subjective scale nasa tlx

NASA-TLX questionnaire.

1308 papers carry this instruments & measures tag, of 9327 that declare a instruments & measures at all (62594 papers carry any topic). Absence here means undeclared, not absent.

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  1. STRESS LEVEL AND COGNITIVE LOAD TEST OF HIGH SCHOOL STUDENTS BASED ON THE ANALYSIS OF CONSUMER-GRADE EEG SIGNAL AND NASA-TLX QUESTIONNAIRE · 2026 · Afre Ratri, Bekti et al.
  2. A Driver-Centered Multi-Criteria Framework For Bus Route Difficulty Assessment Towards Equitable Workload Distribution · 2026 · Çakır, Mehmet Samet et al.
  3. NASA-TLX Workload Under SAE Level 2 and Level 3 Automation Versus Manual: A Meta Analysis approach · 2026 · Alhujailli, Ashraf
  4. Analyzing driving stability and cognitive demands in takeover of conditional automation with immersive virtual reality · 2026 · Ansar, Muhammad Sajjad et al.
  5. Perceived Workload in Mixed IFR/VFR Terminal Operations: An Exploratory Pilot Simulator Study in Zagreb TMA · 2026 · Antulov-Fantulin, Bruno et al.
  6. Mental workload classification using EEG in drivers: A personalized approach to occupational risk reduction · 2026 · Atici-Ulusu, Hilal et al.
  7. Evaluasi Beban Kerja Mental Operator Assembly Line OPP Window Menggunakan Metode NASA-TLX di Industri Elektronik · 2026 · Awallia, Sarah et al.
  8. Cross-modal cognitive workload estimation in driving simulation: CCI–pupil coherence, vestibular mediation, and a multimodal workload index across five washout algorithm conditions · 2026 · Aykent, Baris
  9. How should drivers’ use of Automated Lane Keeping Systems (ALKS) be assessed? A study with experienced driving assessors in a Wizard-of-Oz vehicle · 2026 · Bazilinskyy, Pavlo et al.
  10. Comparing Eye-Tracking Metrics with the Driver Activity Load Index · 2026 · Bend, Julia et al.
  11. Assessing the Impact of an Assistive Driving Device on Mental Workload and Stress During Simulated Driving: A Multivariate Approach · 2026 · Costantini, Simone et al.
  12. Validating an integrated workload scale for vessel traffic services: a comparative assessment with NASA-TLX · 2026 · Crestelo Moreno, Fernando et al.
  13. The effect of driving simulator feature fidelity on vehicle control, driver workload and muscle activation · 2026 · Dony, Lynn et al.
  14. Evaluating Real-Time Adaptive Interfaces through EEG-derived and Self-reported Mental Workload Indicators · 2026 · Duraisamy, Saravanakumar et al.
  15. Driver mental workload measurement trends and cognitive impacts: a literature review · 2026 · Faidah, Uyun Nadzirotul et al.
  16. Effects of Viewpoint Presentation Methods on Driving Workload in Vehicle Teleoperation Systems · 2026 · Fukuzawa, Taiga et al.
  17. Devising a method for determining the workload on a locomotive driver based on a multicriteria additive model to improve railroad transport safety · 2026 · Gorobchenko, Oleksandr et al.
  18. Multimodal Assessment of Pilot Cognitive Workload Using ECG and Eye-Tracking Features in Simulated Flight Tasks · 2026 · Guan, Yixuan et al.
  19. The interactive effects of NDRT cognitive complexity and traffic density on takeover performance in level 3 automated driving: a multimodal EEG and behavioral study · 2026 · Guo, Qi et al.
  20. 3D Risk Assessment Model of Non-driving-related Tasks in Level 3 Automated Driving · 2026 · Horáková, Miroslava et al.
  21. Differential contributions of inhibition and task engagement to workload: evidence from a novel adaptive Stroop task · 2026 · Jaiaue, Thipkanlaya et al.
  22. Reliability and Validity of the Japanese Adelaide Driving Self-Efficacy Scale in Community-Dwelling Drivers · 2026 · Kagino, Shohei et al.
  23. Assessment of cyclists' cognitive workload through eye tracker and EEG sensors: Sensitivity to individual and external factors in a real-world experiment · 2026 · Kchour, Fatima et al.
  24. Effects of Driving Task Demands and Information Load on AR-HUD Cognitive Efficiency: The Moderating Role of Working Memory Capacity in a VR-Based Simulated Driving Environment. · 2026 · Li J et al.
  25. Assessing cognitive load in navigation tasks through EEG: Spatio-temporal multi-scale analysis · 2026 · Liu, Yixin et al.
  26. Visual Load Evaluation Model of Multi-view Monitoring Task Operator · 2026 · Liu, Zhongqi et al.
  27. What Drivers Know and Think They Know During Takeover: Effects of Spatial Risk, Temporal Risk, and NDRT on Situation Awareness · 2026 · Lo, Wei-Hsiang et al.
  28. Evaluación de carga mental en trabajadores mediante el test de SWAT · 2026 · Loayza Vargas, Marco Ramiro et al.
  29. Effects of cabin thermal conditions and road type on driver workload and performance: A driving simulator study · 2026 · Lu, Biao et al.
  30. Cognitive Load During Student-Created Virtual Worlds: A NASA-TLX Assessment Using Spatial.io · 2026 · Magetos, Dimitrios et al.
  31. NASA-TLX Mental Workload Analysis of Agrarian Reform Access Field Staff at Kantor Pertanahan X · 2026 · Malahayati, Aisyah Juliawulan et al.
  32. Streamlining NASA Task Load Index for Simulated Fighter Missions · 2026 · Mansikka, Heikki et al.
  33. The effect of navigation modalities on driver performance, workload and user experience: a simulator study · 2026 · Norell, Marius Brudvik et al.
  34. Translation, cultural adaptation, and psychometric evaluation of the NASA-TLX questionnaire among various occupational groups of Persian speakers · 2026 · Mokhtarinia, Hamid Reza et al.
  35. EEG-based cognitive load estimation during the use of a virtual wheelchair simulator · 2026 · Pereira Salgado, Débora et al.
  36. Near-invisible c-VEP-based passive BCI for mental workload monitoring · 2026 · Pietro, Cimarosto et al.
  37. Exploring Pilots' Mental Workload While Using an In‐Cabin Electronic Flight Bag for Aircraft Towing Taxi Operations · 2026 · Qin, Jiahao et al.
  38. Effects of cognitive load and time-on-task on mental fatigue in real-world drilling operations · 2026 · Qing, Xin et al.
  39. ANALISIS BEBAN KERJA MENTAL PADA DRIVER OJEK ONLINE RODA DUA MENGGUNAKAN METODE NASA-TLX DI KOTA BANJARMASIN · 2026 · Rabianor, Rabianor et al.
  40. Characterizing Trainee Workload Using Paired Daily Surveys and EHR Use Data: A Mixed-Methods Pilot Study · 2026 · Rai, Karan et al.
  41. Digital workload, fatigue and mental health: an ergonomic study of Indonesian platform drivers · 2026 · Restuputri, Dian Palupi et al.
  42. Psychophysiological evidence of mental workload and subjective anxiety from in-vehicle voice message complexity · 2026 · Restuputri, Dian Palupi et al.
  43. German version of subjective methods for measuring activation, mental workload, and attention in control rooms · 2026 · Rey-Becerra, Estefany et al.
  44. Analisis Pengukuran Beban Kerja Mental pada Karyawan Bagian Produksi Menggunakan Metode NASA-TLX di PT. Riau Graindo · 2026 · Satriardi, Satriardi et al.
  45. Multimodal Psychophysiological Signatures of Mental Workload · 2026 · Schindler, Hanna et al.
  46. Investigating the impact of driving workload on fatigue and performance for the purpose of road safety · 2026 · Serra, Patrizia et al.
  47. Pengukuran Beban Kerja Mental dan Fisik Operator Mesin Die Casting pada Shift Malam dengan Menggunakan Metode Nasa-TLX, CVL dan FTA · 2026 · Alfin Kurnia Setiawan et al.
  48. Multimodal Machine Learning Framework for Driver Mental Workload Classification: A Comparative and Interpretable Approach · 2026 · Shao, Xiaojun et al.
  49. Subjective driving experience recorded live: A naturalistic driving approach · 2026 · Simon, Katharina et al.
  50. Comparative Analysis of Subjective Mental Load Measurement Methods Between NASA TLX and DASS-42 · 2026 · Sugiono, Sugiono et al.
  51. Investigating the Role of Cognitive Demands and Mental Workload of Non-Professional Drivers in Japan: A Naturalistic Driving Study · 2026 · Suresh Babu, Karthik et al.
  52. A dynamic ocular index for assessing mental workload across visual tasks · 2026 · Wang, Xuanzhi et al.
  53. An Empirical Model of Driver Workload Dynamics at Unsignalized Intersections · 2026 · Wang, Yiyun et al.
  54. Classifying experienced male drivers’ mental workload on freeway ramps based on heart rate and speed measurements: A real-vehicle experiment · 2026 · Wang, Jie et al.
  55. Cognitive Workload and Attentional Allocation in One-Pedal Driving: A Human–Vehicle Interaction Study in Dynamic Car-Following Scenarios · 2026 · Wang, Sibo et al.
  56. Mental Workload Evaluation in Adaptive Boss Battle Gamification for PHP Programming Education: A Two-Phase NASA-TLX Analysis · 2026 · Wibowo, Dimas Wahyu et al.
  57. Multimodal EEG and Eye-Tracking Assessment of Perceived Mental Workload and Situation Awareness in a Visual Display Terminal Simulation Task · 2026 · Xiao, Mingchong et al.
  58. Effects of navigation modalities on driving performance under different cognitive load levels: an evaluation based on wearable glasses · 2026 · Yin, Haibo et al.
  59. Identification of Driving Workload in Plateau Environment: A Naturalistic Driving Study · 2026 · Yu, Aolin et al.
  60. Advancements and Insights in Assessing Cognitive Load During Driving: A Comprehensive Narrative Review · 2026 · Zhang, Peijiang et al.
  61. Research on young drivers’ workload based on simulated distracted driving test · 2026 · Zhao, Xiaoping et al.
  62. Recognition of lane change intention based on driver’s mental workload · 2026 · Zhong, Shiyu et al.
  63. Challenges for older drivers: Workload and risky behavior in simulated six-lane urban bidirectional road conflict scenarios · 2026 · Zhou, Yiwen et al.
  64. An examination of the interrelationships among NASA-TLX dimensions utilizing the DEMATEL method · 2025 · Aksu, Şeniz Harputlu et al.
  65. Your Interface, Your Control: Adapting Takeover Requests for Seamless Handover in Semi-Autonomous Vehicles · 2025 · Gomaa, Amr et al.
  66. Subjective and Objective Assessment of the Impact of Stress and Mental Workload on Cybersickness During Virtual Reality Training · 2025 · Antoine Moinnereau, Marc et al.
  67. Work System Improvement Based NASA-TLX and SSRT to Reduce Mental Workload and Work Fatigue · 2025 · Ardana, Caesar Rifqi et al.
  68. Real Time Classification of Cognitive Load Using fNIRS and EEGNet in a Driving Simulation Task · 2025 · Khan, Mehshan Ahmed et al.
  69. Analisis Beban kerja Mental dan Fisik pada Petugas Keamanan Kampus Menggunakan Metode NASA-TLX dan CVL Studi Kasus: Universitas Negeri Gorontalo · 2025 · Ayuni, Dewi Riasty et al.
  70. Assessing Mental Workload of Automotive Factory Employees Using NASA-TLX and RSME Methods · 2025 · Azizah, Fahriza Nurul et al.
  71. Should we use the NASA-TLX in HCI? A review of theoretical and methodological issues around Mental Workload Measurement · 2025 · Babaei, Ebrahim et al.
  72. Discriminative Capabilities of Eye Gaze Measures for Cognitive Load Evaluation in a Driving Simulation Task · 2025 · Bakhchina, Anastasiia et al.
  73. The sensitivity of psychophysiological measures to changes in mental workload · 2025 · Büchli, Adrian et al.
  74. Multi-dimensional measurement of mental workload in industrial context: an experiment in the field of helicopter maintenance · 2025 · Berthon, Lorrys et al.
  75. Multimodal measurement of the mental workload during an assembly and disassembly task · 2025 · Berthon, Lorrys et al.
  76. Effect of Partially Automated Driving on Mental Workload, Visual Behavior and Engagement in Nondriving-Related Tasks: A Meta-Analysis · 2025 · Vasta, N et al.
  77. Investigating the interplay between cognitive workload and situation awareness during full driving automation · 2025 · Sahoo, P et al.
  78. Detection of Cognitive Load Modulation by EDA and HRV · 2025 · Boffet, Alexis et al.
  79. Assessing and Visualizing Pilot Performance in Traffic Patterns: A Composite Score Approach · 2025 · Chenot, Quentin et al.
  80. Effect of the restricted visual field on mental workload during automobile driving · 2025 · Chihara, Takanori et al.
  81. Evaluation of Workload in Military Pilots During Formation Flight Instruction: Impacts of Function and Experience · 2025 · de Almeida, Marcelo Furtado et al.
  82. Systematic review of neurophysiological assessment techniques and metrics for mental workload evaluation in real-world settings · 2025 · Diarra, Moussa et al.
  83. Lane-keeping ability evaluation for driving skill tests: A multi-indicator fusion approach · 2025 · Duan, Mengmeng et al.
  84. fNIRS, EEG, ECG, and GSR reveal an effect of complex, dynamically changing environments on cognitive load, affective state, and performance, but not physiological stress · 2025 · Dybvik, Henrikke et al.
  85. Analisis Beban Kerja Mental Pekerja Menggunakan Metode Nasa TLX di PT Aneka Jasa Sorwako · 2025 · Muhammad Irgi Fachrezy et al.
  86. Analisis Beban Kerja Mental pada Divisi Mixing PT Cosmotech Multi Mandiri dengan Metode Nasa-TLX · 2025 · Fadhilah, Anggar Rizki et al.
  87. Mental Workload in Truck Driving: A NASA-TLX and HRV-Based Comparison Across Day-Night and Rural-Urban Conditions · 2025 · Hastiya Annisa Fitri et al.
  88. Cognitive ergonomics: Triangulation of physiological, subjective, and performance-based mental workload assessments · 2025 · Fogelberg, Emmie et al.
  89. Takeover performance prediction model considering cognitive load: analysis of subjective and objective factors · 2025 · Ge, Huimin et al.
  90. The Impact of N-back-Induced Cognitive Load and Time Budget on Takeover Performance · 2025 · Goodridge, Courtney Michael et al.
  91. The Impact of N-back-Induced Mental Workload and Time Budget on Takeover Performance · 2025 · Goodridge, Courtney Michael et al.
  92. Pengukuran Beban Kerja Mental pada Karyawan Quality Control di PT Delta Dunia Tekstil 1 dengan Menggunakan Metode Nasa-Tlx · 2025 · Aqsal Faiz Al Hayy et al.
  93. Mental Workload and Work Stress among Train Drivers and Their Associated Factors: A Cross-Sectional Study in Indonesia · 2025 · Hidayat, Marizca Saras Chitra et al.
  94. Effects of non-driving-related tasks on driving performance after takeover request in automated driving (Level 3): a simulator study · 2025 · Horáková, Miroslava et al.
  95. Recognition of drivers' mental workload in simulated driving using EEG signals from different brain regions and machine learning algorithms · 2025 · Huang, Jiaqi et al.
  96. A Dataset on Takeover during Distracted L2 Automated Driving · 2025 · Hwang, Jiwoo et al.
  97. WORKLOAD OF HELICOPTER PILOTS AND ITS IMPACT ON FLIGHT PERFORMANCE · 2025 · Institute of Aeronautics and Applied Mechanics, Warsaw University of Technology, Warsaw, Poland et al.
  98. Does visual-audio feedback impair response performance and increase workload? using detection response task and NASA-TLX to examine the effect of the HMI information on driver performance at unsignalized intersections · 2025 · Ju, Yunjie et al.
  99. Mental workload, situational awareness, and safety culture in high-speed craft navigation: A multidimensional analysis of Turkish bridge officers · 2025 · Kartoglu, Cem et al.
  100. Towards Safe and Comfortable Vehicle Control Transitions: A Systematic Review of Takeover Time, Time Budget, and Takeover Performance · 2025 · Liang, Kexin et al.
  101. A Study of Ergonomic Workload Evaluation on Driving and Working of Excavator using Virtual Reality Motion Simulator · 2025 · Kim, Jong-Hyun et al.
  102. Evaluating In-Car Tasks’ Distraction Effects with Drive-In Lab · 2025 · Kujala, Tuomo et al.
  103. A Comparative Study of Mental Workload among Truck Drivers: The Effects of Truck Type and Age Using HRV Metrics · 2025 · Siti Hidayanti Mutiara Kurnia et al.
  104. An Assessment of Researchers’ Mental Workload and Fatigue While Engaged in Research Using Machine Learning and NASA-TLX · 2025 · Lecturer, Department of Industrial and Production Engineering, Jashore University of Science and Technology, Jashore, 7408, Bangladesh et al.
  105. Investigating the Relationship and Predictive Modeling Between Mental Workload and Task Performance in Multitasking Human–Computer Interaction Environments · 2025 · Li, Kuntong et al.
  106. An In-Vehicle Digital Representation Model for Identifying the Channel and Level of Driver Workload Based on EEG Signals · 2025 · Liu, Tiancheng et al.
  107. Assessing Cognitive Workload and Driver Performance: A Comparative Study of Pneumatic and Vibrotactile Haptic Alerts for Takeover Requests in Autonomous Vehicles · 2025 · Liu, Yang et al.
  108. Integrative Framework and Future Prospects for Remote Driving Workload Research · 2025 · Luo, Fan et al.
  109. Temporal Analysis of Cognitive Workload During Manual and Partial Driving Automation Based on the Detection Response Task · 2025 · Mahmoodzadeh, Mobina et al.
  110. Insights for the Future of Car Rental and Ridesharing: Driving Behavior Across Different Levels of Automation · 2025 · Meda, Pranav et al.
  111. DRIVER DISTRACTION ASSOCIATED WITH MOBILE PHONE TACTILE TASKS: A DRIVING SIMULATOR-BASED STUDY · 2025 · Mohd Siam, Mohd Firdaus et al.
  112. Air traffic controllers communication analysis as a proxy of task demand and mental workload: Using voice recording markers for safety critical task · 2025 · Muñoz-de-Escalona, Enrique et al.
  113. A prediction model of the mental workload of pilots based on improved multiple resource theory · 2025 · Pei, Huining et al.
  114. Mental Workload: Definition and Measurement Review · 2025 · Prasetyo, Ridwan Aji Budi et al.
  115. Mental Workload Wars: Audio-based XR Awakens · 2025 · Pretty, Emma Jane et al.
  116. Machine learning performance in EEG-based mental workload classification across task types: a systematic review · 2025 · Pušica, Miloš et al.
  117. Predicting academic performance in mathematics with NASA-TLX: A brief study in 15-year-old students in Spain · 2025 · Quílez-Maimón, Arturo et al.
  118. Quantifying Mental Workload in Rail Traffic Control: An Eye-tracking Investigation under varying Task Demands and Expertise Levels · 2025 · Ransing, Vishwajeet et al.
  119. A New Method for Inducing Mental Fatigue: A High Mental Workload Task Paradigm Based on Complex Cognitive Abilities and Time Pressure · 2025 · Ren, Lei et al.
  120. Assessment of Mental Workload among Consumer Packaging Operators in Palm Oil Mills using NASA-TLX · 2025 · Rishelin, Nadya et al.
  121. Continuous Assessment of Mental Workload During Complex Human–Machine Interaction: Inferring Cognitive State from Signals External to the Operator · 2025 · Roques, Axel et al.
  122. Analysis of Employee Mental Workload Using The NASA-TLX Method (Case Study at PT. ABC) · 2025 · Saputra, Reza et al.
  123. Pengukuran Beban Kerja Fisik dan Mental Operator Quality Control Kain Rajut di PT XYZ Dengan Metode Nasa TLX dan Work Load Analysis · 2025 · Danu Adi Saputro et al.
  124. Dynamic Estimation of Mental Workload and Operator Accuracy for Time-Constrained Binary Classification Tasks · 2025 · Seraj, Raihan et al.
  125. Dynamic Head-Up Display Design: Cognitive Load as a Parametric Driver · 2025 · Solombrino, Laetitia Pina-Lydia et al.
  126. Disposition towards automated driving scale (DADS): Development and psychometric properties of a brief self-report measure to assess subject’s disposition towards automated driving · 2025 · Somma, Antonella et al.
  127. Temporal Analysis of Cognitive Workload During Manual and Partial Driving Automation Based on the Detection Response Task · 2025 · Strayer, David L.
  128. Measurement mental and physical workload in final-year thesis students in the faculty of engineering at Universitas Muhammadiyah Cirebon · 2025 · Susanto, Budi et al.
  129. Comparative Analysis of Mental Workload in Industrial Engineering Laboratory Assistants Using the NASA-TLX Method · 2025 · Tajtibra, Firli et al.
  130. Design Matters: Scale Design and Rounding Ratings Impacts NASA-TLX Results · 2025 · Taylor, Skye S. et al.
  131. Evaluating mental workload among academic personnels using the CarMen-Q Scale in Tokat, Ankara, and Sivas · 2025 · Tosun, Samet et al.
  132. Impact of the difficulty of the box task on its sensitivity when combined with a detection response task to assess secondary task workload · 2025 · Trommler, Daniel et al.
  133. Multimodal Assessment of Mental Workload During Automated Vehicle Remote Assistance: Modeling of Eye-Tracking-Related, Skin Conductance, and Cardiovascular Indicators · 2025 · Walocha, Fabian et al.
  134. A Psychophysiological Model Based on Machine Learning Algorithms for Evaluating Commercial Airline Pilots' Mental Workload in Flight‐Simulation Context · 2025 · Wang, Lei et al.
  135. Exploring how physio-psychological states affect drivers’ takeover performance in conditional automated vehicles · 2025 · Wang, Ange et al.
  136. Fine-Grained Mental Workload Estimation Based on Eeg Signal Analysis · 2025 · Wang, Yingshan et al.
  137. Analisis Beban Kerja Mental pada Pekerja Kantor Menggunakan Metode NASA-TLX · 2025 · Widyastuti, Lestari et al.
  138. Quantifying Cognitive Workload in ICU Nursing: A Computational Modeling Approach to ECMO Circuit Priming · 2025 · Wu, Bangjie et al.
  139. Pilot mental workload analysis in the A320 traffic pattern based on HRV features · 2025 · Yuan, Jiajun et al.
  140. Identifikasi beban kerja mental operator forklift PT. NDIS menggunakan metode NASA-Task Load Index · 2025 · Yusuf, Rusli et al.
  141. Measurement of Mental Workload with The NASA-TLX Method on Employees of PT XYZ · 2025 · Zahra, Salsabila Aulia et al.
  142. Effect of Tunnel Length on Driving Workload and Performance · 2025 · Zhang, Xiaodong et al.
  143. Pilot Mental Workload Assessment Using fNIRS-Based Brain Effective Connectivity During Crosswind Approach and Landing · 2025 · Zhang, Chenyang et al.
  144. Deriving workload from driving behavior and psycho-physiology in work zones · 2025 · Zhao, Chi et al.
  145. Effects of subjective driving workload on hazard perception performance in older drivers: A driving simulation study · 2025 · Zhou, Yiwen et al.
  146. From Concept to Representation: Modeling Driving Capability and Task Demand with a Multimodal Large Language Model · 2025 · Zhou, Haoran et al.
  147. Using a traffic climate scale to understand drivers’ perceptions of their traffic system: An examination of measurement invariance across eight countries · 2025 · Öztürk, İbrahim et al.
  148. Investigating the effect of drivers’ mental workload on the occurrence of driving anger among urban drivers in Qazvin city · 2024 · Abdi, Hanieh et al.
  149. Analysis of Causal Factor of Driver Fatigue in the Driving in Different Driving Conditions · 2024 · Adachi, Masataka et al.
  150. Measuring Jakarta Air Traffic Controllers’ Mental Workload : An In Depth Analysis Using Subjective Workload Assessment Technique · 2024 · Adiliawijaya Putriekapuja, Rany et al.
  151. Mental workload analysis using NASA-TASK LOAD INDEX on manual napkin tissue machine in PT. XYZ · 2024 · Errina Febi Adriyanti et al.
  152. Evaluation of Mental Workload Using the NASA-TLX Method on Call Center Operators at PT. XYZ Makassar · 2024 · Ahmad, Fauziah
  153. Analisis Beban Kerja Mental Menggunakan Metode NASA-TLX pada Engineering Departement (Studi Kasus PT. Muliaglass Float Division) · 2024 · Alfianto, Rafly et al.
  154. Analisis Pengukuran Beban Kerja Mental Pekerja Produksi CV. Hikmah Jaya Garment Menggunakan Metode NASA-TLX dan RSME · 2024 · Maulida Dewi Amanda et al.
  155. Human-centered design and evaluation of a workplace for the remote assistance of highly automated vehicles · 2024 · Schrank, Andreas et al.
  156. Validation of a one-item acute stress scale for driving tasks · 2024 · Dahlman, Anna Sjörs et al.
  157. Heart rate dynamics for cognitive load estimation in a driving simulation task · 2024 · Arutyunova, Karina Rollandovna et al.
  158. Analisis Beban Kerja Mental Mahasiswa Terhadap Sistem Perkuliahan Daring dengan Metode NASA-TLX · 2024 · Ayu Sista Dewi, Desak et al.
  159. Capturing the Mind: Non-Driving-Related Tasks as a Window into Cognitive Engagement in Automated Driving · 2024 · Bai, Xiaolu et al.
  160. The effects of increased mental workload of air traffic controllers on time perception: Behavioral and physiological evidence · 2024 · Balta, Eirini et al.
  161. Using the ISO Detection response task to measure the cognitive load of driving four separate vehicles on two distinct highways · 2024 · Biondi, Francesco N. et al.
  162. Measuring cognitive load in multitasking using mobile fNIRS · 2024 · Boere, Katherine et al.
  163. Measuring the Cognitive Workload of Working Adult Students in Batam's Higher Education Institutions: A NASA-TLX Approach · 2024 · Bora, M Ansyar et al.
  164. Driver Profiling and Bayesian Workload Estimation Using Naturalistic Peripheral Detection Study Data · 2024 · Caber, Nermin et al.
  165. Mental workload analysis of Industrial Engineering students in Cebu Technological University: National Aeronautics and Space Administration-Task Load Index · 2024 · Castilla, Delfa G. et al.
  166. Evaluating the Cognitive Load of Pilots: A Review of Workload Assessment Tools and Data Analysis Methods · 2024 · Cesare, Michele Giuseppe Di et al.
  167. Examining mental workload based on multiple physiological signals: Review of the multi-attribute task battery (MATB) technique · 2024 · Chai, Jiapu et al.
  168. Performance Analysis of Driving Ability (P-Drive): Investigating Construct Validity and Concordance of Australasian Data · 2024 · Cheal, Beth et al.
  169. Exploring the associations of demographics and scale measures with cognitive driving behavior among older drivers in China · 2024 · Chen, Bingshuo et al.
  170. What is good? Exploring the applicability of a one item measure as a proxy for measuring acceptance in driver-vehicle interaction studies · 2024 · Buchner, Claudia et al.
  171. Reliable but multi-dimensional cognitive demand in operating partially automated vehicles · 2024 · Lohani, M et al.
  172. Analisis Beban Kerja Mental Dosen Fakultas XYZ Menggunakan Metode Nasa TLX · 2024 · Dewi, Grita Supriyanto et al.
  173. Investigating mental workload across task modalities: a multimodal analysis using pupillometry · 2024 · Dhengre, Snehal et al.
  174. Neuropsychological and Fatigue Predictors of Driving Ability After Mild to Moderate Traumatic Brain Injury: A Meta-analysis and Pilot Study · 2024 · Egeto, Peter
  175. Utilising raw psycho-physiological data and functional data analysis for estimating mental workload in human drivers · 2024 · Eniyandunmo, David et al.
  176. Comparative analysis of mental workload and performance between young and elderly drivers: Implications for road safety and age-related driving challenges · 2024 · Entezarizarch, Elham et al.
  177. Workload Analysis of Rapid Response Team Regional Disaster Management Agency at the Support Command Post of the COVID-19 Task Force Special Region of Yogyakarta Indonesia · 2024 · Farihah, Tutik et al.
  178. Fatigue and mental underload further pronounced in L3 conditionally automated driving: Results from an EEG experiment on a test track · 2024 · Figalova, Nikol et al.
  179. A quantitative model of takeover request time budget for conditionally automated driving · 2024 · Tanshi, Foghor et al.
  180. Effects of In-Vehicle Touchscreen Location on Driver Task Performance, Eye Gaze Behavior, and Workload During Conditionally Automated Driving: Nondriving-Related Task and Take-Over · 2024 · Ban, Gayoung et al.
  181. Assessing Energy-Related Situation Awareness Using Self-Controlled Occlusion During Electric Vehicle Driving Scenes · 2024 · Gödker, Markus et al.
  182. Gaze entropy metrics for mental workload estimation are heterogenous during hands-off level 2 automation · 2024 · Goodridge, Courtney M. et al.
  183. The Impact of N-back-Induced Mental Workload and Time Budget on Takeover Performance · 2024 · Goodridge, Courtney Michael et al.
  184. Analisis beban kerja mental operator produksi aksesoris motor menggunakan metode National Aeronautics And Space Administartion Task Load Index (NASA TLX) di CV. Anugerah Teknik · 2024 · Hanifah, Abu et al.
  185. Latent profile analysis of mental workload among emergency department nurses: a cross-sectional study · 2024 · Hao, Xiaoyan et al.
  186. Cognitive Workload Estimation in Conditionally Automated Vehicles Using Transformer Networks Based on Physiological Data · 2024 · Wang, Ange et al.
  187. EEG Dataset Collection for Mental Workload Predictions in Flight-Deck Environment · 2024 · Hernández-Sabaté, Aura et al.
  188. Pengukuran Beban Kerja Mental Mahasiswa Pekerja Fakultas Ekonomi Dan Bisnis Universitas Muhammadiyah Gresik Menggunakan Metode Nasa-TLX · 2024 · Hidayati, Roziana Ainul et al.
  189. Investigating mental workload caused by NDRTs in highly automated driving with deep learning · 2024 · Hu, Xintao et al.
  190. Analisis Beban Kerja Mental Dengan Metode NASA-TLX Pada Karyawan UD. XYZ · 2024 · Iztihar, Jauhara et al.
  191. BEBAN KERJA MENTAL DENGAN METODE NASA TLX PADA KARYAWAN TERMINAL LPG TANJUNG SEKONG · 2024 · J, Neti Wanti et al.
  192. Discount Driver Mental Workload Assessment · 2024 · Jiang, Haoyan et al.
  193. Using Multimodal Methods and Machine Learning to Recognize Mental Workload: Distinguishing Between Underload, Moderate Load, and Overload · 2024 · Jiang, Zebin et al.
  194. Assessment of Drivers’ Mental Workload by Multimodal Measures during Auditory-Based Dual-Task Driving Scenarios · 2024 · Huang, Jiaqi et al.
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