The high frequency oscillation artificial respiration technique is often the last hope for patients to survive highly damaged lung tissue. The mortality can significantly be reduced. In comparison to conventional artificial respiration the applied volume flow rate and pressure is significantly lowered in order to avoid further damaging of lung tissue and remaining intact alveolae. However, the physical mechanism of transport of oxygen to the aeriols under high frequency oscillation is not well understood. In the upper part of the lung convection is dominant, in contrast, the gas exchange in the lower parts of the lung is mainly driven by diffusion. It is not clear how associated gradients of concentrations of different molecular species ar...
This thesis comprises an investigation of the dynamics of airflow in the upper respiratory tract fro...
Airflow into the lung is the result of negative alveolar pressure caused by the simultaneous action ...
In this thesis, I studied the turbulent motion in oscillating pipe flow (OP) by means of direct nume...
The mechanics of airflow in the large airways during inspiration affects important physiological fun...
[著者版]As the mechanism of gas transport and exchange in human respiratory ventilation, the complicate...
To improve the understanding of the gas transport mechanisms under conditions of high-frequency osci...
To improve the understanding of gas transport mechanisms under conditions of high-frequency oscillat...
Flow dynamics are studied for different ventilation conditions at a three-dimensional model of the h...
High frequency oscillatory ventilation (HFOV) relies on low tidal volumes cycled at supraphysiologic...
The objective of this work is to develop understanding of the local fluid dynamic mechanisms that un...
Mechanical ventilation can be a life saving treatment. However, due to the inhomogeneous and anisotr...
2nd EditionInternational audienceMajor moving biological fluids, or biofluids, are blood and air tha...
Studies of flow through the human airway have shown that inhalation time (IT) and secondary flow str...
A pathway through the system of branching in the respiratory region of the lung is modelled by a cir...
Although normal lungs may be represented satisfactorily by symmetrical architecture, pathological co...
This thesis comprises an investigation of the dynamics of airflow in the upper respiratory tract fro...
Airflow into the lung is the result of negative alveolar pressure caused by the simultaneous action ...
In this thesis, I studied the turbulent motion in oscillating pipe flow (OP) by means of direct nume...
The mechanics of airflow in the large airways during inspiration affects important physiological fun...
[著者版]As the mechanism of gas transport and exchange in human respiratory ventilation, the complicate...
To improve the understanding of the gas transport mechanisms under conditions of high-frequency osci...
To improve the understanding of gas transport mechanisms under conditions of high-frequency oscillat...
Flow dynamics are studied for different ventilation conditions at a three-dimensional model of the h...
High frequency oscillatory ventilation (HFOV) relies on low tidal volumes cycled at supraphysiologic...
The objective of this work is to develop understanding of the local fluid dynamic mechanisms that un...
Mechanical ventilation can be a life saving treatment. However, due to the inhomogeneous and anisotr...
2nd EditionInternational audienceMajor moving biological fluids, or biofluids, are blood and air tha...
Studies of flow through the human airway have shown that inhalation time (IT) and secondary flow str...
A pathway through the system of branching in the respiratory region of the lung is modelled by a cir...
Although normal lungs may be represented satisfactorily by symmetrical architecture, pathological co...
This thesis comprises an investigation of the dynamics of airflow in the upper respiratory tract fro...
Airflow into the lung is the result of negative alveolar pressure caused by the simultaneous action ...
In this thesis, I studied the turbulent motion in oscillating pipe flow (OP) by means of direct nume...