Literature DB >> 33853441

e-ASPECTS software improves interobserver agreement and accuracy of interpretation of aspects score.

Waleed Brinjikji1,2, Mehdi Abbasi1, Catherine Arnold3, John C Benson1, Sherry A Braksick3, Norbert Campeau1, Carrie M Carr1, Petrice M Cogswell1, James P Klaas1, Greta B Liebo1, Jason T Little1, Patrick H Luetmer1, Steven A Messina1, Alex A Nagelschneider1, Kara M Schwartz1, Christopher P Wood1, Deena M Nasr3, David F Kallmes1,2.   

Abstract

INTRODUCTION: There is increased interest in the use of artificial intelligence-based (AI) software packages in the evaluation of neuroimaging studies for acute ischemic stroke. We studied whether, compared to standard image interpretation without AI, Brainomix e-ASPECTS software improved interobserver agreement and accuracy in detecting ASPECTS regions affected in anterior circulation LVO.
METHODS: We included 60 consecutive patients with anterior circulation LVO who had TICI 3 revascularization within 60 minutes of their baseline CT. A total of 16 readers, including senior neuroradiologists, junior neuroradiologists and vascular neurologists participated. Readers interpreted CT scans on independent workstations and assessed final ASPECTS and evaluated whether each individual ASPECTS region was affected. Two months later, readers again evaluated the CT scans, but with assistance of e-ASPECTS software. We assessed interclass correlation coefficient for total ASPECTS and interobserver agreement with Fleiss' Kappa for each ASPECTS region with and without assistance of the e-ASPECTS. We also assessed accuracy for the readers with and without e-ASPECTS assistance. In our assessment of accuracy, ground truth was the 24 hour CT in this cohort of patients who had prompt and complete revascularization.
RESULTS: Interclass correlation coefficient for total ASPECTS without e-ASPECTS assistance was 0.395, indicating fair agreement compared, to 0.574 with e-ASPECTS assistance, indicating good agreement (P < 0.01). There was significant improvement in inter-rater agreement with e-ASPECTS assistance for each individual region with the exception of M6 and caudate. The e-ASPECTS software had higher accuracy than the overall cohort of readers (with and without e-ASPECTS assistance) for every region except the caudate.
CONCLUSIONS: Use of Brainomix e-ASPECTS software resulted in significant improvements in inter-rater agreement and accuracy of ASPECTS score evaluation in a large group of neuroradiologists and neurologists. e-ASPECTS software was more predictive of final infarct/ASPECTS than the overall group interpreting the CT scans with and without e-ASPECTS assistance.

Entities:  

Keywords:  ASPECTS; CT; Stroke; artificial intelligence; large vessel occlusion

Mesh:

Year:  2021        PMID: 33853441      PMCID: PMC8673896          DOI: 10.1177/15910199211011861

Source DB:  PubMed          Journal:  Interv Neuroradiol        ISSN: 1591-0199            Impact factor:   1.610


  17 in total

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Journal:  J Neuroimaging       Date:  2018-09-19       Impact factor: 2.486

2.  e-ASPECTS software is non-inferior to neuroradiologists in applying the ASPECT score to computed tomography scans of acute ischemic stroke patients.

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Journal:  Int J Stroke       Date:  2016-12-01       Impact factor: 5.266

3.  Correlation of Thrombectomy Maneuver Count with Recanalization Success and Clinical Outcome in Patients with Ischemic Stroke.

Authors:  F Seker; J Pfaff; M Wolf; P A Ringleb; S Nagel; S Schönenberger; C Herweh; M A Möhlenbruch; M Bendszus; M Pham
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4.  Reliability and Utility of the Alberta Stroke Program Early Computed Tomography Score in Hyperacute Stroke.

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5.  Endovascular therapy for ischemic stroke with perfusion-imaging selection.

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6.  A randomized trial of intraarterial treatment for acute ischemic stroke.

Authors:  Olvert A Berkhemer; Puck S S Fransen; Debbie Beumer; Lucie A van den Berg; Hester F Lingsma; Albert J Yoo; Wouter J Schonewille; Jan Albert Vos; Paul J Nederkoorn; Marieke J H Wermer; Marianne A A van Walderveen; Julie Staals; Jeannette Hofmeijer; Jacques A van Oostayen; Geert J Lycklama à Nijeholt; Jelis Boiten; Patrick A Brouwer; Bart J Emmer; Sebastiaan F de Bruijn; Lukas C van Dijk; L Jaap Kappelle; Rob H Lo; Ewoud J van Dijk; Joost de Vries; Paul L M de Kort; Willem Jan J van Rooij; Jan S P van den Berg; Boudewijn A A M van Hasselt; Leo A M Aerden; René J Dallinga; Marieke C Visser; Joseph C J Bot; Patrick C Vroomen; Omid Eshghi; Tobien H C M L Schreuder; Roel J J Heijboer; Koos Keizer; Alexander V Tielbeek; Heleen M den Hertog; Dick G Gerrits; Renske M van den Berg-Vos; Giorgos B Karas; Ewout W Steyerberg; H Zwenneke Flach; Henk A Marquering; Marieke E S Sprengers; Sjoerd F M Jenniskens; Ludo F M Beenen; René van den Berg; Peter J Koudstaal; Wim H van Zwam; Yvo B W E M Roos; Aad van der Lugt; Robert J van Oostenbrugge; Charles B L M Majoie; Diederik W J Dippel
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7.  Interobserver reliability of baseline noncontrast CT Alberta Stroke Program Early CT Score for intra-arterial stroke treatment selection.

Authors:  A C Gupta; P W Schaefer; Z A Chaudhry; T M Leslie-Mazwi; R V Chandra; R G González; J A Hirsch; A J Yoo
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8.  Randomized assessment of rapid endovascular treatment of ischemic stroke.

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Journal:  N Engl J Med       Date:  2015-02-11       Impact factor: 91.245

9.  Clinical Utility of Electronic Alberta Stroke Program Early Computed Tomography Score Software in the ENCHANTED Trial Database.

Authors:  Simon Nagel; Xia Wang; Cheryl Carcel; Thompson Robinson; Richard I Lindley; John Chalmers; Craig S Anderson
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10.  Performance of e-ASPECTS software in comparison to that of stroke physicians on assessing CT scans of acute ischemic stroke patients.

Authors:  Christian Herweh; Peter A Ringleb; Geraldine Rauch; Steven Gerry; Lars Behrens; Markus Möhlenbruch; Rebecca Gottorf; Daniel Richter; Simon Schieber; Simon Nagel
Journal:  Int J Stroke       Date:  2016-02-15       Impact factor: 5.266

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  4 in total

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Journal:  Interv Neuroradiol       Date:  2022-01-31       Impact factor: 1.610

2.  Interpretable Machine Learning Modeling for Ischemic Stroke Outcome Prediction.

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3.  Deep learning derived automated ASPECTS on non-contrast CT scans of acute ischemic stroke patients.

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4.  Automated scoring of collaterals, blood pressure, and clinical outcome after endovascular treatment in patients with acute ischemic stroke and large-vessel occlusion.

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