Analysis of damping characteristics of arterial catheter blood pressure monitoring in a large intensive care unit

Background. For many reasons, the invasive measurement of systolic and diastolic blood pressure should be accurate. Accuracy is determined, in part, by the damping characteristics of the arterial catheter blood pressure monitoring system.Objectives. To ascertain the damping characteristics of arteri...

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Main Authors: W H Rook, J D Turner, T H Clutton-Brock
Format: Article
Language:English
Published: Health and Medical Publishing Group 2017-07-01
Series:Southern African Journal of Critical Care
Online Access:http://www.sajcc.org.za/index.php/sajcc/article/download/300/270
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spelling doaj-2a32cb00e3514b06974b3cba4d8af5202020-11-24T23:18:12ZengHealth and Medical Publishing GroupSouthern African Journal of Critical Care1562-82642078-676X2017-07-0133181110.7196/300Analysis of damping characteristics of arterial catheter blood pressure monitoring in a large intensive care unitW H RookJ D TurnerT H Clutton-BrockBackground. For many reasons, the invasive measurement of systolic and diastolic blood pressure should be accurate. Accuracy is determined, in part, by the damping characteristics of the arterial catheter blood pressure monitoring system.Objectives. To ascertain the damping characteristics of arterial catheter blood pressure monitoring in a large tertiary intensive care unit (ICU) and to elicit any causes of under- or over-damping of the measurement systems.Methods. A cross-sectional, observational study of arterial line measurements in a large general ICU. The coefficient of damping (CoD) was calculated from the waveform generated from a ‘fast flush’.Results. Thirty systems (19%) were adequately damped (CoD 0.4 - 0.8), 56 (37%) were overdamped, and 68 (44%) were underdamped. We did not find that poor damping characteristics were associated with the age of the arterial catheter or the type of catheter used.Conclusion. Most systems observed in this study were inappropriately damped, which would result in the inaccurate display of the waveform and systolic and diastolic pressures.http://www.sajcc.org.za/index.php/sajcc/article/download/300/270
collection DOAJ
language English
format Article
sources DOAJ
author W H Rook
J D Turner
T H Clutton-Brock
spellingShingle W H Rook
J D Turner
T H Clutton-Brock
Analysis of damping characteristics of arterial catheter blood pressure monitoring in a large intensive care unit
Southern African Journal of Critical Care
author_facet W H Rook
J D Turner
T H Clutton-Brock
author_sort W H Rook
title Analysis of damping characteristics of arterial catheter blood pressure monitoring in a large intensive care unit
title_short Analysis of damping characteristics of arterial catheter blood pressure monitoring in a large intensive care unit
title_full Analysis of damping characteristics of arterial catheter blood pressure monitoring in a large intensive care unit
title_fullStr Analysis of damping characteristics of arterial catheter blood pressure monitoring in a large intensive care unit
title_full_unstemmed Analysis of damping characteristics of arterial catheter blood pressure monitoring in a large intensive care unit
title_sort analysis of damping characteristics of arterial catheter blood pressure monitoring in a large intensive care unit
publisher Health and Medical Publishing Group
series Southern African Journal of Critical Care
issn 1562-8264
2078-676X
publishDate 2017-07-01
description Background. For many reasons, the invasive measurement of systolic and diastolic blood pressure should be accurate. Accuracy is determined, in part, by the damping characteristics of the arterial catheter blood pressure monitoring system.Objectives. To ascertain the damping characteristics of arterial catheter blood pressure monitoring in a large tertiary intensive care unit (ICU) and to elicit any causes of under- or over-damping of the measurement systems.Methods. A cross-sectional, observational study of arterial line measurements in a large general ICU. The coefficient of damping (CoD) was calculated from the waveform generated from a ‘fast flush’.Results. Thirty systems (19%) were adequately damped (CoD 0.4 - 0.8), 56 (37%) were overdamped, and 68 (44%) were underdamped. We did not find that poor damping characteristics were associated with the age of the arterial catheter or the type of catheter used.Conclusion. Most systems observed in this study were inappropriately damped, which would result in the inaccurate display of the waveform and systolic and diastolic pressures.
url http://www.sajcc.org.za/index.php/sajcc/article/download/300/270
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AT thcluttonbrock analysisofdampingcharacteristicsofarterialcatheterbloodpressuremonitoringinalargeintensivecareunit
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