Early Identification of Acute Traumatic Coagulopathy Using Clinical Prediction Tools: A Systematic Review

<i>Background and objectives:</i> Prompt identification of patients with acute traumatic coagulopathy (ATC) is necessary to expedite appropriate treatment. An early clinical prediction tool that does not require laboratory testing is a convenient way to estimate risk. Prediction models h...

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Main Authors: Sophie Thorn, Helge Güting, Marc Maegele, Russell L. Gruen, Biswadev Mitra
Format: Article
Language:English
Published: MDPI AG 2019-09-01
Series:Medicina
Subjects:
Online Access:https://www.mdpi.com/1010-660X/55/10/653
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spelling doaj-a2301446e39044c282930af2968b887a2020-11-25T01:35:59ZengMDPI AGMedicina1010-660X2019-09-01551065310.3390/medicina55100653medicina55100653Early Identification of Acute Traumatic Coagulopathy Using Clinical Prediction Tools: A Systematic ReviewSophie Thorn0Helge Güting1Marc Maegele2Russell L. Gruen3Biswadev Mitra4School of Public Health and Preventive Medicine, Monash University, Melbourne 3004, AustraliaInstitute for Research in Operative Medicine, University Witten/Herdecke, 51109 Cologne, GermanyInstitute for Research in Operative Medicine, University Witten/Herdecke, 51109 Cologne, GermanyANU Medical School, Australian National University, Canberra 2605, AustraliaSchool of Public Health and Preventive Medicine, Monash University, Melbourne 3004, Australia<i>Background and objectives:</i> Prompt identification of patients with acute traumatic coagulopathy (ATC) is necessary to expedite appropriate treatment. An early clinical prediction tool that does not require laboratory testing is a convenient way to estimate risk. Prediction models have been developed, but none are in widespread use. This systematic review aimed to identify and assess accuracy of prediction tools for ATC. <i>Materials and Methods:</i> A search of OVID Medline and Embase was performed for articles published between January 1998 and February 2018. We searched for prognostic and predictive studies of coagulopathy in adult trauma patients. Studies that described stand-alone predictive or associated factors were excluded. Studies describing prediction of laboratory-diagnosed ATC were extracted. Performance of these tools was described. <i>Results</i>: Six studies were identified describing four different ATC prediction tools. The COAST score uses five prehospital variables (blood pressure, temperature, chest decompression, vehicular entrapment and abdominal injury) and performed with 60% sensitivity and 96% specificity to identify an International Normalised Ratio (INR) of &gt;1.5 on an Australian single centre cohort. TICCS predicted an INR of &gt;1.3 in a small Belgian cohort with 100% sensitivity and 96% specificity based on admissions to resuscitation rooms, blood pressure and injury distribution but performed with an Area under the Receiver Operating Characteristic (AUROC) curve of 0.700 on a German trauma registry validation. Prediction of Acute Coagulopathy of Trauma (PACT) was developed in USA using six weighted variables (shock index, age, mechanism of injury, Glasgow Coma Scale, cardiopulmonary resuscitation, intubation) and predicted an INR of &gt;1.5 with 73.1% sensitivity and 73.8% specificity. The Bayesian network model is an artificial intelligence system that predicted a prothrombin time ratio of &gt;1.2 based on 14 clinical variables with 90% sensitivity and 92% specificity. <i>Conclusions</i>: The search for ATC prediction models yielded four scoring systems. While there is some potential to be implemented effectively in clinical practice, none have been sufficiently externally validated to demonstrate associations with patient outcomes. These tools remain useful for research purposes to identify populations at risk of ATC.https://www.mdpi.com/1010-660X/55/10/653acute traumatic coagulopathyprediction modelpre-hospitalbleedingtrauma
collection DOAJ
language English
format Article
sources DOAJ
author Sophie Thorn
Helge Güting
Marc Maegele
Russell L. Gruen
Biswadev Mitra
spellingShingle Sophie Thorn
Helge Güting
Marc Maegele
Russell L. Gruen
Biswadev Mitra
Early Identification of Acute Traumatic Coagulopathy Using Clinical Prediction Tools: A Systematic Review
Medicina
acute traumatic coagulopathy
prediction model
pre-hospital
bleeding
trauma
author_facet Sophie Thorn
Helge Güting
Marc Maegele
Russell L. Gruen
Biswadev Mitra
author_sort Sophie Thorn
title Early Identification of Acute Traumatic Coagulopathy Using Clinical Prediction Tools: A Systematic Review
title_short Early Identification of Acute Traumatic Coagulopathy Using Clinical Prediction Tools: A Systematic Review
title_full Early Identification of Acute Traumatic Coagulopathy Using Clinical Prediction Tools: A Systematic Review
title_fullStr Early Identification of Acute Traumatic Coagulopathy Using Clinical Prediction Tools: A Systematic Review
title_full_unstemmed Early Identification of Acute Traumatic Coagulopathy Using Clinical Prediction Tools: A Systematic Review
title_sort early identification of acute traumatic coagulopathy using clinical prediction tools: a systematic review
publisher MDPI AG
series Medicina
issn 1010-660X
publishDate 2019-09-01
description <i>Background and objectives:</i> Prompt identification of patients with acute traumatic coagulopathy (ATC) is necessary to expedite appropriate treatment. An early clinical prediction tool that does not require laboratory testing is a convenient way to estimate risk. Prediction models have been developed, but none are in widespread use. This systematic review aimed to identify and assess accuracy of prediction tools for ATC. <i>Materials and Methods:</i> A search of OVID Medline and Embase was performed for articles published between January 1998 and February 2018. We searched for prognostic and predictive studies of coagulopathy in adult trauma patients. Studies that described stand-alone predictive or associated factors were excluded. Studies describing prediction of laboratory-diagnosed ATC were extracted. Performance of these tools was described. <i>Results</i>: Six studies were identified describing four different ATC prediction tools. The COAST score uses five prehospital variables (blood pressure, temperature, chest decompression, vehicular entrapment and abdominal injury) and performed with 60% sensitivity and 96% specificity to identify an International Normalised Ratio (INR) of &gt;1.5 on an Australian single centre cohort. TICCS predicted an INR of &gt;1.3 in a small Belgian cohort with 100% sensitivity and 96% specificity based on admissions to resuscitation rooms, blood pressure and injury distribution but performed with an Area under the Receiver Operating Characteristic (AUROC) curve of 0.700 on a German trauma registry validation. Prediction of Acute Coagulopathy of Trauma (PACT) was developed in USA using six weighted variables (shock index, age, mechanism of injury, Glasgow Coma Scale, cardiopulmonary resuscitation, intubation) and predicted an INR of &gt;1.5 with 73.1% sensitivity and 73.8% specificity. The Bayesian network model is an artificial intelligence system that predicted a prothrombin time ratio of &gt;1.2 based on 14 clinical variables with 90% sensitivity and 92% specificity. <i>Conclusions</i>: The search for ATC prediction models yielded four scoring systems. While there is some potential to be implemented effectively in clinical practice, none have been sufficiently externally validated to demonstrate associations with patient outcomes. These tools remain useful for research purposes to identify populations at risk of ATC.
topic acute traumatic coagulopathy
prediction model
pre-hospital
bleeding
trauma
url https://www.mdpi.com/1010-660X/55/10/653
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