The effect of endotracheal suction on regional tidal ventilation and end-expiratory lung volume
暂无分享,去创建一个
D. Tingay | K. Dunster | P. Dargaville | B. Copnell | A. Schibler | C. Grant | K. Dunster | Caroline A. Grant | Andreas Schibler
[1] Jacqueline E. Taylor,et al. Tracheal suctioning without disconnection in intubated ventilated neonates. , 2011, The Cochrane database of systematic reviews.
[2] D. Tingay,et al. The Effect of Suction Method, Catheter Size, and Suction Pressure on Lung Volume Changes During Endotracheal Suction in Piglets , 2009, Pediatric Research.
[3] C. Morley,et al. The Effects of Closed Endotracheal Suction on Ventilation During Conventional and High-Frequency Oscillatory Ventilation , 2009, Pediatric Research.
[4] Johanna H. van der Lee,et al. Effect of closed endotracheal suction in high-frequency ventilated premature infants measured with electrical impedance tomography , 2009, Intensive Care Medicine.
[5] John F. Fraser,et al. The assessment of regional lung mechanics with electrical impedance tomography: a pilot study during recruitment manoeuvres , 2008, Intensive Care Medicine.
[6] A. Stray‐Pedersen,et al. Helicobacter pylori Antigen in Stool Is Associated With SIDS and Sudden Infant Deaths due to Infectious Disease , 2008, Pediatric Research.
[7] A. Argent,et al. A comprehensive review of pediatric endotracheal suctioning: Effects, indications, and clinical practice* , 2008, Pediatric critical care medicine : a journal of the Society of Critical Care Medicine and the World Federation of Pediatric Intensive and Critical Care Societies.
[8] C. Morley,et al. Negative Tracheal Pressure During Neonatal Endotracheal Suction , 2008, Pediatric Research.
[9] Göran Hedenstierna,et al. Electrical impedance tomography compared with thoracic computed tomography during a slow inflation maneuver in experimental models of lung injury* , 2008, Critical care medicine.
[10] C. Morley,et al. Lung volume and cardiorespiratory changes during open and closed endotracheal suction in ventilated newborn infants , 2008, Archives of Disease in Childhood Fetal and Neonatal Edition.
[11] Steffen Leonhardt,et al. Assessment of regional lung recruitment and derecruitment during a PEEP trial based on electrical impedance tomography , 2008, Intensive Care Medicine.
[12] Inez Frerichs,et al. Regional lung volume changes in children with acute respiratory distress syndrome during a derecruitment maneuver* , 2007, Critical care medicine.
[13] C. Morley,et al. A comparison of the effectiveness of open and closed endotracheal suction , 2007, Intensive Care Medicine.
[14] C. Morley,et al. Effects of open endotracheal suction on lung volume in infants receiving HFOV , 2007, Intensive Care Medicine.
[15] A. Argent,et al. A recruitment manoeuvre performed after endotracheal suction does not increase dynamic compliance in ventilated paediatric patients: a randomised controlled trial. , 2007, The Australian journal of physiotherapy.
[16] J. Fraser,et al. Electrical impedance tomography in extremely prematurely born infants and during high frequency oscillatory ventilation analyzed in the frequency domain , 2006, Physiological measurement.
[17] Inéz Frerichs,et al. Lung volume recruitment after surfactant administration modifies spatial distribution of ventilation. , 2006, American journal of respiratory and critical care medicine.
[18] A. V. van Kaam,et al. Lung recruitment using oxygenation during open lung high-frequency ventilation in preterm infants. , 2006, American journal of respiratory and critical care medicine.
[19] C. Morley,et al. The deflation limb of the pressure-volume relationship in infants during high-frequency ventilation. , 2006, American journal of respiratory and critical care medicine.
[20] Q. Lu,et al. Open and Closed-circuit Endotracheal Suctioning in Acute Lung Injury: Efficiency and Effects on Gas Exchange , 2006, Anesthesiology.
[21] Ola Stenqvist,et al. Regional lung derecruitment after endotracheal suction during volume- or pressure-controlled ventilation: a study using electric impedance tomography , 2006, Intensive Care Medicine.
[22] B. Lachmann,et al. Open up the lung and keep the lung open , 1992, Intensive Care Medicine.
[23] Juan Calvo,et al. Tomographic study of the inflection points of the pressure-volume curve in acute lung injury. , 2004, American journal of respiratory and critical care medicine.
[24] Gerhard Hellige,et al. Distribution of ventilation in young and elderly adults determined by electrical impedance tomography , 2004, Respiratory Physiology & Neurobiology.
[25] M. Högman,et al. Post–suction Recruitment Manoeuvre Restores Lung Function in Healthy, Anaesthetized Pigs , 2004, Anaesthesia and intensive care.
[26] Harki Tanaka,et al. Imbalances in regional lung ventilation: a validation study on electrical impedance tomography. , 2004, American journal of respiratory and critical care medicine.
[27] A. Argent,et al. Endotracheal suctioning: from principles to practice , 2004, Intensive Care Medicine.
[28] Louis A Gatto,et al. Positive end-expiratory pressure after a recruitment maneuver prevents both alveolar collapse and recruitment/derecruitment. , 2003, American journal of respiratory and critical care medicine.
[29] Francois Lellouche,et al. Prevention of endotracheal suctioning-induced alveolar derecruitment in acute lung injury. , 2003, American journal of respiratory and critical care medicine.
[30] Louis A Gatto,et al. Alveolar inflation during generation of a quasi-static pressure/volume curve in the acutely injured lung , 2003, Critical care medicine.
[31] B. Paes,et al. Closed Suctioning of Intubated Neonates Maintains Better Physiologic Stability: A Randomized Trial , 2003, Journal of Perinatology.
[32] J. Kok,et al. Positive Pressure Ventilation with the Open Lung Concept Optimizes Gas Exchange and Reduces Ventilator-Induced Lung Injury in Newborn Piglets , 2003, Pediatric Research.
[33] H. Frndova,et al. Comparison of loss in lung volume with open versus in-line catheter endotracheal suctioning , 2003, Pediatric critical care medicine : a journal of the Society of Critical Care Medicine and the World Federation of Pediatric Intensive and Critical Care Societies.
[34] Anders Larsson,et al. Lung recruitment manoeuvres are effective in regaining lung volume and oxygenation after open endotracheal suctioning in acute respiratory distress syndrome , 2002, Critical care.
[35] P. Pelosi,et al. Recruitment and derecruitment during acute respiratory failure: an experimental study. , 2001, American journal of respiratory and critical care medicine.
[36] A. Pesenti,et al. Closed system endotracheal suctioning maintains lung volume during volume-controlled mechanical ventilation , 2001, Intensive Care Medicine.
[37] T. A. Parker,et al. Lung Volume Recruitment in Lambs during High-Frequency Oscillatory Ventilation Using Respiratory Inductive Plethysmography , 2001, Pediatric Research.
[38] C. McKerlie,et al. Lung recruitment and lung volume maintenance: a strategy for improving oxygenation and preventing lung injury during both conventional mechanical ventilation and high-frequency oscillation , 2000, Intensive Care Medicine.
[39] Arthur S Slutsky,et al. Lung recruitment during small tidal volume ventilation allows minimal positive end-expiratory pressure without augmenting lung injury. , 1999, Critical care medicine.
[40] F. Monaco,et al. A bench test evaluation of a neonatal closed tracheal suction system , 1992, Pediatric pulmonology.
[41] D C Barber,et al. A sensitivity method for electrical impedance tomography. , 1989, Clinical physics and physiological measurement : an official journal of the Hospital Physicists' Association, Deutsche Gesellschaft fur Medizinische Physik and the European Federation of Organisations for Medical Physics.
[42] D C Barber,et al. A review of image reconstruction techniques for electrical impedance tomography. , 1989, Medical physics.