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Published in: Neurocritical Care 3/2021

01-06-2021 | Coronavirus | Original Work

Anticoagulation use and Hemorrhagic Stroke in SARS-CoV-2 Patients Treated at a New York Healthcare System

Authors: Alexandra Kvernland, Arooshi Kumar, Shadi Yaghi, Eytan Raz, Jennifer Frontera, Ariane Lewis, Barry Czeisler, D. Ethan Kahn, Ting Zhou, Koto Ishida, Jose Torres, Howard A. Riina, Maksim Shapiro, Erez Nossek, Peter K. Nelson, Omar Tanweer, David Gordon, Rajan Jain, Seena Dehkharghani, Nils Henninger, Adam de Havenon, Brian Mac Grory, Aaron Lord, Kara Melmed

Published in: Neurocritical Care | Issue 3/2021

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Abstract

Background and Purpose

While the thrombotic complications of COVID-19 have been well described, there are limited data on clinically significant bleeding complications including hemorrhagic stroke. The clinical characteristics, underlying stroke mechanism, and outcomes in this particular subset of patients are especially salient as therapeutic anticoagulation becomes increasingly common in the treatment and prevention of thrombotic complications of COVID-19.

Methods

We conducted a retrospective cohort study of patients with hemorrhagic stroke (both non-traumatic intracerebral hemorrhage and spontaneous non-aneurysmal subarachnoid hemorrhage) who were hospitalized between March 1, 2020, and May 15, 2020, within a major healthcare system in New York, during the coronavirus pandemic. Patients with hemorrhagic stroke on admission and who developed hemorrhage during hospitalization were both included. We compared the clinical characteristics of patients with hemorrhagic stroke and COVID-19 to those without COVID-19 admitted to our hospital system between March 1, 2020, and May 15, 2020 (contemporary controls), and March 1, 2019, and May 15, 2019 (historical controls). Demographic variables and clinical characteristics between the individual groups were compared using Fischer’s exact test for categorical variables and nonparametric test for continuous variables. We adjusted for multiple comparisons using the Bonferroni method.

Results

During the study period in 2020, out of 4071 patients who were hospitalized with COVID-19, we identified 19 (0.5%) with hemorrhagic stroke. Of all COVID-19 with hemorrhagic stroke, only three had isolated non-aneurysmal SAH with no associated intraparenchymal hemorrhage. Among hemorrhagic stroke in patients with COVID-19, coagulopathy was the most common etiology (73.7%); empiric anticoagulation was started in 89.5% of these patients versus 4.2% in contemporary controls (p ≤ .001) and 10.0% in historical controls (p ≤ .001). Compared to contemporary and historical controls, patients with COVID-19 had higher initial NIHSS scores, INR, PTT, and fibrinogen levels. Patients with COVID-19 also had higher rates of in-hospital mortality (84.6% vs. 4.6%, p ≤ 0.001). Sensitivity analyses excluding patients with strictly subarachnoid hemorrhage yielded similar results.

Conclusion

We observed an overall low rate of imaging-confirmed hemorrhagic stroke among patients hospitalized with COVID-19. Most hemorrhages in patients with COVID-19 infection occurred in the setting of therapeutic anticoagulation and were associated with increased mortality. Further studies are needed to evaluate the safety and efficacy of therapeutic anticoagulation in patients with COVID-19.
Literature
2.
go back to reference Dogra SJR, Cao M, et al. Hemorrhagic stroke and anticoagulation in covid-19. J Stroke Cerebrovasc Dis. 2020;29:104984.CrossRef Dogra SJR, Cao M, et al. Hemorrhagic stroke and anticoagulation in covid-19. J Stroke Cerebrovasc Dis. 2020;29:104984.CrossRef
3.
go back to reference Mao L, Jin H, Wang M, Hu Y, Chen S, He Q, et al. Neurologic manifestations of hospitalized patients with coronavirus disease 2019 in Wuhan, china. JAMA Neurol. 2020;77:683.CrossRef Mao L, Jin H, Wang M, Hu Y, Chen S, He Q, et al. Neurologic manifestations of hospitalized patients with coronavirus disease 2019 in Wuhan, china. JAMA Neurol. 2020;77:683.CrossRef
4.
go back to reference Oxley TJ, Mocco J, Majidi S, Kellner CP, Shoirah H, Singh IP, et al. Large-vessel stroke as a presenting feature of covid-19 in the young. N Engl J Med. 2020;382:e60.CrossRef Oxley TJ, Mocco J, Majidi S, Kellner CP, Shoirah H, Singh IP, et al. Large-vessel stroke as a presenting feature of covid-19 in the young. N Engl J Med. 2020;382:e60.CrossRef
5.
go back to reference Yaghi S, Ishida K, Torres J, Mac Grory B, Raz E, Humbert K, et al. Sars2-cov-2 and stroke in a New York healthcare system. Stroke. 2020;51:2002.CrossRef Yaghi S, Ishida K, Torres J, Mac Grory B, Raz E, Humbert K, et al. Sars2-cov-2 and stroke in a New York healthcare system. Stroke. 2020;51:2002.CrossRef
9.
go back to reference Kothari RU, Brott T, Broderick JP, Barsan WG, Sauerbeck LR, Zuccarello M, et al. The ABCs of measuring intracerebral hemorrhage volumes. Stroke. 1996;27:1304–5.CrossRef Kothari RU, Brott T, Broderick JP, Barsan WG, Sauerbeck LR, Zuccarello M, et al. The ABCs of measuring intracerebral hemorrhage volumes. Stroke. 1996;27:1304–5.CrossRef
10.
go back to reference Hemphill JC 3rd, Bonovich DC, Besmertis L, Manley GT, Johnston SC. The ICH score: A simple, reliable grading scale for intracerebral hemorrhage. Stroke. 2001;32:891–7.CrossRef Hemphill JC 3rd, Bonovich DC, Besmertis L, Manley GT, Johnston SC. The ICH score: A simple, reliable grading scale for intracerebral hemorrhage. Stroke. 2001;32:891–7.CrossRef
11.
go back to reference Connors JM, Levy JH. Covid-19 and its implications for thrombosis and anticoagulation. Blood. 2020;135:2033.CrossRef Connors JM, Levy JH. Covid-19 and its implications for thrombosis and anticoagulation. Blood. 2020;135:2033.CrossRef
12.
go back to reference Goeijenbier M, van Wissen M, van de Weg C, Jong E, Gerdes VE, Meijers JC, et al. Review: viral infections and mechanisms of thrombosis and bleeding. J Med Virol. 2012;84:1680–96.CrossRef Goeijenbier M, van Wissen M, van de Weg C, Jong E, Gerdes VE, Meijers JC, et al. Review: viral infections and mechanisms of thrombosis and bleeding. J Med Virol. 2012;84:1680–96.CrossRef
13.
go back to reference Panigada M, Bottino N, Tagliabue P, Grasselli G, Novembrino C, Chantarangkul V, et al. Hypercoagulability of COVID-19 patients in intensive care unit: a report of thromboelastography findings and other parameters of hemostasis. J Thromb Haemost. 2020;18:1738–42.CrossRef Panigada M, Bottino N, Tagliabue P, Grasselli G, Novembrino C, Chantarangkul V, et al. Hypercoagulability of COVID-19 patients in intensive care unit: a report of thromboelastography findings and other parameters of hemostasis. J Thromb Haemost. 2020;18:1738–42.CrossRef
14.
go back to reference Klok FA, Kruip M, van der Meer NJM, Arbous MS, Gommers D, Kant KM, et al. Incidence of thrombotic complications in critically ill ICU patients with COVID-19. Thromb Res. 2020;191:1248. Klok FA, Kruip M, van der Meer NJM, Arbous MS, Gommers D, Kant KM, et al. Incidence of thrombotic complications in critically ill ICU patients with COVID-19. Thromb Res. 2020;191:1248.
18.
go back to reference Vonck K, Garrez I, De Herdt V, Hemelsoet D, Laureys G, Raedt R, et al. Neurological manifestations and neuro-invasive mechanisms of the severe acute respiratory syndrome coronavirus type 2. Eur J Neurol. 2020;27:1578.CrossRef Vonck K, Garrez I, De Herdt V, Hemelsoet D, Laureys G, Raedt R, et al. Neurological manifestations and neuro-invasive mechanisms of the severe acute respiratory syndrome coronavirus type 2. Eur J Neurol. 2020;27:1578.CrossRef
19.
go back to reference Wu Y, Xu X, Chen Z, Duan J, Hashimoto K, Yang L, et al. Nervous system involvement after infection with covid-19 and other coronaviruses. Brain Behav Immun. 2020;87:18.CrossRef Wu Y, Xu X, Chen Z, Duan J, Hashimoto K, Yang L, et al. Nervous system involvement after infection with covid-19 and other coronaviruses. Brain Behav Immun. 2020;87:18.CrossRef
20.
go back to reference Ackermann M, Verleden SE, Kuehnel M, Haverich A, Welte T, Laenger F, et al. Pulmonary vascular endothelialitis, thrombosis, and angiogenesis in covid-19. N Engl J Med. 2020;383:120.CrossRef Ackermann M, Verleden SE, Kuehnel M, Haverich A, Welte T, Laenger F, et al. Pulmonary vascular endothelialitis, thrombosis, and angiogenesis in covid-19. N Engl J Med. 2020;383:120.CrossRef
22.
go back to reference Seiffge DJ, Werring DJ, Paciaroni M, Dawson J, Warach S, Milling TJ, et al. Timing of anticoagulation after recent ischaemic stroke in patients with atrial fibrillation. Lancet Neurol. 2019;18:117–26.CrossRef Seiffge DJ, Werring DJ, Paciaroni M, Dawson J, Warach S, Milling TJ, et al. Timing of anticoagulation after recent ischaemic stroke in patients with atrial fibrillation. Lancet Neurol. 2019;18:117–26.CrossRef
23.
go back to reference Paciaroni M, Agnelli G, Falocci N, Caso V, Becattini C, Marcheselli S, et al. Early recurrence and cerebral bleeding in patients with acute ischemic stroke and atrial fibrillation: effect of anticoagulation and its timing: The raf study. Stroke. 2015;46:2175–82.CrossRef Paciaroni M, Agnelli G, Falocci N, Caso V, Becattini C, Marcheselli S, et al. Early recurrence and cerebral bleeding in patients with acute ischemic stroke and atrial fibrillation: effect of anticoagulation and its timing: The raf study. Stroke. 2015;46:2175–82.CrossRef
24.
go back to reference Altavilla R, Caso V, Bandini F, Agnelli G, Tsivgoulis G, Yaghi S, et al. Anticoagulation after stroke in patients with atrial fibrillation. Stroke. 2019;50:2093–100.CrossRef Altavilla R, Caso V, Bandini F, Agnelli G, Tsivgoulis G, Yaghi S, et al. Anticoagulation after stroke in patients with atrial fibrillation. Stroke. 2019;50:2093–100.CrossRef
25.
go back to reference Divani AA, Majidi S, Luo X, Souslian FG, Zhang J, Abosch A, et al. The abcs of accurate volumetric measurement of cerebral hematoma. Stroke. 2011;42:1569–74.CrossRef Divani AA, Majidi S, Luo X, Souslian FG, Zhang J, Abosch A, et al. The abcs of accurate volumetric measurement of cerebral hematoma. Stroke. 2011;42:1569–74.CrossRef
26.
go back to reference Salazar P, Di Napoli M, Jafari M, Jafarli A, Ziai W, Petersen A, et al. Exploration of multiparameter hematoma 3d image analysis for predicting outcome after intracerebral hemorrhage. Neurocrit Care. 2020;32:539–49.CrossRef Salazar P, Di Napoli M, Jafari M, Jafarli A, Ziai W, Petersen A, et al. Exploration of multiparameter hematoma 3d image analysis for predicting outcome after intracerebral hemorrhage. Neurocrit Care. 2020;32:539–49.CrossRef
Metadata
Title
Anticoagulation use and Hemorrhagic Stroke in SARS-CoV-2 Patients Treated at a New York Healthcare System
Authors
Alexandra Kvernland
Arooshi Kumar
Shadi Yaghi
Eytan Raz
Jennifer Frontera
Ariane Lewis
Barry Czeisler
D. Ethan Kahn
Ting Zhou
Koto Ishida
Jose Torres
Howard A. Riina
Maksim Shapiro
Erez Nossek
Peter K. Nelson
Omar Tanweer
David Gordon
Rajan Jain
Seena Dehkharghani
Nils Henninger
Adam de Havenon
Brian Mac Grory
Aaron Lord
Kara Melmed
Publication date
01-06-2021
Publisher
Springer US
Published in
Neurocritical Care / Issue 3/2021
Print ISSN: 1541-6933
Electronic ISSN: 1556-0961
DOI
https://doi.org/10.1007/s12028-020-01077-0

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