Literature DB >> 8864027

Sweep gas flowrate and CO2 exchange in artificial lungs.

W J Federspiel1, B G Hattler.   

Abstract

A simple analysis and graphic result are presented for characterizing the dependence of CO2 exchange on the sweep gas (ventilating gas) flowrate in artificial lungs. The analysis requires no knowledge of the device-specific mass transfer characteristics of an artificial lung, nor does it require detailed mathematical modeling or computer simulation. Rather, it uses appropriate normalization to establish generic features of the gas flow dependency of CO2 exchange that are applicable to all artificial lung devices. Principal results are that the transition from relatively gas flow-sensitive to gas flow-insensitive CO2 exchange occurs at sweep gas flowrates of approximately 40-60 times the CO2 exchange rate. Achieving a CO2 exchange rate within 85% of maximal (for a given oxygenator and blood-side conditions) requires a sweep gas flowrate of no less than approximately 50 times the nominal CO2 exchange rate. When the sweep gas flowrate is less than 20 times the CO2 exchange rate, CO2 exchange is highly gas flow dependent and less than one-half the maximal possible rate.

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Year:  1996        PMID: 8864027     DOI: 10.1111/j.1525-1594.1996.tb04593.x

Source DB:  PubMed          Journal:  Artif Organs        ISSN: 0160-564X            Impact factor:   3.094


  6 in total

1.  Carbonic anhydrase immobilized on hollow fiber membranes using glutaraldehyde activated chitosan for artificial lung applications.

Authors:  J D Kimmel; D T Arazawa; S-H Ye; V Shankarraman; W R Wagner; W J Federspiel
Journal:  J Mater Sci Mater Med       Date:  2013-07-26       Impact factor: 3.896

2.  Effect of Hematocrit on the CO2 Removal Rate of Artificial Lungs.

Authors:  Alexandra G May; Katelin S Omecinski; Brian J Frankowski; William J Federspiel
Journal:  ASAIO J       Date:  2020 Nov/Dec       Impact factor: 2.872

Review 3.  Extracorporeal carbon dioxide removal (ECCO2R) in respiratory deficiency and current investigations on its improvement: a review.

Authors:  Hany Hazfiza Manap; Ahmad Khairi Abdul Wahab
Journal:  J Artif Organs       Date:  2016-05-18       Impact factor: 1.731

4.  Acute in vivo testing of a respiratory assist catheter: implants in calves versus sheep.

Authors:  Heide J Eash; Brian J Frankowski; Kenneth Litwak; William R Wagner; Brack G Hattler; William J Federspiel
Journal:  ASAIO J       Date:  2003 Jul-Aug       Impact factor: 2.872

5.  Water as a Blood Model for Determination of CO2 Removal Performance of Membrane Oxygenators.

Authors:  Benjamin Lukitsch; Raffael Koller; Paul Ecker; Martin Elenkov; Christoph Janeczek; Markus Pekovits; Bahram Haddadi; Christian Jordan; Margit Gfoehler; Michael Harasek
Journal:  Membranes (Basel)       Date:  2021-05-12

6.  In vivo testing of the low-flow CO2 removal application of a compact, platform respiratory device.

Authors:  Alexandra G May; Ryan A Orizondo; Brian J Frankowski; Sang-Ho Ye; Ergin Kocyildirim; William R Wagner; Jonathan D'Cunha; William J Federspiel
Journal:  Intensive Care Med Exp       Date:  2020-08-17
  6 in total

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