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Published in: Sleep and Breathing 1/2012

01-03-2012 | Original Article

Prevalence and treatment of central sleep apnoea emerging after initiation of continuous positive airway pressure in patients with obstructive sleep apnoea without evidence of heart failure

Authors: Michael Westhoff, Michael Arzt, Patric Litterst

Published in: Sleep and Breathing | Issue 1/2012

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Abstract

Background

This study aimed to assess the prevalence of complex sleep apnoea (CompSA), defined as central sleep apnoea (CSA) emerging after the initiation of continuous positive airway pressure (CPAP) therapy for obstructive sleep apnoea (OSA), in patients with normal brain natriuretic peptide (BNP) levels, along with assessing the prevalence of CSA persisting in such patients after the onset of CPAP therapy. We hypothesised that the prevalence of CompSA and persistent CSA after CPAP initiation would be low in patients with OSA and normal BNP levels.

Material and methods

Between April 2004 and July 2007, CPAP was initiated for all patients with OSA for two nights using a standardised protocol. The prevalence of CompSA syndrome (CompSAS) and persisting CSA [central apnoea index (CAI) >5/h and apnoea–hypopnoea index (AHI) >15/h with >50% central events during CPAP therapy] was prospectively assessed in patients with normal BNP levels. Patients with CompSAS or persisting CSA upon CPAP treatment received adaptive servoventilation (ASV).

Results

Of 1,776 patients with OSA receiving CPAP, 28 patients (1.57%) had CSA at the time of CPAP therapy and normal BNP levels. Additionally, 10 patients had CompSAS (0.56%) and 18 patients (1.01%) had persisting CSA. In patients with CompSA or persisting CSA, the AHI was significantly lower with CPAP therapy than at the time of diagnosis (34 ± 15/h vs. 47 ± 20/h, p = 0.005). The CAI increased from 10 ± 10/h to 18/h ± 13/h (p = 0.009) upon initiation of CPAP therapy. ASV reduced the AHI to 6 ± 12/h (p < 0.001) during the first night of use.

Conclusion

The prevalence of CompSA or persisting CSA in patients with OSA and normal BNP levels who are receiving CPAP therapy is low (1.57%). ASV is an effective treatment for these patients.
Literature
1.
go back to reference Thomas RJ, Terzano MG, Parrino L, Weiss JW (2004) Obstructive sleep-disordered breathing with a dominant cyclic alternating pattern—a recognizable polysomnographic variant with practical clinical implications. Sleep 27:229–234PubMed Thomas RJ, Terzano MG, Parrino L, Weiss JW (2004) Obstructive sleep-disordered breathing with a dominant cyclic alternating pattern—a recognizable polysomnographic variant with practical clinical implications. Sleep 27:229–234PubMed
2.
go back to reference Morgenthaler TI, Kagramanov V, Hanak V, Decker PA (2006) Complex sleep apnea syndrome: is it a unique clinical syndrome? Sleep 29:1203–1209PubMed Morgenthaler TI, Kagramanov V, Hanak V, Decker PA (2006) Complex sleep apnea syndrome: is it a unique clinical syndrome? Sleep 29:1203–1209PubMed
3.
go back to reference Xie A, Rutherford R, Rankin F, Wong B, Bradley TD (1995) Hypocapnia and increased ventilator responsiveness in patients with idiopathic central sleep apnea. Am J Respir Crit Care Med 152:1950–1955PubMed Xie A, Rutherford R, Rankin F, Wong B, Bradley TD (1995) Hypocapnia and increased ventilator responsiveness in patients with idiopathic central sleep apnea. Am J Respir Crit Care Med 152:1950–1955PubMed
4.
go back to reference Solin P (2000) Peripheral and central ventilatory responses in central sleep apnea with and without congestive heart failure. Am J Respir Crit Care Med 162:2194–2200PubMed Solin P (2000) Peripheral and central ventilatory responses in central sleep apnea with and without congestive heart failure. Am J Respir Crit Care Med 162:2194–2200PubMed
5.
go back to reference Philippe C, Stoica-Herman M, Drouot X, Raffestin B, Escourrou P, Hittinger L, Michel PL, Rouault S, d’Ortho MP (2006) Compliance with and efficacy of adaptive servo-ventilation (ASV) versus continuous positive airway pressure (CPAP) in the treatment of Cheyne–Stokes respiration in heart failure over a six month period. Heart 92:337–342PubMedCrossRef Philippe C, Stoica-Herman M, Drouot X, Raffestin B, Escourrou P, Hittinger L, Michel PL, Rouault S, d’Ortho MP (2006) Compliance with and efficacy of adaptive servo-ventilation (ASV) versus continuous positive airway pressure (CPAP) in the treatment of Cheyne–Stokes respiration in heart failure over a six month period. Heart 92:337–342PubMedCrossRef
6.
go back to reference Teschler H, Döhring J, Wang YM, Berthon-Jones M (2001) Adaptive pressure support servo-ventilation. Am J Respir Crit Care Med 164:614–619PubMed Teschler H, Döhring J, Wang YM, Berthon-Jones M (2001) Adaptive pressure support servo-ventilation. Am J Respir Crit Care Med 164:614–619PubMed
7.
go back to reference Pepperell JC, Maskell NA, Jones DR, Langford-Wiley BA, Crosthwaite N, Stradling JR, Davies RJ (2003) A randomized controlled trial of adaptive ventilation for Cheyne–Stokes breathing in heart failure. Am J Respir Crit Care Med 168:1109–1114PubMedCrossRef Pepperell JC, Maskell NA, Jones DR, Langford-Wiley BA, Crosthwaite N, Stradling JR, Davies RJ (2003) A randomized controlled trial of adaptive ventilation for Cheyne–Stokes breathing in heart failure. Am J Respir Crit Care Med 168:1109–1114PubMedCrossRef
8.
go back to reference Töpfer V, El-Sebai M, Wessendorf TE, Moaridis I, Teschler H (2004) Adaptive servoventilation bei chronischer Herzinsuffizienz: Wirkung auf Cheyne-Stokes-Atmung und Lebensqualität. Pneumologie 58:28–32PubMedCrossRef Töpfer V, El-Sebai M, Wessendorf TE, Moaridis I, Teschler H (2004) Adaptive servoventilation bei chronischer Herzinsuffizienz: Wirkung auf Cheyne-Stokes-Atmung und Lebensqualität. Pneumologie 58:28–32PubMedCrossRef
9.
go back to reference Westhoff M, Arzt M, Litterst P (2010) Influence of adaptive servoventilation on B-type natriuretic peptide in patients with Cheyne–Stokes respiration and mild to moderate systolic and diastolic heart failure. Pneumologie 64:467–473PubMedCrossRef Westhoff M, Arzt M, Litterst P (2010) Influence of adaptive servoventilation on B-type natriuretic peptide in patients with Cheyne–Stokes respiration and mild to moderate systolic and diastolic heart failure. Pneumologie 64:467–473PubMedCrossRef
10.
go back to reference Rechtschaffen A, Kales A (1968) A manual of standardized terminology, techniques and scoring system for sleep stages of human subjects. Bethesda, Maryland, U.S. Department of Health, Education, and Welfare Public Health service, National Institutes of Health Rechtschaffen A, Kales A (1968) A manual of standardized terminology, techniques and scoring system for sleep stages of human subjects. Bethesda, Maryland, U.S. Department of Health, Education, and Welfare Public Health service, National Institutes of Health
11.
go back to reference AASM (1999) Sleep-related breathing disorders in adults: recommendations for syndrome definition and measurement techniques in clinical research. The report of an American Academy of Sleep Medicine Task Force. Sleep 22:667–689 AASM (1999) Sleep-related breathing disorders in adults: recommendations for syndrome definition and measurement techniques in clinical research. The report of an American Academy of Sleep Medicine Task Force. Sleep 22:667–689
12.
go back to reference McDonagh TA, Robb SD, Murdoch DR, Morton JJ, Ford I, Morrison CE, Tunstall-Pedoe H, McMurray JJ, Dargie HJ (1998) Biochemical detection of left-ventricular systolic dysfunction. Lancet 351:9–13PubMedCrossRef McDonagh TA, Robb SD, Murdoch DR, Morton JJ, Ford I, Morrison CE, Tunstall-Pedoe H, McMurray JJ, Dargie HJ (1998) Biochemical detection of left-ventricular systolic dysfunction. Lancet 351:9–13PubMedCrossRef
13.
go back to reference Lubien E, DeMaria A, Krishnaswamy P, Clopton P, Koon J, Kazanegra R, Gardetto N, Wanner E, Maisel AS (2002) Utility of B-natriuretic peptide in detecting diastolic dysfunction: comparison with Doppler velocity recording. Circulation 105:595–601PubMedCrossRef Lubien E, DeMaria A, Krishnaswamy P, Clopton P, Koon J, Kazanegra R, Gardetto N, Wanner E, Maisel AS (2002) Utility of B-natriuretic peptide in detecting diastolic dysfunction: comparison with Doppler velocity recording. Circulation 105:595–601PubMedCrossRef
14.
go back to reference Steg PG, Joubin L, McCord J, Abraham WT, Hollander JE, Omland T, Mentré F, McCullough PA, Maisel AS (2005) B-type natriuretic peptide and echocardiographic determination of ejection fraction in the diagnosis of congestive heart failure in patients with acute dyspnea. Chest 128:21–29PubMedCrossRef Steg PG, Joubin L, McCord J, Abraham WT, Hollander JE, Omland T, Mentré F, McCullough PA, Maisel AS (2005) B-type natriuretic peptide and echocardiographic determination of ejection fraction in the diagnosis of congestive heart failure in patients with acute dyspnea. Chest 128:21–29PubMedCrossRef
15.
go back to reference Christ M, Sharkova Y, Fenske H, Rostig S, Herzum I, Becker HF, Mueller C, Grimm W (2007) Brain natriuretic peptide for prediction of Cheyne–Stokes respiration in heart failure patients. Int J Cardiol 116:62–69PubMedCrossRef Christ M, Sharkova Y, Fenske H, Rostig S, Herzum I, Becker HF, Mueller C, Grimm W (2007) Brain natriuretic peptide for prediction of Cheyne–Stokes respiration in heart failure patients. Int J Cardiol 116:62–69PubMedCrossRef
16.
go back to reference Banno K, Okamura K, Kryger MH (2006) Adaptive servo-ventilation in patients with idiopathic Cheyne–Stokes breathing. J Clin Sleep Med 2:181–186PubMed Banno K, Okamura K, Kryger MH (2006) Adaptive servo-ventilation in patients with idiopathic Cheyne–Stokes breathing. J Clin Sleep Med 2:181–186PubMed
17.
go back to reference Lehman S, Antic NA, Thompson C, Catcheside PG, Mercer J, McEvoy RD (2007) Central sleep apnea on commencement of continuous positive airway pressure in patients with a primary diagnosis of obstructive sleep apnea-hypopnea. J Clin Sleep Med 3:462–466PubMed Lehman S, Antic NA, Thompson C, Catcheside PG, Mercer J, McEvoy RD (2007) Central sleep apnea on commencement of continuous positive airway pressure in patients with a primary diagnosis of obstructive sleep apnea-hypopnea. J Clin Sleep Med 3:462–466PubMed
18.
go back to reference Kuzniar TJ, Pusalavidyasagar S, Gay PC, Morgenthaler TI (2008) Natural course of complex sleep apnea—a retrospective study. Sleep Breath 12:135–139PubMedCrossRef Kuzniar TJ, Pusalavidyasagar S, Gay PC, Morgenthaler TI (2008) Natural course of complex sleep apnea—a retrospective study. Sleep Breath 12:135–139PubMedCrossRef
19.
go back to reference Leung RS, Huber MA, Rogge T, Maimon N, Chiu KL, Bradley TD (2005) Association between atrial fibrillation and central sleep apnea. Sleep 28:1543–1546PubMed Leung RS, Huber MA, Rogge T, Maimon N, Chiu KL, Bradley TD (2005) Association between atrial fibrillation and central sleep apnea. Sleep 28:1543–1546PubMed
20.
go back to reference Mansfield DR, Solin P, Roebuck T, Bergin P, Kaye DM, Naughton MT (2003) The effect of successful heart transplant treatment of heart failure on central sleep apnea. Chest 124:1675–1681PubMedCrossRef Mansfield DR, Solin P, Roebuck T, Bergin P, Kaye DM, Naughton MT (2003) The effect of successful heart transplant treatment of heart failure on central sleep apnea. Chest 124:1675–1681PubMedCrossRef
21.
go back to reference Gilmartin GS, Daly RW, Thomax JR (2005) Recognition and management of complex sleep-disordered breathing. Curr Opin Pulm Med 11:485–493PubMedCrossRef Gilmartin GS, Daly RW, Thomax JR (2005) Recognition and management of complex sleep-disordered breathing. Curr Opin Pulm Med 11:485–493PubMedCrossRef
22.
23.
go back to reference Eckert DJ, Jordan AS, Merchia P, Malhotra A (2007) Central sleep apnea: pathophysiology and treatment. Chest 131:595–607PubMedCrossRef Eckert DJ, Jordan AS, Merchia P, Malhotra A (2007) Central sleep apnea: pathophysiology and treatment. Chest 131:595–607PubMedCrossRef
24.
go back to reference Sankri-Tarbichi AG, Rowley JA, Badr MS (2009) Expiratory pharyngeal narrowing during central hypocapnic hypopnea. Am J Respir Crit Care Med 179:313–319PubMedCrossRef Sankri-Tarbichi AG, Rowley JA, Badr MS (2009) Expiratory pharyngeal narrowing during central hypocapnic hypopnea. Am J Respir Crit Care Med 179:313–319PubMedCrossRef
25.
go back to reference Badr MS, Toiber F, Skatrud JB, Dempsey J (1995) Pharyngeal narrowing/occlusion during central sleep apnea. J Appl Physiol 78:1806–1815PubMed Badr MS, Toiber F, Skatrud JB, Dempsey J (1995) Pharyngeal narrowing/occlusion during central sleep apnea. J Appl Physiol 78:1806–1815PubMed
26.
go back to reference Luo YM, Tang J, Jolley C et al (2009) Distinguishing obstructive from central sleep apnea events. Diaphragm electromyogram and esophageal pressure compared. Chest 135:1133–1141PubMedCrossRef Luo YM, Tang J, Jolley C et al (2009) Distinguishing obstructive from central sleep apnea events. Diaphragm electromyogram and esophageal pressure compared. Chest 135:1133–1141PubMedCrossRef
27.
go back to reference Javaheri S, Smith J, Chung E (2009) The prevalence and natural history of complex sleep apnea. J Clin Sleep Med 5:205–211PubMed Javaheri S, Smith J, Chung E (2009) The prevalence and natural history of complex sleep apnea. J Clin Sleep Med 5:205–211PubMed
28.
go back to reference Dernaika T, Tawk M, Nazir S, Younis W, Kinasewitz GT (2007) The significance and outcome of continuous positive airway pressure-related central sleep apnea during split-night sleep studies. Chest 132:81–87PubMedCrossRef Dernaika T, Tawk M, Nazir S, Younis W, Kinasewitz GT (2007) The significance and outcome of continuous positive airway pressure-related central sleep apnea during split-night sleep studies. Chest 132:81–87PubMedCrossRef
29.
go back to reference Morgenthaler TI, Gay PC, Gordon N, Brown LK (2007) Adaptive servoventilation versus noninvasive positive pressure ventilation for central, mixed, and complex sleep apnea syndromes. Sleep 30:468–475PubMed Morgenthaler TI, Gay PC, Gordon N, Brown LK (2007) Adaptive servoventilation versus noninvasive positive pressure ventilation for central, mixed, and complex sleep apnea syndromes. Sleep 30:468–475PubMed
30.
go back to reference Pusalavidyasagar SS, Olson EJ, Gay PC, Morgenthaler TI (2006) Treatment of complex sleep apnea syndrome: a retrospective comparative review. Sleep Med 7:474–479PubMedCrossRef Pusalavidyasagar SS, Olson EJ, Gay PC, Morgenthaler TI (2006) Treatment of complex sleep apnea syndrome: a retrospective comparative review. Sleep Med 7:474–479PubMedCrossRef
31.
go back to reference Allam JS, Olson EJ, Gay PC, Morgenthaler TI (2007) Efficacy of adaptive servoventilation in treatment of complex and central sleep apnea syndromes. Chest 132:1839–1846PubMedCrossRef Allam JS, Olson EJ, Gay PC, Morgenthaler TI (2007) Efficacy of adaptive servoventilation in treatment of complex and central sleep apnea syndromes. Chest 132:1839–1846PubMedCrossRef
32.
go back to reference Randerath WJ, Galetke W, Rühle KH (2003) Auto-adjusting CPAP based on impedance versus bilevel pressure in difficult-to-treat sleep apnea syndrome: a prospective randomized crossover study. Med Sci Monit 9:CR353–CR358PubMed Randerath WJ, Galetke W, Rühle KH (2003) Auto-adjusting CPAP based on impedance versus bilevel pressure in difficult-to-treat sleep apnea syndrome: a prospective randomized crossover study. Med Sci Monit 9:CR353–CR358PubMed
33.
go back to reference Zirlik S, Schahin SP, Premm W, Hahn EG, Fuchs FS (2009) Lung volumes and mean apnea duration in obstructive sleep apnea. Respir Physiol Neurobiol 168:303–305PubMedCrossRef Zirlik S, Schahin SP, Premm W, Hahn EG, Fuchs FS (2009) Lung volumes and mean apnea duration in obstructive sleep apnea. Respir Physiol Neurobiol 168:303–305PubMedCrossRef
34.
go back to reference Bitter T, Westerheide N, Faber L, Hering D, Prinz C, Langer C, Horstkotte D, Oldenburg O (2010) Adaptive servoventilation in diastolic heart failure. Eur Respir J 36:385–392PubMedCrossRef Bitter T, Westerheide N, Faber L, Hering D, Prinz C, Langer C, Horstkotte D, Oldenburg O (2010) Adaptive servoventilation in diastolic heart failure. Eur Respir J 36:385–392PubMedCrossRef
35.
go back to reference Solin P, Jackson DM, Roebuck T, Naughton MT (2002) Cardiac diastolic function and hypercapnic ventilatory responses in central sleep apnoea. Eur Respir J 20:717–723PubMedCrossRef Solin P, Jackson DM, Roebuck T, Naughton MT (2002) Cardiac diastolic function and hypercapnic ventilatory responses in central sleep apnoea. Eur Respir J 20:717–723PubMedCrossRef
36.
go back to reference Hall MJ, Xie A, Rutherford R, Ando S, Floras JS, Bradley TD (1996) Cycle length of periodic breathing in patients with and without heart failure. Am J Respir Crit Care Med 154:376–381PubMed Hall MJ, Xie A, Rutherford R, Ando S, Floras JS, Bradley TD (1996) Cycle length of periodic breathing in patients with and without heart failure. Am J Respir Crit Care Med 154:376–381PubMed
37.
go back to reference Arzt M, Schulz M, Schroll S, Budweiser S, Bradley TD, Riegger GA, Pfeifer M (2009) Time course of continuous positive airway pressure effects on central sleep apnoea in patients with chronic heart failure. J Sleep Res 18:20–25PubMedCrossRef Arzt M, Schulz M, Schroll S, Budweiser S, Bradley TD, Riegger GA, Pfeifer M (2009) Time course of continuous positive airway pressure effects on central sleep apnoea in patients with chronic heart failure. J Sleep Res 18:20–25PubMedCrossRef
38.
go back to reference Johnson KG, Johnson DC (2005) Bilevel positive airway pressure worsens central apnoeas during sleep. Chest 128:2141–2150PubMedCrossRef Johnson KG, Johnson DC (2005) Bilevel positive airway pressure worsens central apnoeas during sleep. Chest 128:2141–2150PubMedCrossRef
Metadata
Title
Prevalence and treatment of central sleep apnoea emerging after initiation of continuous positive airway pressure in patients with obstructive sleep apnoea without evidence of heart failure
Authors
Michael Westhoff
Michael Arzt
Patric Litterst
Publication date
01-03-2012
Publisher
Springer-Verlag
Published in
Sleep and Breathing / Issue 1/2012
Print ISSN: 1520-9512
Electronic ISSN: 1522-1709
DOI
https://doi.org/10.1007/s11325-011-0486-0

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