RATIONALE AND OBJECTIVES: Non-invasive quantification of the severity of pharyngeal airflow obstruction would enable recognition of obstructive versus central manifestation of sleep apnoea, and identification of symptomatic individuals with severe airflow obstruction despite a low apnoea-hypopnoea index (AHI). Here we provide a novel method that uses simple airflow-versus-time ("shape") features from individual breaths on an overnight sleep study to automatically and non-invasively quantify the severity of airflow obstruction without oesophageal catheterisation. METHODS: 41 individuals with suspected/diagnosed obstructive sleep apnoea (AHI range 0-91 events·h-1) underwent overnight polysomnography with gold-standard measures of airflow (oronasal pneumotach: "flow") and ventilatory drive (calibrated intraoesophageal diaphragm electromyogram: "drive"). Obstruction severity was defined as a continuous variable (flow:drive ratio). Multivariable regression used airflow shape features (inspiratory/expiratory timing, flatness, scooping, fluttering) to estimate flow:drive ratio in 136 264 breaths (performance based on leave-one-patient-out cross-validation). Analysis was repeated using simultaneous nasal pressure recordings in a subset (n=17). RESULTS: Gold-standard obstruction severity (flow:drive ratio) varied widely across individuals independently of AHI. A multivariable model (25 features) estimated obstruction severity breath-by-breath (R2=0.58 versus gold-standard, p<0.00001; mean absolute error 22%) and the median obstruction severity across individual patients (R2=0.69, p<0.00001; error 10%). Similar performance was achieved using nasal pressure. CONCLUSIONS: The severity of pharyngeal obstruction can be quantified non-invasively using readily available airflow shape information. Our work overcomes a major hurdle necessary for the recognition and phenotyping of patients with obstructive sleep disordered breathing.
RATIONALE AND OBJECTIVES: Non-invasive quantification of the severity of pharyngeal airflow obstruction would enable recognition of obstructive versus central manifestation of sleep apnoea, and identification of symptomatic individuals with severe airflow obstruction despite a low apnoea-hypopnoea index (AHI). Here we provide a novel method that uses simple airflow-versus-time ("shape") features from individual breaths on an overnight sleep study to automatically and non-invasively quantify the severity of airflow obstruction without oesophageal catheterisation. METHODS: 41 individuals with suspected/diagnosed obstructive sleep apnoea (AHI range 0-91 events·h-1) underwent overnight polysomnography with gold-standard measures of airflow (oronasal pneumotach: "flow") and ventilatory drive (calibrated intraoesophageal diaphragm electromyogram: "drive"). Obstruction severity was defined as a continuous variable (flow:drive ratio). Multivariable regression used airflow shape features (inspiratory/expiratory timing, flatness, scooping, fluttering) to estimate flow:drive ratio in 136 264 breaths (performance based on leave-one-patient-out cross-validation). Analysis was repeated using simultaneous nasal pressure recordings in a subset (n=17). RESULTS: Gold-standard obstruction severity (flow:drive ratio) varied widely across individuals independently of AHI. A multivariable model (25 features) estimated obstruction severity breath-by-breath (R2=0.58 versus gold-standard, p<0.00001; mean absolute error 22%) and the median obstruction severity across individual patients (R2=0.69, p<0.00001; error 10%). Similar performance was achieved using nasal pressure. CONCLUSIONS: The severity of pharyngeal obstruction can be quantified non-invasively using readily available airflow shape information. Our work overcomes a major hurdle necessary for the recognition and phenotyping of patients with obstructive sleep disordered breathing.
Authors: T Douglas Bradley; Alexander G Logan; R John Kimoff; Frédéric Sériès; Debra Morrison; Kathleen Ferguson; Israel Belenkie; Michael Pfeifer; John Fleetham; Patrick Hanly; Mark Smilovitch; George Tomlinson; John S Floras Journal: N Engl J Med Date: 2005-11-10 Impact factor: 91.245
Authors: H Teschler; M Berthon-Jones; A B Thompson; A Henkel; J Henry; N Konietzko Journal: Am J Respir Crit Care Med Date: 1996-09 Impact factor: 21.405
Authors: Scott A Sands; Bradley A Edwards; Philip I Terrill; Luigi Taranto-Montemurro; Ali Azarbarzin; Melania Marques; Lauren B Hess; David P White; Andrew Wellman Journal: Am J Respir Crit Care Med Date: 2018-05-01 Impact factor: 30.528
Authors: Raichel M Alex; Tamar Sofer; Ali Azarbarzin; Daniel Vena; Laura K Gell; Andrew Wellman; David P White; Susan Redline; Scott A Sands Journal: Sleep Date: 2022-09-08 Impact factor: 6.313
Authors: Brandon Nokes; Christopher N Schmickl; Rebbecca Brena; Nana Naa-Oye Bosompra; Dillon Gilbertson; Scott A Sands; Rakesh Bhattacharjee; Dwayne L Mann; Robert L Owens; Atul Malhotra; Jeremy E Orr Journal: Physiol Rep Date: 2022-06
Authors: Daniel Vena; Luigi Taranto-Montemurro; Ali Azarbarzin; Sara Op de Beeck; Melania Marques; Olivier M Vanderveken; Bradley A Edwards; Laura Gell; Nicole Calianese; Lauren B Hess; Reza Radmand; Garun S Hamilton; Simon A Joosten; Johan Verbraecken; Marc Braem; David P White; Susan Redline; Scott A Sands; Andrew Wellman Journal: Sleep Date: 2022-06-13 Impact factor: 6.313
Authors: Daniel Vena; Ali Azarbarzin; Melania Marques; Sara Op de Beeck; Olivier M Vanderveken; Bradley A Edwards; Nicole Calianese; Lauren B Hess; Reza Radmand; Garun S Hamilton; Simon A Joosten; Luigi Taranto-Montemurro; Sang-Wook Kim; Johan Verbraecken; Marc Braem; David P White; Scott A Sands; Andrew Wellman Journal: Sleep Date: 2020-07-13 Impact factor: 5.849
Authors: Ludovico Messineo; Danny J Eckert; Luigi Taranto-Montemurro; Daniel Vena; Ali Azarbarzin; Lauren B Hess; Nicole Calianese; David P White; Andrew Wellman; Laura Gell; Scott A Sands Journal: Am J Respir Crit Care Med Date: 2022-01-15 Impact factor: 21.405
Authors: Dwayne L Mann; Thomas Georgeson; Shane A Landry; Bradley A Edwards; Ali Azarbarzin; Daniel Vena; Lauren B Hess; Andrew Wellman; Susan Redline; Scott A Sands; Philip I Terrill Journal: Sleep Date: 2021-12-10 Impact factor: 6.313
Authors: Eysteinn Finnsson; Guðrún H Ólafsdóttir; Dagmar L Loftsdóttir; Sigurður Æ Jónsson; Halla Helgadóttir; Jón S Ágústsson; Scott A Sands; Andrew Wellman Journal: Sleep Date: 2021-01-21 Impact factor: 6.313