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Updated: Jan 11, 2026

Microfluidics in Assessing Platelet Function
Published on: November 8, 2024
Viscoelastic coagulation testing in bleeding trauma patients: a retrospective analysis and development of a treatment
Nikolaus Hofmann1, Herbert Schöchl2, Daniel Oberladstätter3
1Clinical Division of General Anaesthesia and Intensive Care Medicine, Department of Anaesthesia, Intensive Care Medicine and Pain Medicine, Medical University of Vienna, Vienna, Austria; The Research Centre in cooperation with AUVA, Ludwig Boltzmann Institute for Traumatology, Vienna, Austria.
Background:
Viscoelastic coagulation testing (VET) is a key tool for the early diagnosis and treatment of trauma-induced coagulopathy. However, differences exist between VET technologies. Our aim was to identify viscoelastic test thresholds for the ClotPro® analyser, and propose an approach to establishing a VET algorithm for the early management of trauma patients that aligns with current guidelines.
Methods:
ClotPro® data were collected from trauma patients upon arrival, during surgical care, and throughout their ICU stay. Standard coagulation tests including prothrombin time index <70% or international normalised ratio >1.2, fibrinogen concentration <150 mg dl-1, and platelet count <50 and <100 G L-1 were compared with ClotPro® parameters from the extrinsically activated thromboelastometric test (EX-Test) and extrinsically activated test plus cytochalasin and tirofiban (FIB-Test), including clotting time, clot amplitude at 5 and 10 min running time (CA5/CA10), maximum clot firmness, and platelet contribution to clot firmness. On the basis of these data, we developed an algorithm for the early treatment of trauma-induced coagulopathy.
Results:
We included 375 patients (67.8% male) with a median injury severity score of 16 (interquartile range, 9-27). Receiver operating characteristic curve analysis for detecting an international normalised ratio >1.2 using EX-Test clotting time yielded an area under the receiver operating characteristic curve (AUC) of 0.71. Detection of fibrinogen <150 mg dl-1 using FIB-Test CA5 showed an AUC of 0.96. Platelet counts <50 and <100 G L-1 were detected by CA5-derived platelet contribution, with AUCs of 0.93 and 0.94, respectively.
Conclusions:
These ClotPro® cut-off values allow for early and reliable detection of hypofibrinogenaemia and thrombocytopenia. Only after correction of fibrinogen and platelet deficits should prolonged CT be considered a weak marker for the augmentation of coagulation factors.
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