Clinical Research
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Year 2023, Volume: 5 Issue: 1, 107 - 14, 15.01.2023
https://doi.org/10.37990/medr.1176092

Abstract

References

  • 1. Xu S, Huang R, Sy LS, et al. COVID-19 Vaccination and Non-COVID-19 Mortality Risk - Seven Integrated Health Care Organizations, United States, December 14, 2020-July 31, 2021. MMWR Morb Mortal Wkly Rep. 2021;70:1520-24.
  • 2. Godoy LC, Goligher EC, Lawler PR, et al. Anticipating and managing coagulopathy and thrombotic manifestations of severe COVID-19. CMAJ. 2020;192:E1156-61.
  • 3. Singer DE, Chang Y, Borowsky LH, et al. A new risk scheme to predict ischemic stroke and other thromboembolism in atrial fibrillation: the ATRIA study stroke risk score. J Am Heart Assoc. 2013;2:e000250.
  • 4. Van Den Ham HA, Klungel OH, Singer DE, et al. Comparative performance of ATRIA, CHADS2, and CHA2DS2-VASc risk scores predicting stroke Comparison of the ATRIA, CHADS2, and CHA2DS2-VASc stroke risk scores 3209in patients with atrial fibrillation in a national primary care database and the impact on treatment decisions. J Am Coll Cardiol. 2015;66:1851-9.
  • 5. Cetinkal G, Kocas BB, Ser OS, et al. Assessment of the Modified CHA2DS2VASc Risk Score in Predicting Mortality in Patients Hospitalized With COVID-19. Am J Cardiol. 2020;135:143-9.
  • 6. Quisi A, Alıcı G, Harbalıoğlu H, et al. The CHA2DS2-VASc score and in-hospital mortality in patients with COVID-19: A multicenter retrospective cohort study. Turk Kardiyol Dern Ars. 2020;48:656-63.
  • 7. Al Abbasi B, Torres P, Ramos-Tuarez F, et al. Cardiac Troponin-I and COVID-19: A Prognostic Tool for In-Hospital Mortality. Cardiol Res. 2020;11:398-404.
  • 8. The Republic of Turkey Ministry of Health. COVID-19 (SARS-CoV-2 Infection) (Study of Scientific Board) General Information, Epidemiology and Diagnosis.2020. Website https://covid19.saglik.gov.tr/Eklenti/39061/0/covid-19rehberieriskinhastatedavisipdf.pdf accessed date 9 November 2020
  • 9. Armstrong RA, Kane AD, Kursumovic E, et al. Mortality in patients admitted to intensive care with COVID-19: an updated systematic review and meta-analysis of observational studies. Anaesthesia. 2021;76:537-48.
  • 10. Cohen JF, Korevaar DA, Matczak S, et al. COVID-19–Related Fatalities and Intensive-Care-Unit Admissions by Age Groups in Europe: A Meta-Analysis. Front.Med. 2021;7:560685.
  • 11. Ioannidis JPA, Axfors C, Contopoulos-Ioannidis DG. Population-level COVID-19 mortality risk for non-elderly individuals overall and for non-elderly individuals without underlying diseases in pandemic epicenters. Environ Res. 2020;188:109890.
  • 12. Bonanad C, García-Blas S, Tarazona-Santabalbina F, et al. The Effect of Age on Mortality in Patients With COVID-19: A Meta-Analysis With 611,583 Subjects. J Am Med Dir Assoc. 2020;21:915-8.
  • 13. Ruocco G, McCullough PA, Tecson KM, et al. Mortality Risk Assessment Using CHA(2)DS(2)-VASc Scores in Patients Hospitalized With Coronavirus Disease 2019 Infection. Am J Cardiol 2020;137:111-7.
  • 14. Ozturk S, Turgut alp K, Arici M, et al. Mortality analysis of COVID-19 infection in chronic kidney disease, haemodialysis and renal transplant patients compared with patients without kidney disease: a nationwide analysis from Turkey. Nephrol Dial Transplant. 2020;35:2083-95.
  • 15. Aciksari G, Cetinkal G, Kocak M, et al. Evaluation of Modified ATRIA Risk Score in Predicting Mortality in Hospitalized Patients with COVID-19. Am J MedSci. 2021;S0002-9629:00214-7.
  • 16. Oyelade T, Alqahtani J, Canciani G. Prognosis of COVID-19 in patients with liver and kidney diseases: an early systematic review and meta-analysis. Trop Med Infect Dis. 2020;5:80.
  • 17. Ejaz H, Alsrhani A, Zafar A, et al. COVID-19 and comorbidities: Deleterious impact on infected patients. J Infect Public Health. 2020;13:1833-9.
  • 18. Rajpal A, Rahimi L, Ismail-Beigi F. Factors leading to high morbidity and mortality of COVID-19 in patients with type 2 diabetes. J Diabetes. 2020;12:895-908.
  • 19. Gerotziafas GT, Catalano M, Colgan MP, et al. Scientific Reviewer Committee. Guidance for the Management of Patients with Vascular Disease or Cardiovascular Risk Factors and COVID-19: Position Paper from VAS-European Independent Foundation in Angiology/Vascular Medicine. ThrombHaemost. 2020;120:1597-628.
  • 20. Caro-Codón J, Lip GYH, Rey JR, et al. Prediction of thromboembolic events and mortality by the CHADS2 and the CHA2DS2-VASc in COVID-19. Europace. 2021;23:937-97.
  • 21. Cheruiyot I, Kipkorir V, Ngure B, et al. Arterial Thrombosis in Coronavirus Disease 2019 Patients: A Rapid Systematic Review. Ann Vasc Surg. 2021;70:273-81.
  • 22. Di Minno A, Ambrosino P, Calcaterra I, et al. COVID-19 and Venous Thromboembolism: A Meta-analysis of Literature Studies. SeminThromb Hemost. 2020;46:763-71.
  • 23. Malas MB, Naazie IN, Elsayed N, et al. Thromboembolism risk of COVID-19 is high and associated with a higher risk of mortality: A systematic review and meta-analysis. EClinicalMedicine. 2020;29:100639.
  • 24. Liang W, Liang H, Ou L, et al. China Medical Treatment Expert Group for COVID-19. Development and Validation of a Clinical Risk Score to Predict the Occurrence of Critical Illness in Hospitalized Patients With COVID-19. JAMA Intern Med. 2020;180:1081-9.
  • 25. Acar HC, Can G, Karaali R, et al. An easy-to-use nomogram for predicting in-hospital mortality risk in COVID-19: a retrospective cohort study in a university hospital. BMC Infect Dis. 2021;21:148.
  • 26. El-Solh AA, Lawson Y, Carter M, et al. Comparison of in-hospital mortality risk prediction models from COVID-19. PLoS ONE. 2020;15:e0244629.

Evaluation of Relationship between Modified ATRIA Risk Score and Mortality in Hospitalized Patients with COVID-19

Year 2023, Volume: 5 Issue: 1, 107 - 14, 15.01.2023
https://doi.org/10.37990/medr.1176092

Abstract

Aim: The ATRIA score was developed to assess the probability of an ischemic stroke in patients with atrial fibrillation (AF). The modified ATRIA (M-ATRIA) risk score incorporates predictive risk variables for coronavirus disease 2019 (COVID-19). As a result, we looked into the association between the M-ATRIA risk score and the risk of in-hospital death in COVID-19 patients.
Materials and Methods: The data of 595 inpatients in the COVID-19 research were evaluated retrospectively and separated into three groups based on the M-ATRIA scoring system. The M-ATRIA score used the troponin I level as a parameter in place of the proteinuria criterion in the ATRIA score. Those with a score between 0 and 5 were classified as group 1 (n = 269), those with a score of 6 as group 2 (n = 64), and those with a score of 7 and above were classified as group 3 (n = 162). In-hospital death, mechanical ventilation, and admission to the critical-care unit were all considered adverse clinical events.
Results: The M-ATRIA risk score associated with adverse clinical events (all, p < 0.001). An M-ATRIA score of 6, an M-ATRIA score greater than 7, procalcitonin, and C- reactive protein were found to be independent predictors of in-hospital mortality in the multivariate logistic regression analysis. In the ROC analysis, an M-ATRIA score of 4.5 or above predicted in-hospital mortality with a sensitivity of 90.2% and a specificity of 58.9%.
Conclusion: Regardless of the status of AF, the M-ATRIA risk score computed at admission may be a valuable tool for predicting in-hospital mortality in COVID-19 patients.

References

  • 1. Xu S, Huang R, Sy LS, et al. COVID-19 Vaccination and Non-COVID-19 Mortality Risk - Seven Integrated Health Care Organizations, United States, December 14, 2020-July 31, 2021. MMWR Morb Mortal Wkly Rep. 2021;70:1520-24.
  • 2. Godoy LC, Goligher EC, Lawler PR, et al. Anticipating and managing coagulopathy and thrombotic manifestations of severe COVID-19. CMAJ. 2020;192:E1156-61.
  • 3. Singer DE, Chang Y, Borowsky LH, et al. A new risk scheme to predict ischemic stroke and other thromboembolism in atrial fibrillation: the ATRIA study stroke risk score. J Am Heart Assoc. 2013;2:e000250.
  • 4. Van Den Ham HA, Klungel OH, Singer DE, et al. Comparative performance of ATRIA, CHADS2, and CHA2DS2-VASc risk scores predicting stroke Comparison of the ATRIA, CHADS2, and CHA2DS2-VASc stroke risk scores 3209in patients with atrial fibrillation in a national primary care database and the impact on treatment decisions. J Am Coll Cardiol. 2015;66:1851-9.
  • 5. Cetinkal G, Kocas BB, Ser OS, et al. Assessment of the Modified CHA2DS2VASc Risk Score in Predicting Mortality in Patients Hospitalized With COVID-19. Am J Cardiol. 2020;135:143-9.
  • 6. Quisi A, Alıcı G, Harbalıoğlu H, et al. The CHA2DS2-VASc score and in-hospital mortality in patients with COVID-19: A multicenter retrospective cohort study. Turk Kardiyol Dern Ars. 2020;48:656-63.
  • 7. Al Abbasi B, Torres P, Ramos-Tuarez F, et al. Cardiac Troponin-I and COVID-19: A Prognostic Tool for In-Hospital Mortality. Cardiol Res. 2020;11:398-404.
  • 8. The Republic of Turkey Ministry of Health. COVID-19 (SARS-CoV-2 Infection) (Study of Scientific Board) General Information, Epidemiology and Diagnosis.2020. Website https://covid19.saglik.gov.tr/Eklenti/39061/0/covid-19rehberieriskinhastatedavisipdf.pdf accessed date 9 November 2020
  • 9. Armstrong RA, Kane AD, Kursumovic E, et al. Mortality in patients admitted to intensive care with COVID-19: an updated systematic review and meta-analysis of observational studies. Anaesthesia. 2021;76:537-48.
  • 10. Cohen JF, Korevaar DA, Matczak S, et al. COVID-19–Related Fatalities and Intensive-Care-Unit Admissions by Age Groups in Europe: A Meta-Analysis. Front.Med. 2021;7:560685.
  • 11. Ioannidis JPA, Axfors C, Contopoulos-Ioannidis DG. Population-level COVID-19 mortality risk for non-elderly individuals overall and for non-elderly individuals without underlying diseases in pandemic epicenters. Environ Res. 2020;188:109890.
  • 12. Bonanad C, García-Blas S, Tarazona-Santabalbina F, et al. The Effect of Age on Mortality in Patients With COVID-19: A Meta-Analysis With 611,583 Subjects. J Am Med Dir Assoc. 2020;21:915-8.
  • 13. Ruocco G, McCullough PA, Tecson KM, et al. Mortality Risk Assessment Using CHA(2)DS(2)-VASc Scores in Patients Hospitalized With Coronavirus Disease 2019 Infection. Am J Cardiol 2020;137:111-7.
  • 14. Ozturk S, Turgut alp K, Arici M, et al. Mortality analysis of COVID-19 infection in chronic kidney disease, haemodialysis and renal transplant patients compared with patients without kidney disease: a nationwide analysis from Turkey. Nephrol Dial Transplant. 2020;35:2083-95.
  • 15. Aciksari G, Cetinkal G, Kocak M, et al. Evaluation of Modified ATRIA Risk Score in Predicting Mortality in Hospitalized Patients with COVID-19. Am J MedSci. 2021;S0002-9629:00214-7.
  • 16. Oyelade T, Alqahtani J, Canciani G. Prognosis of COVID-19 in patients with liver and kidney diseases: an early systematic review and meta-analysis. Trop Med Infect Dis. 2020;5:80.
  • 17. Ejaz H, Alsrhani A, Zafar A, et al. COVID-19 and comorbidities: Deleterious impact on infected patients. J Infect Public Health. 2020;13:1833-9.
  • 18. Rajpal A, Rahimi L, Ismail-Beigi F. Factors leading to high morbidity and mortality of COVID-19 in patients with type 2 diabetes. J Diabetes. 2020;12:895-908.
  • 19. Gerotziafas GT, Catalano M, Colgan MP, et al. Scientific Reviewer Committee. Guidance for the Management of Patients with Vascular Disease or Cardiovascular Risk Factors and COVID-19: Position Paper from VAS-European Independent Foundation in Angiology/Vascular Medicine. ThrombHaemost. 2020;120:1597-628.
  • 20. Caro-Codón J, Lip GYH, Rey JR, et al. Prediction of thromboembolic events and mortality by the CHADS2 and the CHA2DS2-VASc in COVID-19. Europace. 2021;23:937-97.
  • 21. Cheruiyot I, Kipkorir V, Ngure B, et al. Arterial Thrombosis in Coronavirus Disease 2019 Patients: A Rapid Systematic Review. Ann Vasc Surg. 2021;70:273-81.
  • 22. Di Minno A, Ambrosino P, Calcaterra I, et al. COVID-19 and Venous Thromboembolism: A Meta-analysis of Literature Studies. SeminThromb Hemost. 2020;46:763-71.
  • 23. Malas MB, Naazie IN, Elsayed N, et al. Thromboembolism risk of COVID-19 is high and associated with a higher risk of mortality: A systematic review and meta-analysis. EClinicalMedicine. 2020;29:100639.
  • 24. Liang W, Liang H, Ou L, et al. China Medical Treatment Expert Group for COVID-19. Development and Validation of a Clinical Risk Score to Predict the Occurrence of Critical Illness in Hospitalized Patients With COVID-19. JAMA Intern Med. 2020;180:1081-9.
  • 25. Acar HC, Can G, Karaali R, et al. An easy-to-use nomogram for predicting in-hospital mortality risk in COVID-19: a retrospective cohort study in a university hospital. BMC Infect Dis. 2021;21:148.
  • 26. El-Solh AA, Lawson Y, Carter M, et al. Comparison of in-hospital mortality risk prediction models from COVID-19. PLoS ONE. 2020;15:e0244629.
There are 26 citations in total.

Details

Primary Language English
Subjects Clinical Sciences
Journal Section Original Articles
Authors

Abdulmecit Afşin 0000-0001-9301-9525

Kasım Turgut 0000-0003-2955-1714

Nurbanu Bursa 0000-0003-3747-5870

Erdal Yavuz 0000-0002-3168-6469

Taner Güven 0000-0003-4356-4538

Yusuf Hoşoğlu 0000-0003-2440-9209

Early Pub Date January 15, 2023
Publication Date January 15, 2023
Acceptance Date October 25, 2022
Published in Issue Year 2023 Volume: 5 Issue: 1

Cite

AMA Afşin A, Turgut K, Bursa N, Yavuz E, Güven T, Hoşoğlu Y. Evaluation of Relationship between Modified ATRIA Risk Score and Mortality in Hospitalized Patients with COVID-19. Med Records. January 2023;5(1):107-14. doi:10.37990/medr.1176092

17741

Chief Editors

Assoc. Prof. Zülal Öner
İzmir Bakırçay University, Department of Anatomy, İzmir, Türkiye

Assoc. Prof. Deniz Şenol
Düzce University, Department of Anatomy, Düzce, Türkiye

Editors
Assoc. Prof. Serkan Öner
İzmir Bakırçay University, Department of Radiology, İzmir, Türkiye
 
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