SBMU Journals
  • New Submission
  • Register
  • Login
  • English
    • 简体中文

Archives of Academic Emergency Medicine

  • Home
  • About
    • Policies
    • Editorial Team
    • Reviewer guideline
    • Contact
  • Issues
    • Current
    • Archives
  • Announcements
  • Indexing/Abstracting
  • For authors
    • New Submission
    • Author guidelines
    • Article withdrawal
    • Peer review process
    • FAQ
  • Ethics
    • Ethical requirements
    • Plagiarism Policy
    • Authorship conflicts
    • Malpractice statements
    • Copyright Notice
    • Intellectual properties
    • Preprint Policy
    • Privacy Statement
    • Artificial intelligence & Authorship
    • Retraction Cosiderations
Advanced Search
  1. Home
  2. Archives
  3. Vol. 14 No. 1 (2026): Continuous volume
  4. Review Article

Vol. 14 No. 1 (2026)

October 2025

Diagnostic Accuracy of the ACT-FAST Tool for Prehospital Stroke Identification: A Systematic Review

  • Mobina Yarahmadi
  • Mohammadhossein Vazirizadeh-Mahabadi
  • Pantea Gharin
  • Paniz Gharin
  • Arash Sarveazad
  • Nastaran Sadat Mahdavi
  • Mahmoud Yousefifard

Archives of Academic Emergency Medicine, Vol. 14 No. 1 (2026), 1 October 2025 , Page e30
https://doi.org/10.22037/aaem.v14i1.2879 Published: 2026-07-25

  • View Article
  • Download
  • Cite
  • References
  • Statastics
  • Share

Abstract

Introduction: Stroke is the second leading cause of death globally, resulting in 5.5 million deaths annually. The ACT-FAST is a simplified, rapid assessment tool aimed at improving the early detection of stroke and may outperform existing tools in identifying large vessel occlusions (LVOs). We aimed to assess the diagnostic accuracy of this tool in this systematic review.

Methods: In this systematic review, we conducted a comprehensive search of Medline, Scopus, Web of Science, and Embase. Studies with incomplete data reporting or those focusing on other triage tools were excluded. Two independent reviewers screened titles, abstracts, and full texts, and extracted relevant data using a pre-designed checklist.

Results: Our systematic review identified four studies on the ACT-FAST tool, all conducted primarily in Australia with a predominantly elderly patient population. Reported findings indicate that ACT-FAST has demonstrated generally high diagnostic performance, with retrospective analyses showing accuracies above 90%. Sensitivity varied across study designs, ranging from 63% to 100%, while specificity was consistently reported above 85%. Despite concerns regarding potential bias from non-random patient selection and incomplete reporting of symptom onset, the overall methodological quality was robust.

Conclusion: The ACT-FAST algorithm demonstrates generally high, though variable, sensitivity and consistently high specificity, supporting its utility as a valuable tool for paramedics and clinicians in prehospital stroke management and for effectively identifying patients with LVO. This capability facilitates timely intervention, minimizes unnecessary transfers for patients without LVO, and optimizes resource allocation, ultimately improving patient outcomes in stroke care.

Keywords:
  • Arterial occlusive diseases
  • Clinical decision rules
  • Systematic review
  • pdf

How to Cite

1.
Yarahmadi M, Vazirizadeh-Mahabadi M, Gharin P, Gharin P, Sarveazad A, Mahdavi NS, et al. Diagnostic Accuracy of the ACT-FAST Tool for Prehospital Stroke Identification: A Systematic Review. Arch Acad Emerg Med [Internet]. 2026 Jul. 25 [cited 2026 Jul. 27];14(1):e30. Available from: https://journals.sbmu.ac.ir/aaem/index.php/AAEM/article/view/2879
  • ACM
  • ACS
  • APA
  • ABNT
  • Chicago
  • Harvard
  • IEEE
  • MLA
  • Turabian
  • Vancouver
  • Endnote/Zotero/Mendeley (RIS)
  • BibTeX

References

1. Roger, V.L.; Go, A.S.; Lloyd-Jones, D.M.; Adams, R.J.; Berry, J.D.; Brown, T.M.; Carnethon, M.R.; Dai, S.; de Simone, G.; Ford, E.S.; et al. Heart disease and stroke statistics--2011 update: A report from the American Heart Association. Circulation 2011, 123, e18–e209.

2. Collaborators, G.S. Global, regional, and national burden of stroke, 1990-2016: A systematic analysis for the Global Burden of Disease Study 2016. Lancet Neurol. 2019, 18, 439–458. .

3. Saver JL, Goyal M, van der Lugt A, Menon BK, Majoie CB, Dippel

DW, et al; HERMES Collaborators. Time to treatment with endovascu-

lar thrombectomy and outcomes from ischemic stroke: a meta-analysis.

JAMA. 2016;316:1279–1288.

4. Zhao H, Pesavento L, Coote S, Rodrigues E, Salvaris P, Smith K, et al. Ambulance clinical triage for acute stroke treatment paramedic triage algorithm for large vessel occlusion. Stroke. 2018;49(4):945-51.

5. English SW, Rabinstein AA, Mandrekar J, Klaas JP. Rethinking Prehospital Stroke Notification: Assessing Utility of Emergency Medical Services Impression and Cincinnati Prehospital Stroke Scale. J Stroke Cerebrovasc Dis. 2018;27(4):919-25.

6. Vanni S, Polidori G, Pepe G, Chiarlone M, Albani A, Pagnanelli A, et al. Use of biomarkers in triage of patients with suspected stroke. J Emerg Med. 2011;40(5):499-505.

7. Michel P. Prehospital scales for large vessel occlusion: closing in on a

moving target. Stroke. 2017;48:247–249. doi: 10.1161/STROKEAHA.

116.015511.

8. Turc G, Maïer B, Naggara O, Seners P, Isabel C, Tisserand M, et al.

Clinical scales do not reliably identify acute ischemic stroke patients with large-artery occlusion. Stroke. 2016;47:1466–1472. doi: 10.1161/

STROKEAHA.116.013144.

9. Hastrup S, Damgaard D, Johnsen SP, Andersen G. Prehospital acute

stroke severity scale to predict large artery occlusion: design and com-

parison with other scales. Stroke. 2016;47:1772–1776. doi: 10.1161/

STROKEAHA.115.012482.

10. Katz BS, McMullan JT, Sucharew H, Adeoye O, Broderick JP. Design

and validation of a prehospital scale to predict stroke severity: Cincinnati

prehospital stroke severity scale. Stroke. 2015;46:1508–1512. doi:

10.1161/STROKEAHA.115.008804.

11. Nazliel B, Starkman S, Liebeskind DS, Ovbiagele B, Kim D, Sanossian

N, et al. A brief prehospital stroke severity scale identifies ischemic

stroke patients harboring persisting large arterial occlusions. Stroke.

2008;39:2264–2267. doi: 10.1161/STROKEAHA.107.508127.

12. Lima FO, Mont'Alverne FJA, Bandeira D, Nogueira RG. Pre-hospital Assessment of Large Vessel Occlusion Strokes: Implications for Modeling and Planning Stroke Systems of Care. Front Neurol. 2019;10:955.

13. Pérez de la Ossa N, Carrera D, Gorchs M, Querol M, Millán M, Gomis M, et al. Design and validation of a prehospital stroke scale to predict large arterial occlusion: the rapid arterial occlusion evaluation scale. Stroke. 2014;45(1):87-91.

14. Zhao H, Coote S, Pesavento L, Churilov L, Dewey HM, Davis SM, et al.

Large vessel occlusion scales increase delivery to endovascular centers

without excessive harm from misclassifications. Stroke. 2017;48:568–

573. doi: 10.1161/STROKEAHA.116.016056.

15. Hacke W, Schwab S, Horn M, Spranger M, De Georgia M, von Kummer R. “Malignant” middle cerebral artery territory infarction: clinical course and prognostic signs. Arch Neurol. 1996;53:309–315. doi: 10.1001/archneur.1996.00550040037012. .

16. Goyal M, Menon BK, van Zwam WH, Dippel DWJ, Mitchell PJ, Demchuk AM, et al. Endovascular thrombectomy after large-vessel ischaemic stroke: a meta-analysis of individual patient data from five randomised trials. Lancet 2016;387:1723–1731. doi: 10.1016/S0140-6736(16)00163-X.

17. Saver JL, Fonarow GC, Smith EE, Reeves MJ, Grau-Sepulveda MV, Pan W, et al. Time to treatment with intravenous tissue plasminogen activator and outcome from acute ischemic stroke. JAMA. 2013;309:2480–2488. doi: 10.1001/jama.2013.6959.

18. Antipova D, Eadie L, Macaden A, Wilson P. Diagnostic accuracy of clinical tools for assessment of acute stroke: a systematic review. BMC Emerg Med. 2019;19(1):49.

19. Ogle KL. Abstract TMP67: Prehospital Screening for Large Vessel Occlusion and Bypass to Endovascular Stroke Centers: Using the Ambulance Clinical Triage for Acute Stroke Treatment Scale With Adaptation From DAWN and DEFUSE-3 Trials. Stroke.50(Suppl_1):ATMP67-ATMP.

20. Ostman C, García-Esperón C, Lillicrap T, Alanati K, Chew BLA, Pedler J, et al. Comparison of two pre-hospital stroke scales to detect large vessel occlusion strokes in Australia: A prospective observational study. Australasian Journal of Paramedicine. 2022;19.

21. Ostman C, Newcastle Uo, Garcia-Esperon C, Lillicrap T, Alanati K, Chew BLA, et al. Comparison of two pre-hospital stroke scales to detect large vessel occlusion strokes in Australia: A prospective observational study. Paramedics Australasia; 2022.

22. Page MJ, McKenzie JE, Bossuyt PM, Boutron I, Hoffmann TC, Mulrow CD, et al. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. Bmj. 2021;372:n71.

23. Powers WJ, Derdeyn CP, Biller J, Coffey CS, Hoh BL, Jauch EC, et al. 2015 American Heart Association/American Stroke Association Focused Update of the 2013 Guidelines for the Early Management of Patients With Acute Ischemic Stroke Regarding Endovascular Treatment: A Guideline for Healthcare Professionals From the American Heart Association/American Stroke Association. Stroke. 2015;46(10):3020-35.

24. Zhao H, Coote S, Pesavento L, Churilov L, Dewey HM, Davis SM, et al. Large Vessel Occlusion Scales Increase Delivery to Endovascular Centers Without Excessive Harm From Misclassifications. Stroke. 2017;48(3):568-73.

25. Zhao H, Smith K, Bernard S, Stephenson M, Ma H, Chandra RV, et al. Utility of Severity-Based Prehospital Triage for Endovascular Thrombectomy: ACT-FAST Validation Study. Stroke. 2021;52(1):70-9.

26. Tan S, Stephens K, Frost T, Dewey H, Choi P. The practical utility of the ACT-FAST triage algorithm from a primary stroke centre perspective. International Journal of Stroke. 2021;16(1 SUPPL):29.

27. Amirhossein N-V, Yazdan B, Hamzah R, Reza M, Mahmoud Y. The diagnostic value of the field assessment stroke triage for emergency destination tool in identifying the obstruction of large cerebral vessels; a systematic review and meta-analysis. Frontiers in Emergency Medicine. 2023;7(2).

28. Nor AM, Davis J, Sen B, Shipsey D, Louw SJ, Dyker AG, et al. The Recognition of Stroke in the Emergency Room (ROSIER) scale: development and validation of a stroke recognition instrument. Lancet Neurol. 2005;4(11):727-34.

29. Chehregani Rad I, Azimi A. Recognition of Stroke in the Emergency Room (ROSIER) Scale in Identifying Strokes and Transient Ischemic Attacks (TIAs); a Systematic Review and Meta-Analysis. Arch Acad Emerg Med. 2023;11(1):e67.

30. Baser Y, Zarei H, Gharin P, Baradaran HR, Sarveazad A, Roshdi Dizaji S, et al. Cincinnati Prehospital Stroke Scale (CPSS) as a Screening Tool for Early Identification of Cerebral Large Vessel Occlusions; a Systematic Review and Meta-analysis. Arch Acad Emerg Med. 2024;12(1):e38.

31. Chen X, Zhao X, Xu F, Guo M, Yang Y, Zhong L, et al. A Systematic Review and Meta-Analysis Comparing FAST and BEFAST in Acute Stroke Patients. Front Neurol. 2021;12:765069.

32. Chehregani Rad I, Azimi A. Rapid Arterial Occlusion Evaluation (RACE) Tool in Detecting Large Cerebral Vessel Occlusions; a Systematic Review and Meta-Analysis. Arch Acad Emerg Med. 2024;12(1):e10.

  • Abstract Viewed: 2 times
  • pdf Downloaded: 3 times

Download Statastics

  • Linkedin
  • Twitter
  • Facebook
  • Google Plus
  • Telegram

Make a Submission

Make a Submission

SJR

SCImago Journal & Country Rank

COPE

Current Issue

  • Atom logo
  • RSS2 logo
  • RSS1 logo

Information

  • For Readers
  • For Authors
  • For Librarians
  • Home
  • Archives
  • Submissions
  • About the Journal
  • Editorial Team
  • Contact

This journal is distributed under the terms of CC BY-NC 3.0. Design and publishing by SBMU journals. All credits and honors to PKP for their OJS. 

 Sitemap | ISSN-ONLINE: 2645-4904

Support Contact: ma.saghaei63@gmail.com

With the goal of net zero carbon emissions, this journal is published only in electronic format.

Powered by OJSPlus