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PMID: 40483853 Published · ppublish English Journal Article Comparative Study

Effects of Pulsatile Bi-level Ventilation on flow characteristics in an alveolated duct: A comparative study.

Computers in biology and medicine ·Vol. 194 ·2025-08-00 ·页码 110509

Baghaei Oskouei S, Monsefi SH, Aloy A, Kurz M, Kölbl R, Gföhler M, Harasek M

Abstract

This study investigates the fluid flow behavior in a single alveolated duct, comparing Bi-level Ventilation (BLV) and Pulsatile Bi-level Ventilation (PBLV) techniques. While clinical studies have shown that PBLV enhances gas exchange, there has been a lack of detailed exploration of the flow fields within the alveolus for these ventilation methods. Using Computational Fluid Dynamics (CFD) including Fluid-structure Interaction (FSI) and boundary conditions measured in experiments, this work examines the differences in alveolar flow characteristics between PBLV and BLV. This study reveals that PBLV induces more dynamic and transient vortex behavior, with the vortex core moving centrally within the alveolus at each pulsation of the high-frequency jet, contributing to enhanced recirculating flows and chaotic patterns. In contrast, BLV produces a less mobilized vortex core that quickly settles. In addition, a more prominent three-dimensional spiral flow is observed in PBLV, which might lead to better air mixing compared to BLV. These observations provide insight into the main differences in flow features during BLV and PBLV. However, further quantitative analysis that includes gas exchange models is required to directly examine the improvements at the alveolar level. This research lays the groundwork for understanding the aerodynamic factors that might contribute to PBLV's enhanced performance, offering a new perspective on ventilation strategies.

Keywords
BLV Biofluids Fluid-solid interaction Mechanical ventilation PBLV Superimposed high-frequency ventilation
MeSH 主题词
Pulmonary Alveoli/physiology Humans Hydrodynamics Models, Biological Computer Simulation Pulsatile Flow/physiology
作者与单位
共 7 位作者,点击展开单位 / ORCID
Baghaei Oskouei Seyedmohsen
Institute of Engineering Design and Product Development, TU Wien, Vienna, Austria; Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Vienna, Austria. Electronic address: [email protected].
Monsefi Seyyed Hossein
Institute of Engineering Design and Product Development, TU Wien, Vienna, Austria; Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Vienna, Austria.
Aloy Alexander
Institute of Fluid Mechanics and Heat Transfer, TU Wien, Vienna, Austria.
Kurz Michael
Institute of Engineering Design and Product Development, TU Wien, Vienna, Austria.
Kölbl Robert
Carl Reiner GmbH, Vienna, Austria.
Gföhler Margit
Institute of Engineering Design and Product Development, TU Wien, Vienna, Austria.
Harasek Michael
Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Vienna, Austria.
Article Info
Journal
Computers in biology and medicine
Abbr.
Comput Biol Med
ISSN
1879-0534
Corresponding email
Published
2025-08-00
电子出版
2025-00-07
页码
110509
Language
English
Country/Region
United States
NLM ID
1250250
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