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Published in: Journal of Anesthesia 4/2018

01-08-2018 | Original Article

Evaluation of external reference levels for central venous pressure measurements of severely obese patients in the supine position

Authors: Kazuyuki Mizunoya, Hitoshi Saito, Yuji Morimoto

Published in: Journal of Anesthesia | Issue 4/2018

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Abstract

Purpose

A proper reference level is important for measuring intracardiac pressures, especially for parameters with small normal values such as central venous pressure (CVP). Although several external zero reference levels (eZRLs) have been proposed for non-obese patients, none has been reported for severely obese patients. The aim of this study was to investigate an appropriate eZRL for CVP measurements of severely obese patients.

Methods

Chest computed tomography images of 65 patients with body mass index (BMI) ≥ 35 kg/m2 were retrospectively reviewed. The anteroposterior thoracic diameter and height of the mid-right atrium (RA) were measured. Four reported eZRLs for CVP measurements (midthoracic level, two-thirds and four-fifths of the thoracic diameter above table level, and 5 cm below the anterior thorax) were examined for error when predicting the midpoint of the RA.

Results

The median BMI was 36.9 kg/m2 [interquartile range (IQR), 36.0–39.2]. There was a significant difference in the calculated errors for the midpoint of the RA among the four eZRLs (Kruskal–Wallis test, P < 0.001). Two-thirds of the thoracic diameter above table level was the most accurate reference level for CVP measurement (Steel–Dwass post hoc analysis, P < 0.001). The Bland–Altman plot showed acceptable agreement for clinical use (mean difference, − 7 mm; 95% limit of agreement, − 23 to 9 mm).

Conclusion

The most accurate eZRL for CVP measurements of severely obese patients in the supine position was two-thirds of the thoracic diameter above table level. This result is consistent with that of a previous report of non-obese patients.
Literature
1.
go back to reference Michard F, Teboul JL. Predicting fluid responsiveness in ICU patients: a critical analysis of the evidence. Chest. 2002;121(6):2000–8.CrossRefPubMed Michard F, Teboul JL. Predicting fluid responsiveness in ICU patients: a critical analysis of the evidence. Chest. 2002;121(6):2000–8.CrossRefPubMed
2.
go back to reference Cavallaro F, Sandroni C, Antonelli M. Functional hemodynamic monitoring and dynamic indices of fluid responsiveness. Minerva Anestesiol. 2008;74(4):123–35.PubMed Cavallaro F, Sandroni C, Antonelli M. Functional hemodynamic monitoring and dynamic indices of fluid responsiveness. Minerva Anestesiol. 2008;74(4):123–35.PubMed
3.
go back to reference Magder S. Central venous pressure: a useful but not so simple measurement. Crit Care Med. 2006;34(8):2224–7.CrossRefPubMed Magder S. Central venous pressure: a useful but not so simple measurement. Crit Care Med. 2006;34(8):2224–7.CrossRefPubMed
4.
go back to reference Osman D, Ridel C, Ray P, Monnet X, Anguel N, Richard C, Teboul JL. Cardiac filling pressures are not appropriate to predict hemodynamic response to volume challenge. Crit Care Med. 2007;35(1):64–8.CrossRefPubMed Osman D, Ridel C, Ray P, Monnet X, Anguel N, Richard C, Teboul JL. Cardiac filling pressures are not appropriate to predict hemodynamic response to volume challenge. Crit Care Med. 2007;35(1):64–8.CrossRefPubMed
5.
go back to reference Marik PE, Baram M, Vahid B. Does central venous pressure predict fluid responsiveness? A systematic review of the literature and the tale of seven mares. Chest. 2008;134(1):172–8.CrossRefPubMed Marik PE, Baram M, Vahid B. Does central venous pressure predict fluid responsiveness? A systematic review of the literature and the tale of seven mares. Chest. 2008;134(1):172–8.CrossRefPubMed
6.
go back to reference Magder S. Right atrial pressure in the critically ill: how to measure, what is the value, what are the limitations? Chest. 2017;151(4):908–16.CrossRefPubMed Magder S. Right atrial pressure in the critically ill: how to measure, what is the value, what are the limitations? Chest. 2017;151(4):908–16.CrossRefPubMed
7.
go back to reference Courtois M, Fattal PG, Kovacs SJ, Tiefenbrunn AJ, Ludbrook PA. Anatomically and physiologically based reference level for measurement of intracardiac pressures. Circulation. 1995;92(7):1994–2000.CrossRefPubMed Courtois M, Fattal PG, Kovacs SJ, Tiefenbrunn AJ, Ludbrook PA. Anatomically and physiologically based reference level for measurement of intracardiac pressures. Circulation. 1995;92(7):1994–2000.CrossRefPubMed
8.
go back to reference Kee L, Simonson J, Stotts N, Skov P, Schiller N. Echocardiographic determination of valid zero reference levels in supine and lateral positions. Am J Crit Care. 1993;2(1):72–80.PubMed Kee L, Simonson J, Stotts N, Skov P, Schiller N. Echocardiographic determination of valid zero reference levels in supine and lateral positions. Am J Crit Care. 1993;2(1):72–80.PubMed
9.
go back to reference Kovacs G, Avian A, Olschewski A, Olschewski H. Zero reference level for right heart catheterisation. Eur Respir J. 2013;42(6):1586–94.CrossRefPubMed Kovacs G, Avian A, Olschewski A, Olschewski H. Zero reference level for right heart catheterisation. Eur Respir J. 2013;42(6):1586–94.CrossRefPubMed
10.
go back to reference Seo JH, Jung CW, Bahk JH. Uppermost blood levels of the right and left atria in the supine position: implication for measuring central venous pressure and pulmonary artery wedge pressure. Anesthesiology. 2007;107(2):260–3.CrossRefPubMed Seo JH, Jung CW, Bahk JH. Uppermost blood levels of the right and left atria in the supine position: implication for measuring central venous pressure and pulmonary artery wedge pressure. Anesthesiology. 2007;107(2):260–3.CrossRefPubMed
11.
go back to reference Seth R, Magner P, Matzinger F, van Walraven C. How far is the sternal angle from the mid-right atrium? J Gen Intern Med. 2002;17(11):852–6.CrossRefPubMed Seth R, Magner P, Matzinger F, van Walraven C. How far is the sternal angle from the mid-right atrium? J Gen Intern Med. 2002;17(11):852–6.CrossRefPubMed
12.
go back to reference Lyons RH, Kennedy JA, Burwell CS. The measurement of venous pressure by the direct method. Am Heart J. 1938;16(6):675–93.CrossRef Lyons RH, Kennedy JA, Burwell CS. The measurement of venous pressure by the direct method. Am Heart J. 1938;16(6):675–93.CrossRef
13.
go back to reference Kanda Y. Investigation of the freely available easy-to-use software ‘EZR’ for medical statistics. Bone Marrow Transplant. 2013;48(3):452–8.CrossRefPubMed Kanda Y. Investigation of the freely available easy-to-use software ‘EZR’ for medical statistics. Bone Marrow Transplant. 2013;48(3):452–8.CrossRefPubMed
14.
go back to reference Winsor T, Burch GE. Phlebostatic axis and phlebostatic level, reference levels for venous pressure measurements in man. Proc Soc Exp Biol Med. 1945;58(2):165–69.CrossRef Winsor T, Burch GE. Phlebostatic axis and phlebostatic level, reference levels for venous pressure measurements in man. Proc Soc Exp Biol Med. 1945;58(2):165–69.CrossRef
16.
go back to reference Song IK, Park HS, Lee JH, Kim EH, Kim HS, Bahk JH, Kim JT. Optimal level of the reference transducer for central venous pressure and pulmonary artery occlusion pressure monitoring in supine, prone, and sitting position. J Clin Monit Comput. 2017;31(2):381–86.CrossRefPubMed Song IK, Park HS, Lee JH, Kim EH, Kim HS, Bahk JH, Kim JT. Optimal level of the reference transducer for central venous pressure and pulmonary artery occlusion pressure monitoring in supine, prone, and sitting position. J Clin Monit Comput. 2017;31(2):381–86.CrossRefPubMed
17.
go back to reference Belela AS, Pedreira ML, Peterlini MA, Kusahara DM, Carvalho WB, Gentil GC. Variability in the establishment of an external reference point for central venous pressure measurement in children. Jornal de Pediatria. 2006;82(5):389–94.CrossRefPubMed Belela AS, Pedreira ML, Peterlini MA, Kusahara DM, Carvalho WB, Gentil GC. Variability in the establishment of an external reference point for central venous pressure measurement in children. Jornal de Pediatria. 2006;82(5):389–94.CrossRefPubMed
18.
go back to reference Smit M, Werner MJM, Lansink-Hartgring AO, Dieperink W, Zijlstra JG, van Meurs M. How central obesity influences intra-abdominal pressure: a prospective, observational study in cardiothoracic surgical patients. Ann Intensive Care. 2016;6(1):99.CrossRefPubMedPubMedCentral Smit M, Werner MJM, Lansink-Hartgring AO, Dieperink W, Zijlstra JG, van Meurs M. How central obesity influences intra-abdominal pressure: a prospective, observational study in cardiothoracic surgical patients. Ann Intensive Care. 2016;6(1):99.CrossRefPubMedPubMedCentral
19.
go back to reference Karahalios DG, Rekate HL, Khayata MH, Apostolides PJ. Elevated intracranial venous pressure as a universal mechanism in pseudotumor cerebri of varying etiologies. Neurology. 1996;46(1):198–202.CrossRefPubMed Karahalios DG, Rekate HL, Khayata MH, Apostolides PJ. Elevated intracranial venous pressure as a universal mechanism in pseudotumor cerebri of varying etiologies. Neurology. 1996;46(1):198–202.CrossRefPubMed
21.
go back to reference Yoshiike N, Miyoshi M. Epidemiological aspects of overweight and obesity in Japan—international comparisons. Nihon rinsho Jpn J Clin Med. 2013;71(2):207–16. Yoshiike N, Miyoshi M. Epidemiological aspects of overweight and obesity in Japan—international comparisons. Nihon rinsho Jpn J Clin Med. 2013;71(2):207–16.
22.
go back to reference Magder S. Understanding central venous pressure: not a preload index? Curr Opin Crit Care. 2015;21(5):369–75.CrossRefPubMed Magder S. Understanding central venous pressure: not a preload index? Curr Opin Crit Care. 2015;21(5):369–75.CrossRefPubMed
Metadata
Title
Evaluation of external reference levels for central venous pressure measurements of severely obese patients in the supine position
Authors
Kazuyuki Mizunoya
Hitoshi Saito
Yuji Morimoto
Publication date
01-08-2018
Publisher
Springer Japan
Published in
Journal of Anesthesia / Issue 4/2018
Print ISSN: 0913-8668
Electronic ISSN: 1438-8359
DOI
https://doi.org/10.1007/s00540-018-2513-9

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