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Respiratory Flows in the Pulmonary Acinus
Details
The pulmonary acinus, known as the gas exchange region of the lung, encompasses the complex of millions of sub-millimeter alveoli and may represent a potential host for pulmonary complications and diseases. These health disorders may require the inhalation of therapeutic drugs typically administered in the form of aerosolized particles. Both a precise understanding of the mechanisms leading to particle deposition as well as the need to target aerosols to specific pulmonary sites, remain ongoing challenges and depend directly on the fluid dynamics in the lung, and specifically on the microflows present in the acinar region. These considerations call not only for a deepening of our understanding of the fluid mechanics pertinent to the acinar region of the lung, but also, for the potential development of novel strategies towards improved and enhanced particle deposition inside the lung. The present thesis, which lies at the interface between engineering and medicine, is concerned with the role of convective respiratory flows in the acinar region of the lung, in conjunction with the transport and deposition of inhaled particles.
Autorentext
J. Sznitman received his BSc in mechanical engineering from MIT,his Dipl-Ing. and PhD from the ETH Zurich. After being aPostdoctoral Research Fellow at the University of Pennsylvania,Sznitman joined Princeton University as a Teaching Fellowappointed by the Council of Science & Technology. His researchlies in biofluids and flow visualization.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783838106847
- Sprache Deutsch
- Genre Sonstige Technikbücher
- Größe H220mm x B150mm x T16mm
- Jahr 2015
- EAN 9783838106847
- Format Kartonierter Einband
- ISBN 978-3-8381-0684-7
- Veröffentlichung 23.08.2015
- Titel Respiratory Flows in the Pulmonary Acinus
- Autor Josué Sznitman
- Untertitel A dissertation on respiratory airflows in the pulmonary acinus of the lung, inhalation aerosol transport, and the control of alveolar flows
- Gewicht 387g
- Herausgeber Südwestdeutscher Verlag für Hochschulschriften AG Co. KG
- Anzahl Seiten 248