Literature DB >> 17570578

Gaseous microemboli sizing in extracorporeal circuits using ultrasound backscatter.

John E Lynch1, Alison Pouch, Randi Sanders, Mark Hinders, Kevin Rudd, John Sevick.   

Abstract

This paper describes efforts to estimate the size of gaseous microemboli (GME) in extracorporeal blood circuits based on the amplitude of backscattered ultrasound, starting with analytic modeling of the scattering behavior of GME in blood. After neglecting resonance effects, this model predicts a linear relationship between the amplitude of backscattered echoes and the diameter of GME. Computer simulations based on the cylindrical acoustic finite integration technique were performed to test some of the simplifying assumptions of the analytical model, with the simulations predicting small deviations from the linear approximation that could be treated as random scatter. Ultrasonic and microscopic measurements of injected GME were then performed on a test circuit to determine the linear correlation coefficient between echo amplitude and GME diameter in conditions like those employed in real cardiopulmonary bypass (CPB) circuits. The correlation coefficient determined through this study was further validated in a closed-loop CPB circuit using canine blood. This study shows that the amplitude of ultrasonic backscattered echoes can be used to accurately estimate the size distribution of a population of detected GME when the spacing of emboli is great enough to minimize interference and other multi-path scattering effects. With the high flow rates found in CPB circuits, typically ranging from 2 to 6 L per minute (equivalent to a flow velocity of 0.3 to 1 m/s through the circuit tubing), this assumption will be valid even when hundreds of emboli per second pass through the circuit. Therefore, sizing of GME using the ultrasonic backscatter models described in this paper is a viable method for estimating embolic load delivered to a patient during a CPB procedure.

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Year:  2007        PMID: 17570578     DOI: 10.1016/j.ultrasmedbio.2007.04.008

Source DB:  PubMed          Journal:  Ultrasound Med Biol        ISSN: 0301-5629            Impact factor:   2.998


  11 in total

1.  Monitoring microemboli during cardiopulmonary bypass with the EDAC quantifier.

Authors:  John E Lynch; Christopher Wells; Tom Akers; Paul Frantz; Donna Garrett; M Lance Scott; Lisa Williamson; Barbara Agnew; John K Lynch
Journal:  J Extra Corpor Technol       Date:  2010-09

Review 2.  Vacuum-assisted venous drainage and gaseous microemboli in cardiopulmonary bypass.

Authors:  Shigang Wang; Akif Undar
Journal:  J Extra Corpor Technol       Date:  2008-12

3.  Vacuum assist: angel or demon CON.

Authors:  Timothy W Willcox
Journal:  J Extra Corpor Technol       Date:  2013-06

4.  Elimination of gaseous microemboli from cardiopulmonary bypass using hypobaric oxygenation.

Authors:  Keith E Gipson; David J Rosinski; Robert B Schonberger; Cathryn Kubera; Eapen S Mathew; Frank Nichols; William Dyckman; Francois Courtin; Bradford Sherburne; Angelique F Bordey; Jeffrey B Gross
Journal:  Ann Thorac Surg       Date:  2013-11-06       Impact factor: 4.330

5.  Gaseous microemboli in a pediatric bypass circuit with an unprimed venous line: an in vitro study.

Authors:  Andrea Hudacko; Alicia Sievert; Joseph Sistino
Journal:  J Extra Corpor Technol       Date:  2009-09

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

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

7.  Use of the Reamer/Irrigator/Aspirator Decreases Carotid and Cranial Embolic Events in a Canine Model.

Authors:  Anna N Miller; Dwight Deal; James Green; Timothy Houle; William Brown; Clara Thore; David Stump; Lawrence X Webb
Journal:  J Bone Joint Surg Am       Date:  2016-04-20       Impact factor: 5.284

Review 8.  Clinical outcomes of pulsatile and non-pulsatile mode of perfusion.

Authors:  Nikkole Haines; Shigang Wang; Akif Undar; Tijen Alkan; Atif Akcevin
Journal:  J Extra Corpor Technol       Date:  2009-03

9.  Sizing gaseous emboli using Doppler embolic signal intensity.

Authors:  Caroline Banahan; James P Hague; David H Evans; Rizwan Patel; Kumar V Ramnarine; Emma M L Chung
Journal:  Ultrasound Med Biol       Date:  2012-03-06       Impact factor: 2.998

10.  In-Vitro Evaluation of Two Types of Neonatal Oxygenators in Handling Gaseous Microemboli and Maintaining Optimal Hemodynamic Stability During Cardiopulmonary Bypass.

Authors:  Neelima Marupudi; Shigang Wang; Luiz Fernando Canêo; Fabio Biscegli Jatene; Allen R Kunselman; Akif Undar
Journal:  Braz J Cardiovasc Surg       Date:  2016 Sep-Oct
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