise intolerance in chronic obstructive pulmonary disease. , 2001, American journal of respiratory and critical care medicine.
[11] J. Gea,et al. Subcellular adaptation of the human diaphragm in chronic obstructive pulmonary disease. , 1999, The European respiratory journal.
[12] N. Burki,et al. Correlation of pulmonary function with the chest roentgenogram in chronic airway obstruction. , 1980, The American review of respiratory disease.
[13] B. Celli,et al. Inspiratory-to-total lung capacity ratio predicts mortality in patients with chronic obstructive pulmonary disease. , 2005, American journal of respiratory and critical care medicine.
[14] Sharp Jt. The respiratory muscles in chronic obstructive pulmonary disease. , 1986 .
[15] S. Schiaffino,et al. Myosin heavy chain gene expression changes in the diaphragm of patients with chronic lung hyperinflation. , 1998, The American journal of physiology.
[16] N L Müller,et al. Computed tomographic imaging of the airways: relationship to structure and function , 2005, European Respiratory Journal.
[17] P. Cole,et al. Resistance to respiratory airflow of the extrapulmonary airways , 1993, The Laryngoscope.
[18] D. O’Donnell,et al. Mechanisms of Dyspnea in COPD , 2005 .
[19] D. O’Donnell,et al. Qualitative aspects of exertional breathlessness in chronic airflow limitation: pathophysiologic mechanisms. , 1997, American journal of respiratory and critical care medicine.
[20] N. Jones,et al. Pulmonary mechanics during exercise in subjects with chronic airflow obstruction. , 1980, Journal of applied physiology: respiratory, environmental and exercise physiology.
[21] D. Mahler,et al. Dyspnea: Mechanisms, Measurement and Management , 2005 .
[22] E. Trulock,et al. Right and left ventricular dysfunction in patients with severe pulmonary disease. , 1998, Chest.
[23] N. Zamel,et al. Simplified detection of dynamic hyperinflation. , 2004, Chest.
[24] A Pedotti,et al. CHRONIC OBSTRUCTIVE PULMONARY DISEASE Regional chest wall volumes during exercise in chronic obstructive pulmonary disease , 2004 .
[25] T. Similowski,et al. Effect of salbutamol on dynamic hyperinflation in chronic obstructive pulmonary disease patients. , 1998, The European respiratory journal.
[26] P. Śliwiński,et al. Diaphragm activation during exercise in chronic obstructive pulmonary disease. , 2001, American journal of respiratory and critical care medicine.
[27] M. Demedts. Mechanisms and consequences of hyperinflation. , 1990, The European respiratory journal.
[28] B. Celli,et al. Respiratory muscle and cardiopulmonary function during exercise in very severe COPD. , 1996, American journal of respiratory and critical care medicine.
[29] N. Pride,et al. Relation between abnormalities in the chest radiograph and changes in pulmonary function in chronic bronchitis and emphysema. , 1973, Thorax.
[30] A Aliverti,et al. Patterns of dynamic hyperinflation during exercise and recovery in patients with severe chronic obstructive pulmonary disease , 2005, Thorax.
[31] P. Laveneziana,et al. The Clinical Importance of Dynamic Lung Hyperinflation in COPD , 2006, COPD.
[32] A. Coates,et al. ‘ ‘ ATS / ERS TASK FORCE : STANDARDISATION OF LUNG FUNCTION TESTING , 2005 .
[33] J. Martin,et al. Inspiratory muscle activity during induced hyperinflation. , 1980, Respiration physiology.
[34] D. O’Donnell,et al. COPD exacerbations · 3: Pathophysiology , 2006, Thorax.
[35] D. Postma,et al. Chronic obstructive pulmonary disease. , 2002, Clinical evidence.
[36] J. Hankinson,et al. SERIES ''ATS/ERS TASK FORCE: STANDARDISATION OF LUNG FUNCTION TESTING'' Edited by V. Brusasco, R. Crapo and G. Viegi Number 5 in this Series Interpretative strategies for lung function tests , 2005 .
[37] George Simon. Principles of Chest X-ray Diagnosis , 1979 .
[38] J. Hankinson,et al. Interpretative strategies for lung function tests , 2005, European Respiratory Journal.
[39] P. Barnes,et al. Chronic obstructive pulmonary disease. , 2000, The New England journal of medicine.
[40] H. Ghezzo,et al. Role of inspiratory capacity on exercise tolerance in COPD patients with and without tidal expiratory flow limitation at rest. , 2000, The European respiratory journal.
[41] K. Bloch,et al. Monitoring of ventilation during exercise by a portable respiratory inductive plethysmograph. , 2005, Chest.
[42] D. O’Donnell,et al. Exercise hypercapnia in advanced chronic obstructive pulmonary disease: the role of lung hyperinflation. , 2002, American journal of respiratory and critical care medicine.
[43] L. Kaiser,et al. Cellular adaptations in the diaphragm in chronic obstructive pulmonary disease. , 1997, The New England journal of medicine.
[44] P. Paré,et al. Computed tomographic measurements of airway dimensions and emphysema in smokers. Correlation with lung function. , 2000, American journal of respiratory and critical care medicine.
[45] S. Aaron,et al. Physiological changes during symptom recovery from moderate exacerbations of COPD , 2005, European Respiratory Journal.
[46] S. Brown,et al. Hemodynamics of patients with severe chronic obstructive pulmonary disease during progressive upright exercise. , 2015, The American review of respiratory disease.
[47] R. Hyatt. Expiratory flow limitation. , 1983, Journal of applied physiology: respiratory, environmental and exercise physiology.
[48] P. Macklem,et al. Contractile properties of the human diaphragm during chronic hyperinflation. , 1991, The New England journal of medicine.
[49] J E Cotes,et al. Lung volumes and forced ventilatory flows , 1993, European Respiratory Journal.
[50] N. Pride. Ageing and changes in lung mechanics , 2005, European Respiratory Journal.
[51] Richard W Costello,et al. Lung mechanics and dyspnea during exacerbations of chronic obstructive pulmonary disease. , 2005, American journal of respiratory and critical care medicine.
[52] A. Koutsoukou,et al. CHAPTER 10 – Lung Mechanics in Disease , 2008 .
[53] Y. Cormier,et al. Mechanisms of hyperinflation in asthma. , 1990, The European respiratory journal.
[54] D. O’Donnell,et al. Sensory-mechanical relationships during high-intensity, constant-work-rate exercise in COPD. , 2006, Journal of applied physiology.
[55] B. Make,et al. Effects of tiotropium on lung hyperinflation, dyspnoea and exercise tolerance in COPD , 2004, European Respiratory Journal.