Literature DB >> 28298665

Application of Micropore Filter Technology: Exploring the Blood Flow Path in Arterial-Line Filters and Its Effect on Bubble Trapping Functions.

Daniel P Herbst1.   

Abstract

Conventional arterial-line filters commonly use a large volume circular shaped housing, a wetted micropore screen, and a purge port to trap, separate, and remove gas bubbles from extracorporeal blood flow. Focusing on the bubble trapping function, this work attempts to explore how the filter housing shape and its resulting blood flow path affect the clinical application of arterial-line filters in terms of gross air handling. A video camera was used in a wet-lab setting to record observations made during gross air-bolus injections in three different radially designed filters using a 30-70% glycerol-saline mixture flowing at 4.5 L/min. Two of the filters both had inlet ports attached near the filter-housing top with bottom oriented outlet ports at the bottom, whereas the third filter had its inlet and outlet ports both located at the bottom of the filter housing. The two filters with top-in bottom-out fluid paths were shown to direct the incoming flow downward as it passed through the filter, placing the forces of buoyancy and viscous drag in opposition to each other. This contrasted with the third filter's bottom-in bottom-out fluid path, which was shown to direct the incoming flow upward so that the forces of buoyancy and viscous drag work together. The direction of the blood flow path through a filter may be important to the application of arterial-line filter technology as it helps determine how the forces of buoyancy and flow are aligned with one another.

Entities:  

Keywords:  application; arterial-line; cardio-pulmonary bypass equipment; filtration; micro-bubble; micropore; patient safety; radial

Mesh:

Year:  2017        PMID: 28298665      PMCID: PMC5347218     

Source DB:  PubMed          Journal:  J Extra Corpor Technol        ISSN: 0022-1058


  17 in total

1.  Ex vivo testing of the Quart arterial line filter.

Authors:  X M Mueller; H T Tevaearai; D Jegger; M Augstburger; M Burki; L K von Segesser
Journal:  Perfusion       Date:  1999-11       Impact factor: 1.972

2.  In vitro evaluation of gaseous microemboli handling of cardiopulmonary bypass circuits with and without integrated arterial line filters.

Authors:  Saifei Liu; Richard F Newland; Phillip J Tully; Sigrid C Tuble; Robert A Baker
Journal:  J Extra Corpor Technol       Date:  2011-09

3.  Air Transmission Comparison of the Affinity Fusion Oxygenator with an Integrated Arterial Filter to the Affinity NT Oxygenator with a Separate Arterial Filter.

Authors:  Kieron C Potger; Darryl McMillan; Mark Ambrose
Journal:  J Extra Corpor Technol       Date:  2014-09

4.  Sequential Blood Filtration for Extracorporeal Circulation: Initial Results from a Proof-of-Concept Prototype.

Authors:  Daniel P Herbst
Journal:  J Extra Corpor Technol       Date:  2014-09

5.  Gaseous microemboli and the influence of microporous membrane oxygenators.

Authors:  Heinz-H Weitkemper; Bernd Oppermann; Andreas Spilker; Hermann-J Knobl; Reiner Körfer
Journal:  J Extra Corpor Technol       Date:  2005-09

6.  The effects of pressure on gases in solution: possible insights to improve microbubble filtration for extracorporeal circulation.

Authors:  Daniel P Herbst
Journal:  J Extra Corpor Technol       Date:  2013-06

7.  Effects of Purge-Flow Rate on Microbubble Capture in Radial Arterial-Line Filters.

Authors:  Daniel P Herbst
Journal:  J Extra Corpor Technol       Date:  2016-09

8.  Development of a new arterial-line filter design using computational fluid dynamics analysis.

Authors:  Daniel P Herbst; Hani K Najm
Journal:  J Extra Corpor Technol       Date:  2012-09

9.  Arterial line filters ranked for gaseous micro-emboli separation performance: an in vitro study.

Authors:  Jeffrey B Riley
Journal:  J Extra Corpor Technol       Date:  2008-03

10.  Microemboli in our bypass circuits: a contemporary audit.

Authors:  Timothy W Willcox; Simon J Mitchell
Journal:  J Extra Corpor Technol       Date:  2009-12
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