Literature DB >> 11957169

Intrathoracic blood volume index measured by thermodilution for preload monitoring after cardiac surgery.

Daniel A Reuter1, Thomas W Felbinger, Karl Moerstedt, Florian Weis, Christian Schmidt, Erich Kilger, Alwin E Goetz.   

Abstract

OBJECTIVE: To investigate the accuracy of measurement of intrathoracic blood volume index by single thermodilution (ITBVI*) and its sensitivity to detect changes in preload after cardiac surgery compared with conventional transpulmonary arterial dye dilution ITBVI and with conventional monitoring (central venous pressure [CVP] and left ventricular end-diastolic area index [EDAI] by transesophageal echocardiography).
DESIGN: Prospective clinical study.
SETTING: University hospital. PARTICIPANTS: Nineteen patients immediately after cardiac surgery.
INTERVENTIONS: Volume loading was administered with 20 mL of oxypoligelatine (Haemaccel [Behringwerke Aktiengesellschaft Corp, Marburg, Germany]) 3.5% times body mass index over 10 minutes.
MEASUREMENTS AND MAIN RESULTS: Intrathoracic blood volume index was measured by dye dilution (ITBVI) and thermodilution (ITBVI*) immediately before and after volume loading. Measurements of ITBVI and ITBVI* correlated closely (r = 0.94; p < 0.0001). With volume loading, ITBVI and ITBVI* increased significantly from 877 +/- 195 mL/m(2) to 967 +/- 180 mL/m(2) and from 889 +/- 195 mL/m(2) to 954 +/- 185 mL/m(2). Percent changes in ITBVI (deltaITBVI) and ITBVI* (deltaITBVI*) did not differ significantly and correlated closely (r = 0.90; p < 0.0001). Percent changes in cardiac index (CI) as a result of volume loading (deltaCI) revealed significant correlation to deltaITBVI (r = 0.85; p < 0.0001) and to deltaITBVI* (r = 0.76; p < 0.0005). No significant correlation could be found between deltaCI and deltaEDAI or deltaCVP.
CONCLUSION: In patients undergoing cardiac surgery, determination of ITBVI* revealed close agreement with measurements derived by ITBVI. Enhancement in cardiac preload was adequately detected by ITBVI*. Copyright 2002, Elsevier Science (USA). All rights reserved.

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Year:  2002        PMID: 11957169     DOI: 10.1053/jcan.2002.31064

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


  17 in total

1.  Goal-directed fluid management reduces vasopressor and catecholamine use in cardiac surgery patients.

Authors:  Matthias S G Goepfert; Daniel A Reuter; Derya Akyol; Peter Lamm; Erich Kilger; Alwin E Goetz
Journal:  Intensive Care Med       Date:  2006-11-21       Impact factor: 17.440

2.  Cardiac response is greater for colloid than saline fluid loading after cardiac or vascular surgery.

Authors:  Joanne Verheij; Arthur van Lingen; Albertus Beishuizen; Herman M T Christiaans; Jan R de Jong; Armand R J Girbes; Willem Wisselink; Jan A Rauwerda; Marinus A J M Huybregts; A B Johan Groeneveld
Journal:  Intensive Care Med       Date:  2006-05-23       Impact factor: 17.440

Review 3.  [Hemodynamic monitoring in one-lung ventilation].

Authors:  S Haas; R Kiefmann; V Eichhorn; A E Goetz; D A Reuter
Journal:  Anaesthesist       Date:  2009-11       Impact factor: 1.041

4.  Intensive care management of liver transplanted patients.

Authors:  Paolo Feltracco; Stefania Barbieri; Helmut Galligioni; Elisa Michieletto; Cristiana Carollo; Carlo Ori
Journal:  World J Hepatol       Date:  2011-03-27

5.  [Accuracy of pulse contour cardiac index measurements during changes of preload and aortic impedance].

Authors:  T W Felbinger; M S Goepfert; T Goresch; A E Goetz; D A Reuter
Journal:  Anaesthesist       Date:  2005-08       Impact factor: 1.041

6.  The Japanese Clinical Practice Guidelines for Management of Sepsis and Septic Shock 2016 (J-SSCG 2016).

Authors:  Osamu Nishida; Hiroshi Ogura; Moritoki Egi; Seitaro Fujishima; Yoshiro Hayashi; Toshiaki Iba; Hitoshi Imaizumi; Shigeaki Inoue; Yasuyuki Kakihana; Joji Kotani; Shigeki Kushimoto; Yoshiki Masuda; Naoyuki Matsuda; Asako Matsushima; Taka-Aki Nakada; Satoshi Nakagawa; Shin Nunomiya; Tomohito Sadahiro; Nobuaki Shime; Tomoaki Yatabe; Yoshitaka Hara; Kei Hayashida; Yutaka Kondo; Yuka Sumi; Hideto Yasuda; Kazuyoshi Aoyama; Takeo Azuhata; Kent Doi; Matsuyuki Doi; Naoyuki Fujimura; Ryota Fuke; Tatsuma Fukuda; Koji Goto; Ryuichi Hasegawa; Satoru Hashimoto; Junji Hatakeyama; Mineji Hayakawa; Toru Hifumi; Naoki Higashibeppu; Katsuki Hirai; Tomoya Hirose; Kentaro Ide; Yasuo Kaizuka; Tomomichi Kan'o; Tatsuya Kawasaki; Hiromitsu Kuroda; Akihisa Matsuda; Shotaro Matsumoto; Masaharu Nagae; Mutsuo Onodera; Tetsu Ohnuma; Kiyohiro Oshima; Nobuyuki Saito; So Sakamoto; Masaaki Sakuraya; Mikio Sasano; Norio Sato; Atsushi Sawamura; Kentaro Shimizu; Kunihiro Shirai; Tetsuhiro Takei; Muneyuki Takeuchi; Kohei Takimoto; Takumi Taniguchi; Hiroomi Tatsumi; Ryosuke Tsuruta; Naoya Yama; Kazuma Yamakawa; Chizuru Yamashita; Kazuto Yamashita; Takeshi Yoshida; Hiroshi Tanaka; Shigeto Oda
Journal:  Acute Med Surg       Date:  2018-02-05

Review 7.  [Assessment of volume responsiveness in mechanically ventilated patients].

Authors:  D A Reuter; A E Goetz; K Peter
Journal:  Anaesthesist       Date:  2003-11       Impact factor: 1.041

8.  The Japanese Clinical Practice Guidelines for Management of Sepsis and Septic Shock 2016 (J-SSCG 2016).

Authors:  Osamu Nishida; Hiroshi Ogura; Moritoki Egi; Seitaro Fujishima; Yoshiro Hayashi; Toshiaki Iba; Hitoshi Imaizumi; Shigeaki Inoue; Yasuyuki Kakihana; Joji Kotani; Shigeki Kushimoto; Yoshiki Masuda; Naoyuki Matsuda; Asako Matsushima; Taka-Aki Nakada; Satoshi Nakagawa; Shin Nunomiya; Tomohito Sadahiro; Nobuaki Shime; Tomoaki Yatabe; Yoshitaka Hara; Kei Hayashida; Yutaka Kondo; Yuka Sumi; Hideto Yasuda; Kazuyoshi Aoyama; Takeo Azuhata; Kent Doi; Matsuyuki Doi; Naoyuki Fujimura; Ryota Fuke; Tatsuma Fukuda; Koji Goto; Ryuichi Hasegawa; Satoru Hashimoto; Junji Hatakeyama; Mineji Hayakawa; Toru Hifumi; Naoki Higashibeppu; Katsuki Hirai; Tomoya Hirose; Kentaro Ide; Yasuo Kaizuka; Tomomichi Kan'o; Tatsuya Kawasaki; Hiromitsu Kuroda; Akihisa Matsuda; Shotaro Matsumoto; Masaharu Nagae; Mutsuo Onodera; Tetsu Ohnuma; Kiyohiro Oshima; Nobuyuki Saito; So Sakamoto; Masaaki Sakuraya; Mikio Sasano; Norio Sato; Atsushi Sawamura; Kentaro Shimizu; Kunihiro Shirai; Tetsuhiro Takei; Muneyuki Takeuchi; Kohei Takimoto; Takumi Taniguchi; Hiroomi Tatsumi; Ryosuke Tsuruta; Naoya Yama; Kazuma Yamakawa; Chizuru Yamashita; Kazuto Yamashita; Takeshi Yoshida; Hiroshi Tanaka; Shigeto Oda
Journal:  J Intensive Care       Date:  2018-02-02

9.  Comparison of goal-directed hemodynamic optimization using pulmonary artery catheter and transpulmonary thermodilution in combined valve repair: a randomized clinical trial.

Authors:  Andrey I Lenkin; Mikhail Y Kirov; Vsevolod V Kuzkov; Konstantin V Paromov; Alexey A Smetkin; Mons Lie; Lars J Bjertnæs
Journal:  Crit Care Res Pract       Date:  2012-04-30

10.  Global end-diastolic volume acquired by transpulmonary thermodilution depends on age and gender in awake and spontaneously breathing patients.

Authors:  Stefan Wolf; Alexander Riess; Julia F Landscheidt; Christianto B Lumenta; Patrick Friederich; Ludwig Schürer
Journal:  Crit Care       Date:  2009-12-14       Impact factor: 9.097

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