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Exploring the Feasibility of Calculating Expected pCO2 From Venous Blood Gas Samples Alone in Intensive Care Patients

Introduction This study highlights the significance of assessing acid-base balance and gas exchange in intensive care patients. The research investigates the applicability of using the "expected (pCO(2) = HCO(3) + 15)" formula, derived from venous blood gas samples, as an alternative to Wi...

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Detalles Bibliográficos
Autores principales: Turhan, Semin, Tutan, Duygu, Şahiner, Yeliz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cureus 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10475245/
https://www.ncbi.nlm.nih.gov/pubmed/37667706
http://dx.doi.org/10.7759/cureus.42944
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author Turhan, Semin
Tutan, Duygu
Şahiner, Yeliz
author_facet Turhan, Semin
Tutan, Duygu
Şahiner, Yeliz
author_sort Turhan, Semin
collection PubMed
description Introduction This study highlights the significance of assessing acid-base balance and gas exchange in intensive care patients. The research investigates the applicability of using the "expected (pCO(2) = HCO(3) + 15)" formula, derived from venous blood gas samples, as an alternative to Winter's formula and practical formula. The study emphasizes the importance of identifying the primary acid-base abnormality accurately and efficiently for appropriate clinical intervention in critically ill patients. Methods  This study included 400 adult patients admitted to the Anesthesia Clinic in the Third Stage Anesthesia and Reanimation Intensive Care Unit at Hitit University Erol Olçok Training and Research Hospital between April 2020 and July 2023. Blood gas samples were collected simultaneously from both arterial lines and venous catheters. Patients under 18 years, pregnant women, hemodialysis patients, and those with missing data were excluded. The study aimed to calculate the expected partial pressure of carbon dioxide (pCO(2)) values using Winter's formula and simple formula for both arterial and venous blood gas samples and assess potential correlations between them. Results The results showed a narrow range for arterial pH values (7.12-7.72), a wider distribution for pCO(2) values (17.90-81.30 mmHg), and a moderate dispersion for HCO(3) values (12.80-44.33 mmol/L). Both Winter's and simple formulas were applied to estimate the expected pCO(2) values, showing strong positive correlations between arterial and venous pH, pCO(2), and HCO(3) values. The scatterplot illustrated a very high level of association (Pearson's correlation coefficient, r = 1) between the expected pCO(2) values derived from both formulas using arterial and venous blood gas samples. Conclusion The clinical study demonstrates that estimating expected pCO(2) values in mixed acid-base disorders can be achieved using a simple and convenient formulation, eliminating the need for arterial blood gas sampling and its associated complications.
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spelling pubmed-104752452023-09-04 Exploring the Feasibility of Calculating Expected pCO2 From Venous Blood Gas Samples Alone in Intensive Care Patients Turhan, Semin Tutan, Duygu Şahiner, Yeliz Cureus Anesthesiology Introduction This study highlights the significance of assessing acid-base balance and gas exchange in intensive care patients. The research investigates the applicability of using the "expected (pCO(2) = HCO(3) + 15)" formula, derived from venous blood gas samples, as an alternative to Winter's formula and practical formula. The study emphasizes the importance of identifying the primary acid-base abnormality accurately and efficiently for appropriate clinical intervention in critically ill patients. Methods  This study included 400 adult patients admitted to the Anesthesia Clinic in the Third Stage Anesthesia and Reanimation Intensive Care Unit at Hitit University Erol Olçok Training and Research Hospital between April 2020 and July 2023. Blood gas samples were collected simultaneously from both arterial lines and venous catheters. Patients under 18 years, pregnant women, hemodialysis patients, and those with missing data were excluded. The study aimed to calculate the expected partial pressure of carbon dioxide (pCO(2)) values using Winter's formula and simple formula for both arterial and venous blood gas samples and assess potential correlations between them. Results The results showed a narrow range for arterial pH values (7.12-7.72), a wider distribution for pCO(2) values (17.90-81.30 mmHg), and a moderate dispersion for HCO(3) values (12.80-44.33 mmol/L). Both Winter's and simple formulas were applied to estimate the expected pCO(2) values, showing strong positive correlations between arterial and venous pH, pCO(2), and HCO(3) values. The scatterplot illustrated a very high level of association (Pearson's correlation coefficient, r = 1) between the expected pCO(2) values derived from both formulas using arterial and venous blood gas samples. Conclusion The clinical study demonstrates that estimating expected pCO(2) values in mixed acid-base disorders can be achieved using a simple and convenient formulation, eliminating the need for arterial blood gas sampling and its associated complications. Cureus 2023-08-04 /pmc/articles/PMC10475245/ /pubmed/37667706 http://dx.doi.org/10.7759/cureus.42944 Text en Copyright © 2023, Turhan et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Anesthesiology
Turhan, Semin
Tutan, Duygu
Şahiner, Yeliz
Exploring the Feasibility of Calculating Expected pCO2 From Venous Blood Gas Samples Alone in Intensive Care Patients
title Exploring the Feasibility of Calculating Expected pCO2 From Venous Blood Gas Samples Alone in Intensive Care Patients
title_full Exploring the Feasibility of Calculating Expected pCO2 From Venous Blood Gas Samples Alone in Intensive Care Patients
title_fullStr Exploring the Feasibility of Calculating Expected pCO2 From Venous Blood Gas Samples Alone in Intensive Care Patients
title_full_unstemmed Exploring the Feasibility of Calculating Expected pCO2 From Venous Blood Gas Samples Alone in Intensive Care Patients
title_short Exploring the Feasibility of Calculating Expected pCO2 From Venous Blood Gas Samples Alone in Intensive Care Patients
title_sort exploring the feasibility of calculating expected pco2 from venous blood gas samples alone in intensive care patients
topic Anesthesiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10475245/
https://www.ncbi.nlm.nih.gov/pubmed/37667706
http://dx.doi.org/10.7759/cureus.42944
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