# Authors Title Details Date Pdf/Links/Bibtex Keywords
23Longo L., Wickens C. D., Hancock P. A., Hancock G.Human Mental Workload: A Survey and a Novel Inclusive Definition Frontiers Psychology 2022 survey mental workload definitions theories measures models novel framework novel inclusive definition
10.3389/fpsyg.2022.883321
22Raufi B., Longo L.An Evaluation of the EEG Alpha-to-Theta and Theta-to-Alpha Band Ratios as Indexes of Mental Workload Frontiers Neuroinformatics 2022 human mental workload EEG band ratios alpha-to-theta ratios theta-to-alpha ratios machine learning classification Electroencephalography
10.3389/fninf.2022.861967
21Longo L., Leva M.C.Human Mental Workload: Models and Applications 5th International Symposium on Human Mental Workload, Models and Applications 2021 Mental Workload Models Applications
dx.10.1007/978-3-030-91408-0
20Longo L., Rajendran M.A Novel Parabolic Model of Instructional Efficiency Grounded on Ideal Mental Workload and Performanc Human Mental Workload: Models and Applications 2021 Instructional efficiency Cognitive Load Theory Mental workload Performance Entropy Validity Parabolic Optimality
10.1007/978-3-030-91408-0_2
19Longo L., Leva M.C.Human Mental Workload: Models and Applications 4th International Symposium on Human Mental Workload, Models and Applications 2020 Mental Workload Models Applications
dx.10.1007/978-3-030-62302-9
18Munoz-De-Escalona E., CaƱas J., Leva M.C., Longo L. Task demand transition peak point effects on mental workload measures divergence Human Mental Workload: Models and Applications 4th International Symposium, H-WORKLOAD 2020 2020 Mental workload Workload measures Convergence Divergence Dissociations Insensitivities Task demand transitions Rates of change Peak point
10.1007/978-3-030-62302-9_13
17Orru G., Longo L.Direct and Constructivist Instructional Design: A Comparison of Efficiency Using Mental Workload and Task Performance 4th International Symposium on Human Mental Workload: Models and Applications 2020 Cognitive load theory Mental workload Efficiency Direct instruction methods Inquiry methods
10.1007/978-3-030-62302-9_7
16Longo L., Leva M.C.Human Mental Workload: Models and Applications 3rd International Symposium on Human Mental Workload, Models and Applications 2019 Mental Workload Models Applications
dx.10.1007/978-3-030-32423-0
15Longo L, Orru G.An Evaluation of the Reliability, Validity and Sensitivity of Three Human Mental Workload Measures Under Different Instructional Conditions in Third-Level Education McLaren B., Reilly R., Zvacek S., Uhomoibhi J. (eds) Computer Supported Education. CSEDU 2018. 2019 Cognitive Load Theory Cognitive load types Human Mental Workload Instructional design Direct instructions Cognitive Theory of Multimedia Learning Inquiry methods Community of Inquiry Reliability Validity Sensitivity Education
10.1007/978-3-030-21151-6_19
14Crotti J.A., Debruyne C., Longo L., O'Sullivan D.On the Mental Workload Assessment of Uplift Mapping Representations in Linked Data 2nd International Symposium on Human Mental Workload: Models and Applications 2019 Mental Workload Uplift Mapping Representations Linked Data Usability Human-Computer Interaction
10.1007/978-3-030-14273-5_10
13Moustafa K., Longo L.Analysing the Impact of Machine Learning to Model Subjective Mental Workload: A Case Study in Third-Level Education 2nd International Symposium on Human Mental Workload: Models and Applications 2019 Machine Learning Mental Workload Modeling Subjective Measures Instructional Design
10.1007/978-3-030-14273-5_6
12Orru G., Longo L.The Evolution of Cognitive Load Theory and the Measurement of Its Intrinsic, Extraneous and Germane Loads: A Review 2n International Symposium on Human Mental Workload: Models and Applications 2019 Cognitive Load Theory Cognitive Load types Intrinsic Load Extraneous Load Germane Load Measures Instructional Design Efficiency Education Mental Workload
10.1007/978-3-030-14273-5_3
11Longo L., Leva M.C.Human Mental Workload: Models and Applications 2nd International Symposium on Human Mental Workload, Models and Applications 2018 Mental Workload Models Applications
dx.10.1007/978-3-030-14273-5
10Longo L.On the Reliability, Validity and Sensitivity of Three Mental Workload Assessment Techniques for the Evaluation of Instructional Designs: A Case Study in a Third-level Course 10th International Conference on Computer Supported Education 2018 Human Mental Workload Cognitive Load Theory Instructional Design Education
10.5220/0006801801660178
9Balfe N., Crowley K., Smith B., Longo L.Estimation of Train Driver Workload: Extracting Taskload Measures from On-Train-Data-Recorders 1st International Symposium on Human Mental Workload: Models and Applications 2017 Mental Workload Train driversTask Load Measures
10.1007/978-3-319-61061-0_7
8Longo L., Leva M.C.Human Mental Workload: Models and Applications 1st International Symposium on Human Mental Workload, Models and Applications 2017 Mental Workload Models Applications
10.1007/978-3-319-61061-0
7Moustafa K., Luz S., Longo L.Assessment of Mental Workload: A Comparison of Machine Learning Methods and Subjective Assessment Techniques International Symposium on Human Mental Workload: Models and Applications 2017 Mental Workload Machine Learning Subjective assessment techniques Modeling
6Longo L.Designing medical interactive systems via assessment of human mental workload IEEE 28th International Symposium on Computer-Based Medical Systems 2015 Human Mental Workload Interactive Systems Medical applications Human-Computer Interaction
5Longo L.A defeasible reasoning framework for human mental workload representation and assessment Behaviour & Information Technology 2015 Human Mental Workload Defeasible Reasoning Argumentation Theory Knowledge-Representation Modeling Artificial Intelligence
10.1080/0144929X.2015.1015166
4Longo L.Formalising Human Mental Workload as a Defeasible Computational Concept The University of Dublin, Trinity College (doctoral thesis) 2014 Mental Workload Defeasible Reasoning Argumentation Theory Knowledge Representation Nasa Task Load Index Workload Profile Human-Computer Interaction Artificial Intelligence Modeling
3Longo L.Formalising human mental workload as non-monotonic concept for adaptive and personalised web-design International Conference on User Modeling, Adaptation, and Personalization 2012 Human Mental Workload Non-monotonic Reasoning Argumentation Theory Human-Computer Interaction Web Design
2Longo L. Rusconi F. Noce L. Barrett S.The Importance of Human Mental Workload in Web Design 8th International Conference on Web Information Systems and Technologies 2012 Human Mental Workload Interaction Design Web Design Usability Human Factor Human-Computer Interaction
1Longo L.Human-computer interaction and human mental workload: Assessing cognitive engagement in the world wide web IFIP Conference on Human-Computer Interaction 2011 Human-Computer Interaction Human Mental Workload User Engagement Artificial Intelligence Web-mining Human Factors
# Authors Title Details Date Pdf/Links/Bibtex Keywords