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Critical Care (London, England)|February 15, 2001
Forced oscillation assessment of respiratory mechanics in ventilated patientsD Navajas, R FarréMonaldi Archives for Chest Disease = Archivio Monaldi Per Le Malattie Del Torace|May 1, 2002
Forced oscillation technique: from theory to clinical applicationsD Navajas, R FarréBritish Journal of Anaesthesia|January 1, 1989
Respiratory input impedance during high frequency oscillatory ventilationD Navajas, R FarréInternational Journal of Bio-Medical Computing|March 1, 1989
A least squares algorithm to determine the mechanical time constant distribution of the lung during forced expirationM Rotger, D Navajas, R FarréJournal of Applied Physiology (Bethesda, Md. : 1985)|September 1, 1992
Optimized estimation of respiratory impedance by signal averaging in the time domainR Farré, M Rotger, D NavajasMedical & Biological Engineering & Computing|January 1, 1991
Time-domain digital filter to improve signal-to-noise ratio in respiratory impedance measurementsR Farré, M Rotger, D NavajasThe European Respiratory Journal|March 1, 1997
Estimation of random errors in respiratory resistance and reactance measured by the forced oscillation techniqueR Farré, M Rotger, D NavajasThe European Respiratory Journal|December 2, 2004
Noninvasive monitoring of respiratory mechanics during sleepR Farré, J M Montserrat, D NavajasSleep & Breathing = Schlaf & Atmung|February 28, 2002
New technologies to detect static and dynamic upper airway obstruction during sleepJ M Montserrat, R Farré, D NavajasJournal of Applied Physiology (Bethesda, Md. : 1985)|March 1, 1994
Human lung impedance from spontaneous breathing frequencies to 32 HzR Farré, R Peslin, M Rotger, et al.Pageof 17