0000000000121546

AUTHOR

A. Bink

showing 3 related works from this author

Multirotations-CT und ARDS

2001

Purpose Aim of the study was to investigate alveolar inspiration and expiration using multiscan CT. Results of a visual assessment using a scoring system were compared with density ranges known to represent alveolar ventilation best. Method Pigs were examined before and after lavage-induced ARDS. All animals were examined using dynamic multiscan CT. The visual assessment was done by a scoring system proposed by Gattinoni. The results were compared with planimetric determination of defined density ranges. Results In the healthy lung, the visual analysis showed higher scores at lower airway pressures with a marked gradient, whereas at higher pressures neither opacities nor gradients were obse…

ARDSScoring systemLungAirway pressuresbusiness.industryAcute respiratory distressrespiratory systemmedicine.diseaserespiratory tract diseasesLung densitymedicine.anatomical_structureMedicineRadiology Nuclear Medicine and imagingExpirationTomographybusinessNuclear medicineDer Radiologe
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Lung density distribution in dynamic CT correlates with oxygenation during pressure-controlled ventilation of pigs with lavage-ARDS

2000

medicine.medical_specialtyARDSbusiness.industryPressure controlled ventilationOxygenationmedicine.diseaseLung densityAnesthesiology and Pain MedicineInternal medicinemedicineCardiologyDistribution (pharmacology)RadiologyDynamic ctbusiness
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Temporal dynamics of lung aeration determined by dynamic CT in a porcine model of ARDS

2001

We used dynamic CT to identify two different time constants of lung aeration and their individual contribution to the total increase in cross-sectional lung area in healthy and experimentally damaged lungs. In five healthy pigs, inflation and deflation between 0 and 50 cm H2O was imposed during dynamic (250 ms/image) CT acquisition, and repeated after experimental lung injury by saline lavage. The fractional areas of density ranges, which represent aerated lung parenchyma, were determined planimetrically, and their time for expansion during the manoeuvre was fitted using a bi-exponential model. Thus, two compartments, their sizes, i.e. their relative contributions to lung area aerated by th…

ARDSPathologymedicine.medical_specialtySwinemedicine.medical_treatmentLung injuryModels BiologicalParenchymaMedicineAnimalsExpirationTherapeutic IrrigationSalineLungRespiratory Distress SyndromeLungbusiness.industryPulmonary Gas ExchangeRespirationRespiratory diseaserespiratory systemmedicine.diseaseAnesthesiology and Pain Medicinemedicine.anatomical_structureBreathingNuclear medicinebusinessTomography X-Ray Computed
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