Literature DB >> 20399114

Comparison of uncalibrated arterial pressure waveform analysis with continuous thermodilution cardiac output measurements in patients undergoing elective off-pump coronary artery bypass surgery.

Yong Bo Jeong1, Tae Hee Kim, Young Jin Roh, In Cheol Choi, Jeong Hun Suh.   

Abstract

OBJECTIVE: Monitoring of cardiac output is required during anesthesia for off-pump coronary artery bypass (OPCAB) surgery. Recently, FloTrac, a new device for arterial pressure waveform analysis for cardiac output (APCO) monitoring without external calibration, was developed. The authors have compared APCO with STAT-mode continuous cardiac output (SCCO) in patients undergoing OPCAB surgery.
DESIGN: A clinical study.
SETTING: A university hospital (single institution). PARTICIPANTS: Thirty consecutive patients undergoing elective OPCAB surgery.
INTERVENTIONS: Arterial pressure measurement with FloTrac, pulmonary arterial catheter insertion.
MEASUREMENTS AND MAIN RESULTS: APCO and SCCO measurements were recorded after pulmonary artery catheter insertion (T1), after sternotomy (T2), after heart positioning for left anterior descending artery anastomosis (T3, T4), after heart positioning for obtuse marginal artery anastomosis (T5, T6), after heart positioning for posterior descending artery anastomosis (T7, T8), and after sternal closure (T9). APCO and SCCO were compared using the Bland-Altman method and the percentage error by Critchley's criteria. SCCO and APCO ranged from 2.1 to 6.9 L/min and 1.2 to 7.4 L/min, respectively, and showed low correlation (r = 0.29). The overall bias by the Bland-Altman method between SCCO and APCO was -0.23 L/min, with a precision of -1.4 to 0.9 L/min, and the overall limits of agreement were -2.5 to 2.0 L/min. The overall mean CO was 4.0 ± 0.95 L/min. The overall percentage error between SCCO and APCO measurements was 57%.
CONCLUSIONS: Uncalibrated APCO values do not agree with thermodilution SCCO and significantly overestimated the SCCO in patients undergoing OPCAB surgery. Further evaluation is required to verify the clinical acceptance of FloTrac APCO in OPCAB surgery.
Copyright © 2010 Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20399114     DOI: 10.1053/j.jvca.2010.02.006

Source DB:  PubMed          Journal:  J Cardiothorac Vasc Anesth        ISSN: 1053-0770            Impact factor:   2.628


  6 in total

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Authors:  Julia Shanks; Neil Herring
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2.  The ability of a new continuous cardiac output monitor to measure trends in cardiac output following implementation of a patient information calibration and an automated exclusion algorithm.

Authors:  Hironori Ishihara; Yoshihiro Sugo; Masato Tsutsui; Takashige Yamada; Tetsufumi Sato; Toshimasa Akazawa; Nobukazu Sato; Koichi Yamashita; Junzo Takeda
Journal:  J Clin Monit Comput       Date:  2012-08-02       Impact factor: 2.502

3.  Accuracy of cardiac output measurements during off-pump coronary artery bypass grafting: according to the vessel anastomosis sites.

Authors:  Sung Yong Park; Dae Hee Kim; Han Bum Joe; Ji Young Yoo; Jin Soo Kim; Min Kang; Yong Woo Hong
Journal:  Korean J Anesthesiol       Date:  2012-05-24

4.  Evaluation of a model-based hemodynamic monitoring method in a porcine study of septic shock.

Authors:  James A Revie; David Stevenson; J Geoffrey Chase; Chris J Pretty; Bernard C Lambermont; Alexandre Ghuysen; Philippe Kolh; Geoffrey M Shaw; Thomas Desaive
Journal:  Comput Math Methods Med       Date:  2013-03-25       Impact factor: 2.238

5.  Less invasive methods of advanced hemodynamic monitoring: principles, devices, and their role in the perioperative hemodynamic optimization.

Authors:  Christos Chamos; Liana Vele; Mark Hamilton; Maurizio Cecconi
Journal:  Perioper Med (Lond)       Date:  2013-09-17

Review 6.  Cardiac output monitoring: Technology and choice.

Authors:  Jeff Kobe; Nitasha Mishra; Virendra K Arya; Waiel Al-Moustadi; Wayne Nates; Bhupesh Kumar
Journal:  Ann Card Anaesth       Date:  2019 Jan-Mar
  6 in total

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