Физиотерапия и кислородотерапия пациентов с дыхательными расстройствами и нарушением мукоцилиарного клиренса



Литература


1. Авдеев С.Н. Дыхательная кислородная терапия при хронической недостаточности. С.Н. Авдеев. М.: ФГУ НИИ Пульмонологии Росздрава, 2011.


2. Авдеев С.Н. Дыхательная недостаточность: определение, классификация, подходы к диагностике и тера- пии. Респираторная медицина под ред. А. Г. Чучалина. М.: ГЭОТАР-Медиа. 2007; 2: 658–668.


3. Белов А.М. Интрапульмональная перкуссионная вентиляция. Доктор. Ру. 2014; 9–10: 7–14.


4. Малявин А.Г. Респираторная медицинская реабилитация. Практическое руководство для врачей. М.: Практическая медицина. 2006 г. 416 с.


5. Малявин А.Г., Епифанов В.А., Глазкова И.И. Реабилитация при заболеваниях органов дыхания. М.: ГЭОТАР-Медиа. 2010. 352 с.


6. Bach J.R. Mechanical insufflation-exsufflation comparison of peak expiratory flow with manually assisted and unassisted coughing techniques. Chest. 1993: 104: 1553–62.


7. Bott J. et al. Guidelines for the physiotherapy management of the adult, medical, spontaneously breathing patient. Thorax. 2009; 64 (Suppl. 1): i1– i51.


8. Harbrecht B.G., Delgado E., Tuttle R.P. Improved outcomes with routine respiratory therapist evaluation of non- intensive-care-unit surgery patients. Respir Care 2009; 54(7): 861–67.


9. Celli B.R., Rodriguez K.S., Snider G.L. A controlled trial of intermittent positive pressure breathing, incentive spirometry, and deep breathing exercises in preventing pulmonary complication after abdominal surgery. Am Rev Respir Dis. 1984; 130: 12–15.


10. Cho Y.J. et al. A randomised controlled trial comparing incentive spirometry with the Acapella®3 device for physiotherapy after thoracoscopic lung resection surgery. Anaesthesia 2014; 69(8): 891–98.


11. Craven J.L., Evans G.A., Davenport P.J., Williams R.H.P. The evaluation of incentive spirometry in the management of postoperative pulmonary complications. Br J Surg 1974; 61: 793–97.


12. Dellamonica J., Louis B., Vargas F., Brochard L. Bench testing of intrapulmonary percussive ventilation added to a conventional ventilator: pressures and volumes generated, Intensive Care Med, 2007(abstract – ESICM 2007 Berlin).


13. Fagevik Olsen M., Westerdahl E. Positive expiratory pressure in patients with chronic obstructive pulmonary disease: a systematic review. Respiration. 2009; 77(1): 110–18.


14. Gosselink R. et al. (2008). Physiotherapy for adult patients with critical illness: recommendations of the European Respiratory Society and European Society of Intensive Care Medicine Task Force on Physiotherapy for Critically Ill Patients. Intensive Care Med; 34: 1188–99.


15. Wunderer H. The cleaning system of the airways. Sonderdruck aus Med Monatsschr Pharm, 2009; 32: 42–47.


16. Hardinge M., Annandale J., Bourne S., Cooper B., Evans A., Freeman D., Green A., Hippolyte S., Knowles V., MacNee W., McDonnell L., Pye K., Suntharalingam J., Vora V., Wilkinson T.; British Thoracic Society Home Oxygen Guideline Development Group; British Thoracic Society Standards of Care Committee. British Thoracic Society guidelines for home oxygen use in adults. Thorax. 2015 Jun; 70(Suppl. 1): i1–43.


17. Holland A.E., Wadell K., Spruit M. How to adapt pulmonary rehabilitation to chronic respiratory disease other than COPD. European Respiratory Review. 2013; 22: 577–86.


18. James B.F. Forced expiratory technique, directed cough, and autogenic drainage. Respir Care, 2007; 52(9): 1210–23.


19. Hull J., Aniapravan R., Chan E. et al. British Thoracic Society guideline for respiratory management of childrenwith neuromuscular weakness. Thorax lune. 2012; 67: i1–i40.


20. Langer D. et al. A clinical practice guideline for physiotherapists treating patients with chronic obstructive pulmonary disease based on a systematic review of available evidence. Clin Rehabil. 2009; 23:445–62.


21. Marini J.J. Postoperative atelectasis: pathophysiology, clinical importance and principles of management. Respir Care. 1984; 29: 516–28.


22. Mestriner R.G. et al. Optimum design parameters for a therapist-constructed positive-expiratory-pressure therapy bottle device. Respir Care. 2009; 54(4): 504–08.


23. Morrison L., Agnew J. Oscillating devices for airway clearance in people with cystic fibrosis. Cochrane Database Syst Rev. 2014; 7: CD006842.


24. Murray J.F. The normal lung: the basis for diagnosis and treatment of pulmonary disease. Philadelphia: W.B. Saunders, 1986: 23–82.


25. Murray M.P., Pentland J.L., Hill A.T. A randomised crossover trial of chest physiotherapy in non-cystic fibrosis bronchiectasis. Eur Respir J. 2009; 34(5): 1086–92.


26. Nava S, Barbarito N, Piaggi G, et al., Physiological response to intrapulmonary percussive ventilation in stable COPD patients, Respir Med, 2006; 100:1526–33.


27. Nici L. et al. American Thoracic Society/European Respiratory Society Statement on Pulmonary Rehabilitation. Am J Respir Crit Care Med. 2006; 173: 1390–1413.


28. O’Donoghue F.J., Catcheside P.G., Jordan A.S. et al. Effect of CPAP on intrinsic PEEP, inspiratory effort, and lung volume in severe stable COPD. Thorax. 2002; 57: 533–39.


29. Osadnik C.R., McDonald C.F., Miller B.R., Hill C.J., Tarrant B., Steward R., Chao C., Stodden N., Oliveira C.C., Gagliardi N., & Holland A.E. The effect of positive expiratory pressure (PEP) therapy on symptoms, quality of life and incidence of re-exacerbation in patients with acute exacerbations of chronic obstructive pulmonary disease– a multicentre, randomised controlled trial. Thorax. 2014; 69(2): 137–43.


30. Paul W.L., Downes J.B. Postoperative atelectasis. Arch Surg. 1981; 116: 861–63.


31. Petz T.J. Physiologic effects of IPPB, blow bottles and incentive spirometry. Curr Rev Respir Ther. 1979; 1: 107–11.


32. Rau J.L., Thomas L., Haynes R.L. The effect of method of administering incentive spirometry on postoperative pulmonary complications in coronary artery bypass patients. Respir Care. 1988; 33: 771–78.


33. Restrepo R.D., Wettstein R., Wittnebel L., Tracy M. AARC clinical practice guideline: incentive spirometry: 2011. Respir Care. 2011 Oct; 56 (10): 1600–04.


34. Ritacca F.V., Stewart T.E. Clinical review: high-frequency oscillatory ventilation in adults: a review of the literature and practical applications. Crit Care. 2003; 7: 385–90.


35. Scuderi J., Olsen G.N. Respiratory therapy in the management of postoperative complications. Respir Care. 1989; 34: 281–91.


36. Stock M.C., Downs J.B., Gauer P.K., Alster J.M., Imrey P.B. Prevention of postoperative pulmonary complications with CPAP, incentive spirometry, and conservative therapy. Chest 1985; 87: 151–57.


37. Tang C.Y., Taylor N.F., Blackstock F.C. Chest physiotherapy for patients admitted to hospital with an acute exacerbation of chronic obstructive pulmonary disease (COPD): a systematic review. Physiotherapy 2010; 96 (1): 1–13.


38. Myers T.R. Positive expiratory pressure and oscillatory positive expiratory pressure therapies. Respir Care. 2007; 52(10): 1308–27.


39. Urell C. et al. Deep breathing exercises with positive expiratory pressure at a higher rate improve oxygenation in the early period after cardiac surgery-a randomised controlled trial. Eur J Cardiothorac Surg. 2011; 40(1): 162–67.


40. Vargas F., Bui H.N., Boyer A. et al., Expiratory limitation of flow in COPD patients: Interest of intrapulmonary percussive ventilation. Intensive Care Med. 2005; 31: S194 (abstract).


41. Chailleux E., Binet F., Sadoul P. Prognostic factors in survival of patients with obstructive respiratory insufficiency treated by long-term oxygen therapy. Data from the ANTADIR registry. Rev Mal Respir. 1992; 9(6): 603–11.


42. Melloni B., Mounier L., Laaban J.P., Chambellan A., Foret D., Muir J.F. Home-Based Care Evolution in Chronic Respiratory Failure between 2001 and 2015 (Antadir Federation Observatory). Respiration. 2018; 96(5): 446–54. doi: 10.1159/000490549.


Бионика Медиа