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Increased visceral tissue perfusion with heated, humidified carbon dioxide insufflation during open abdominal surgery in a rodent model

Tissue perfusion during surgery is important in reducing surgical site infections and promoting healing. This study aimed to determine if insufflation of the open abdomen with heated, humidified (HH) carbon dioxide (CO(2)) increased visceral tissue perfusion and core body temperature during open abd...

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Autores principales: Robson, Jonathan P., Kokhanenko, Pavlo, Marshall, Jean K., Phillips, Anthony R., van der Linden, Jan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5884566/
https://www.ncbi.nlm.nih.gov/pubmed/29617447
http://dx.doi.org/10.1371/journal.pone.0195465
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author Robson, Jonathan P.
Kokhanenko, Pavlo
Marshall, Jean K.
Phillips, Anthony R.
van der Linden, Jan
author_facet Robson, Jonathan P.
Kokhanenko, Pavlo
Marshall, Jean K.
Phillips, Anthony R.
van der Linden, Jan
author_sort Robson, Jonathan P.
collection PubMed
description Tissue perfusion during surgery is important in reducing surgical site infections and promoting healing. This study aimed to determine if insufflation of the open abdomen with heated, humidified (HH) carbon dioxide (CO(2)) increased visceral tissue perfusion and core body temperature during open abdominal surgery in a rodent model. Using two different rodent models of open abdominal surgery, visceral perfusion and core temperature were measured. Visceral perfusion was investigated using a repeated measures crossover experiment with rodents receiving the same sequence of two alternating treatments: exposure to ambient air (no insufflation) and insufflation with HH CO(2). Core body temperature was measured using an independent experimental design with three treatment groups: ambient air, HH CO(2) and cold, dry (CD) CO(2). Visceral perfusion was measured by laser speckle contrast analysis (LASCA) and core body temperature was measured with a rectal thermometer. Insufflation with HH CO(2) into a rodent open abdominal cavity significantly increased visceral tissue perfusion (2.4 perfusion units (PU)/min (95% CI 1.23–3.58); p<0.0001) compared with ambient air, which significantly reduced visceral blood flow (-5.20 PU/min (95% CI -6.83- -3.58); p<0.0001). Insufflation of HH CO(2) into the open abdominal cavity significantly increased core body temperature (+1.15 ± 0.14°C) compared with open cavities exposed to ambient air (-0.65 ± 0.52°C; p = 0.037), or cavities insufflated with CD CO(2) (-0.73 ± 0.33°C; p = 0.006). Abdominal visceral temperatures also increased with HH CO(2) insufflation compared with ambient air or CD CO(2), as shown by infrared thermography. This study reports for the first time the use of LASCA to measure visceral perfusion in open abdominal surgery and shows that insufflation of open abdominal cavities with HH CO(2) significantly increases visceral tissue perfusion and core body temperature.
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spelling pubmed-58845662018-04-20 Increased visceral tissue perfusion with heated, humidified carbon dioxide insufflation during open abdominal surgery in a rodent model Robson, Jonathan P. Kokhanenko, Pavlo Marshall, Jean K. Phillips, Anthony R. van der Linden, Jan PLoS One Research Article Tissue perfusion during surgery is important in reducing surgical site infections and promoting healing. This study aimed to determine if insufflation of the open abdomen with heated, humidified (HH) carbon dioxide (CO(2)) increased visceral tissue perfusion and core body temperature during open abdominal surgery in a rodent model. Using two different rodent models of open abdominal surgery, visceral perfusion and core temperature were measured. Visceral perfusion was investigated using a repeated measures crossover experiment with rodents receiving the same sequence of two alternating treatments: exposure to ambient air (no insufflation) and insufflation with HH CO(2). Core body temperature was measured using an independent experimental design with three treatment groups: ambient air, HH CO(2) and cold, dry (CD) CO(2). Visceral perfusion was measured by laser speckle contrast analysis (LASCA) and core body temperature was measured with a rectal thermometer. Insufflation with HH CO(2) into a rodent open abdominal cavity significantly increased visceral tissue perfusion (2.4 perfusion units (PU)/min (95% CI 1.23–3.58); p<0.0001) compared with ambient air, which significantly reduced visceral blood flow (-5.20 PU/min (95% CI -6.83- -3.58); p<0.0001). Insufflation of HH CO(2) into the open abdominal cavity significantly increased core body temperature (+1.15 ± 0.14°C) compared with open cavities exposed to ambient air (-0.65 ± 0.52°C; p = 0.037), or cavities insufflated with CD CO(2) (-0.73 ± 0.33°C; p = 0.006). Abdominal visceral temperatures also increased with HH CO(2) insufflation compared with ambient air or CD CO(2), as shown by infrared thermography. This study reports for the first time the use of LASCA to measure visceral perfusion in open abdominal surgery and shows that insufflation of open abdominal cavities with HH CO(2) significantly increases visceral tissue perfusion and core body temperature. Public Library of Science 2018-04-04 /pmc/articles/PMC5884566/ /pubmed/29617447 http://dx.doi.org/10.1371/journal.pone.0195465 Text en © 2018 Robson et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Robson, Jonathan P.
Kokhanenko, Pavlo
Marshall, Jean K.
Phillips, Anthony R.
van der Linden, Jan
Increased visceral tissue perfusion with heated, humidified carbon dioxide insufflation during open abdominal surgery in a rodent model
title Increased visceral tissue perfusion with heated, humidified carbon dioxide insufflation during open abdominal surgery in a rodent model
title_full Increased visceral tissue perfusion with heated, humidified carbon dioxide insufflation during open abdominal surgery in a rodent model
title_fullStr Increased visceral tissue perfusion with heated, humidified carbon dioxide insufflation during open abdominal surgery in a rodent model
title_full_unstemmed Increased visceral tissue perfusion with heated, humidified carbon dioxide insufflation during open abdominal surgery in a rodent model
title_short Increased visceral tissue perfusion with heated, humidified carbon dioxide insufflation during open abdominal surgery in a rodent model
title_sort increased visceral tissue perfusion with heated, humidified carbon dioxide insufflation during open abdominal surgery in a rodent model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5884566/
https://www.ncbi.nlm.nih.gov/pubmed/29617447
http://dx.doi.org/10.1371/journal.pone.0195465
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