Ola Stenqvist chercheur suédois
Stenqvist, Ola
VIAF ID: 284614406 (Personal)
Permalink: http://viaf.org/viaf/284614406
Preferred Forms
- 100 0 _ ‡a Ola Stenqvist ‡c chercheur suédois
- 100 1 _ ‡a Stenqvist, Ola
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4xx's: Alternate Name Forms (6)
Works
Title | Sources |
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Acute hemodynamic changes during lung recruitment in lavage and endotoxin-induced ALI. | |
Alveolar pressure monitoring: an evaluation in a lung model and in patients with acute lung injury | |
Clinical evaluation of a partial CO2 rebreathing technique for cardiac output monitoring in critically ill patients. | |
Clinical review: Respiratory monitoring in the ICU - a consensus of 16. | |
Close scavenging experimental and preliminary clinical studies of a method of reducing anaesthetic gas contamination. | |
A comparison between desflurane, sevoflurane and isoflurane anaesthesia. | |
Continuous on-line measurements of respiratory system, lung and chest wall mechanics during mechanic ventilation. | |
Dead-space reduction and tracheal pressure measurements using a coaxial inner tube in an endotracheal tube. | |
Descending aortic blood flow and cardiac output: a clinical and experimental study of continuous oesophageal echo-Doppler flowmetry. | |
Determination of 'recruited volume' following a PEEP step is not a measure of lung recruitability | |
Direct tracheal airway pressure measurements are essential for safe and accurate dynamic monitoring of respiratory mechanics. A laboratory study. | |
The dynostatic algorithm accurately calculates alveolar pressure on-line during ventilator treatment in children | |
Electrical impedance tomography applied to assess matching of pulmonary ventilation and perfusion in a porcine experimental model | |
Endotracheal intubation trauma : an experimental evaluation of pressure induced ischemia, tube-laryngeal wall pressures and a clinical study on the ventilatory properties of narrow tubes | |
Erratum to: 36th International Symposium on Intensive Care and Emergency Medicine | |
Estimation of functional residual capacity at the bedside using standard monitoring equipment: a modified nitrogen washout/washin technique requiring a small change of the inspired oxygen fraction. | |
Evaluation of a Pitot type spirometer in helium/oxygen mixtures. | |
Evaluation of pressure/volume loops based on intratracheal pressure measurements during dynamic conditions. | |
Improved response time with a new miniaturised main-stream multigas monitor | |
[Incidents in health care--punishment or committee of inquiry?] | |
Inhaled nitric oxide in the evaluation of heart transplant candidates with elevated pulmonary vascular resistance. | |
Intestinal perfusion during pneumoperitoneum with carbon dioxide, nitrogen, and nitric oxide during laparoscopic surgery | |
Isocapnic hyperventilation shortens washout time for sevoflurane - an experimental in vivo study. | |
[Liver transplantation--from experiment to routine care. Experiences from the first 500 liver transplantations in Gothenburg] | |
Luxury lung perfusion in end-stage liver disease during liver transplantation. | |
Monitoring functional residual capacity (FRC) by quantifying oxygen/carbon dioxide fluxes during a short apnea. | |
A new method for non-invasive, manoeuvre-free determination of "static" pressure-volume curves during dynamic/therapeutic mechanical ventilation. | |
A new non-radiological method to assess potential lung recruitability: a pilot study in ALI patients. | |
Nitric oxide administration after the ventilator: evaluation of mixing conditions | |
Nitrous oxide : an ageing gentleman | |
Positive end-expiratory pressure optimization using electric impedance tomography in morbidly obese patients during laparoscopic gastric bypass surgery. | |
Prolonged moderate pressure recruitment manoeuvre results in lower optimal positive end-expiratory pressure and plateau pressure. | |
Recent advances in and limitations of cardiac output monitoring by means of electrical impedance tomography. | |
Regional intratidal gas distribution in acute lung injury and acute respiratory distress syndrome assessed by electric impedance tomography. | |
Regional lung derecruitment after endotracheal suction during volume- or pressure-controlled ventilation: a study using electric impedance tomography. | |
Safety aspects of delivery and monitoring of nitric oxide during mechanical ventilation. | |
A Scandinavian survey of drug administration through inhalation, suctioning and recruitment maneuvers in mechanically ventilated patients | |
A simple method for isocapnic hyperventilation evaluated in a lung model. | |
Slow moderate pressure recruitment maneuver minimizes negative circulatory and lung mechanic side effects: evaluation of recruitment maneuvers using electric impedance tomography. | |
Tabibi baŋsim sabbu ka bi daabahali pohamzuɣu siimiin goli October biɛɣu 24 | |
Tracheal double-lumen ventilation attenuates hypercapnia and respiratory acidosis in lung injured pigs. | |
Transpulmonary pressure and lung elastance can be estimated by a PEEP-step manoeuvre. | |
Transpulmonary pressure can be determined without esophageal pressure measurements. | |
Uptake of inhaled nitric oxide in acute lung injury | |
Validation and clinical feasibility of nitrogen washin/washout functional residual capacity measurements in children. | |
Warning! Suctioning. A lung model evaluation of closed suctioning systems | |
What's new in respiratory physiology? The expanding chest wall revisited! | |
Whither lung EIT: where are we, where do we want to go and what do we need to get there? |