Literature DB >> 11447070

Respiratory fluid mechanics and transport processes.

J B Grotberg1.   

Abstract

The field of respiratory flow and transport has experienced significant research activity over the past several years. Important contributions to the knowledge base come from pulmonary and critical care medicine, surgery, physiology, environmental health sciences, biophysics, and engineering. Several disciplines within engineering have strong and historical ties to respiration including mechanical, chemical, civil/environmental, aerospace and, of course, biomedical engineering. This review draws from a wide variety of scientific literature that reflects the diverse constituency and audience that respiratory science has developed. The subject areas covered include nasal flow and transport, airway gas flow, alternative modes of ventilation, nonrespiratory gas transport, aerosol transport, airway stability, mucus transport, pulmonary acoustics, surfactant dynamics and delivery, and pleural liquid flow. Within each area are a number of subtopics whose exploration can provide the opportunity of both depth and breadth for the interested reader.

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Year:  2001        PMID: 11447070     DOI: 10.1146/annurev.bioeng.3.1.421

Source DB:  PubMed          Journal:  Annu Rev Biomed Eng        ISSN: 1523-9829            Impact factor:   9.590


  30 in total

1.  Surfactant Driven Post-Deposition Spreading of Aerosols on Complex Aqueous Subphases. 1: High Deposition Flux Representative of Aerosol Delivery to Large Airways.

Authors:  Amsul Khanal; Ramankur Sharma; Timothy E Corcoran; Stephen Garoff; Todd M Przybycien; Robert D Tilton
Journal:  J Aerosol Med Pulm Drug Deliv       Date:  2015-02-27       Impact factor: 2.849

2.  Acoustically detectable cellular-level lung injury induced by fluid mechanical stresses in microfluidic airway systems.

Authors:  Dongeun Huh; Hideki Fujioka; Yi-Chung Tung; Nobuyuki Futai; Robert Paine; James B Grotberg; Shuichi Takayama
Journal:  Proc Natl Acad Sci U S A       Date:  2007-11-15       Impact factor: 11.205

3.  The Pulsatile Propagation of a Finger of Air Within a Fluid-Occluded Cylindrical Tube.

Authors:  Bradford J Smith; Donald P Gaver
Journal:  J Fluid Mech       Date:  2008-04       Impact factor: 3.627

4.  Metachronal wave formation in a model of pulmonary cilia.

Authors:  Sorin M Mitran
Journal:  Comput Struct       Date:  2007       Impact factor: 4.578

5.  Physicochemical effects enhance surfactant transport in pulsatile motion of a semi-infinite bubble.

Authors:  Jerina E Pillert; Donald P Gaver
Journal:  Biophys J       Date:  2009-01       Impact factor: 4.033

Review 6.  Liquid and surfactant delivery into pulmonary airways.

Authors:  David Halpern; Hideki Fujioka; Shuichi Takayama; James B Grotberg
Journal:  Respir Physiol Neurobiol       Date:  2008-05-23       Impact factor: 1.931

7.  Liquid plug propagation in flexible microchannels: A small airway model.

Authors:  Y Zheng; H Fujioka; S Bian; Y Torisawa; D Huh; S Takayama; J B Grotberg
Journal:  Phys Fluids (1994)       Date:  2009-07-29       Impact factor: 3.521

8.  Dynamics of liquid plugs of buffer and surfactant solutions in a micro-engineered pulmonary airway model.

Authors:  Hossein Tavana; Chuan-Hsien Kuo; Qian Yi Lee; Bobak Mosadegh; Dongeun Huh; Paul J Christensen; James B Grotberg; Shuichi Takayama
Journal:  Langmuir       Date:  2010-03-02       Impact factor: 3.882

9.  Surfactant-induced Marangoni transport of lipids and therapeutics within the lung.

Authors:  Amy Z Stetten; Steven V Iasella; Timothy E Corcoran; Stephen Garoff; Todd M Przybycien; Robert D Tilton
Journal:  Curr Opin Colloid Interface Sci       Date:  2018-01-13       Impact factor: 6.448

10.  Enabling Marangoni flow at air-liquid interfaces through deposition of aerosolized lipid dispersions.

Authors:  Amy Z Stetten; Grace Moraca; Timothy E Corcoran; Stephanie Tristram-Nagle; Stephen Garoff; Todd M Przybycien; Robert D Tilton
Journal:  J Colloid Interface Sci       Date:  2016-08-31       Impact factor: 8.128

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