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Results of search for 'au:"Rotger, M"', page 1 of 3
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Authors
Arab-Alameddine, M
Badia, J R
Ballester, E
Barberà, J A
Buclin, T
Canet, J
Cavassini, M
Duvivier, C
Farré, R
Ferrer, M
Gallina, C
Hernández, L
Montserrat, J M
Navajas, D
Peslin, R
Roca, J
Rodriguez-Roisin, R
Rotger, M
Rotger, M M
Sanchis, J
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Airway Resistance
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Lung
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Models, Biological
Positive-Pressure Respiration
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Pulmonary Ventilation
Respiration
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1.
A least squares algorithm to determine the mechanical time constant distribution of the lung during forced expiration.
[electronic resource]
by
Rotger, M
Navajas, D
Farré, R
Producer:
19890620
In:
International journal of bio-medical computing
vol. 24
Online resources:
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2.
Optimised algorithm to compute respiratory impedance by pseudorandom forced excitation.
[electronic resource]
by
Farré, R
Navajas, D
Rotger, M
Producer:
19920618
In:
Medical & biological engineering & computing
vol. 29
Online resources:
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3.
Estimation of random errors in respiratory resistance and reactance measured by the forced oscillation technique.
[electronic resource]
by
Farré, R
Rotger, M
Navajas, D
Producer:
19970603
In:
The European respiratory journal
vol. 10
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4.
Time-domain digital filter to improve signal-to-noise ratio in respiratory impedance measurements.
[electronic resource]
by
Farré, R
Rotger, M
Navajas, D
Producer:
19910517
In:
Medical & biological engineering & computing
vol. 29
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5.
Optimized estimation of respiratory impedance by signal averaging in the time domain.
[electronic resource]
by
Farré, R
Rotger, M
Navajas, D
Producer:
19921123
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 73
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6.
Methodological factors in the variability of lung volume and specific airway resistance measured by body plethysmography.
[electronic resource]
by
Peslin, R
Gallina, C
Rotger, M
Producer:
19880217
In:
Bulletin europeen de physiopathologie respiratoire
vol. 23
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7.
Optical method for determining the frequency response of pressure-measurement systems in respiratory mechanics.
[electronic resource]
by
Farré, R
Navajas, D
Rotger, M M
Producer:
19860429
In:
Medical & biological engineering & computing
vol. 24
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8.
Confidence intervals of respiratory mechanical properties derived from transfer impedance.
[electronic resource]
by
Rotger, M
Peslin, R
Oostveen, E
Gallina, C
Producer:
19911008
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 70
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9.
Recording pressure at the distal end of the endotracheal tube to measure respiratory impedance.
[electronic resource]
by
Navajas, D
Farré, R
Rotger, M
Canet, J
Producer:
19890516
In:
The European respiratory journal
vol. 2
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10.
Compared responses of rat lungs to step volume changes and to sinusoidal forcing.
[electronic resource]
by
Peslin, R
Rotger, M
Delaigue, N
Duvivier, C
Producer:
19920720
In:
Biorheology
vol. 28
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11.
Inspiratory dynamic obstruction detected by forced oscillation during CPAP. A model study.
[electronic resource]
by
Farré, R
Peslin, R
Rotger, M
Navajas, D
Producer:
19970418
In:
American journal of respiratory and critical care medicine
vol. 155
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12.
A new estimator to minimize the error due to breathing in the measurement of respiratory impedance.
[electronic resource]
by
Navajas, D
Farré, R
Rotger, M
Peslin, R
Producer:
19890322
In:
IEEE transactions on bio-medical engineering
vol. 35
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13.
Effect of expiratory flow limitation on respiratory mechanical impedance: a model study.
[electronic resource]
by
Peslin, R
Farré, R
Rotger, M
Navajas, D
Producer:
19970409
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 81
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14.
Respiratory input impedance up to 256 Hz in healthy humans breathing foreign gases.
[electronic resource]
by
Rotger, M
Farré, R
Navajas, D
Peslin, R
Producer:
19931019
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 75
Online resources:
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15.
Human lung impedance from spontaneous breathing frequencies to 32 Hz.
[electronic resource]
by
Farré, R
Peslin, R
Rotger, M
Navajas, D
Producer:
19940715
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 76
Online resources:
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16.
Servocontrolled generator to measure respiratory impedance from 0.25 to 26 Hz in ventilated patients at different PEEP levels.
[electronic resource]
by
Farré, R
Ferrer, M
Rotger, M
Navajas, D
Producer:
19951207
In:
The European respiratory journal
vol. 8
Online resources:
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17.
Gas compression artefacts when testing peak expiratory flow meters with mechanically-driven syringes.
[electronic resource]
by
Navajas, D
Roca, J
Farré, R
Rotger, M
Producer:
19970729
In:
The European respiratory journal
vol. 10
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18.
Lung and respiratory impedance at low frequency during mechanical ventilation in rabbits.
[electronic resource]
by
Rotger, M
Peslin, R
Navajas, D
Farré, R
Producer:
19951011
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 78
Online resources:
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19.
T model partition of lung and respiratory system impedances.
[electronic resource]
by
Rotger, M
Farré, R
Peslin, R
Navajas, D
Producer:
19950711
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 78
Online resources:
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20.
Assessment of respiratory pressure-volume nonlinearity in rabbits during mechanical ventilation.
[electronic resource]
by
Peslin, R
Rotger, M
Farré, R
Navajas, D
Producer:
19961203
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 80
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