Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-05-11T01:07:30.298200Z
Paper Citation Record · LEDGER
As of 5 August 2026, this Paper Citation Record lists 67 of 67 outbound references and 0 inbound Pith citation observations for arXiv:2605.06909.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-05-11T01:07:30.298200Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-05T06:32:48.257954+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
67 of 67 outbound references displayed
External citation measurements
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Observation 421aab70-4a51-4463-b261-9c8cff3eafff · outbound
Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The extended classroom: Meeting students’ needs using a virtual environment
Reference 1
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Systematic review of augmented reality training systems
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality A review on virtual reality skill training applications
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The impact of avatar and environment congruence on plausibility, embodiment, presence, and the Proteus effect in virtual reality
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Examining virtual reality as an alternative to in-person and online learning environments
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The effects of virtual reality, augmented reality, and mixed reality as training enhancement methods: A meta-analysis
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Cognitive load during problem solving: Effects on learning
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Cognitive load theory
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Cognitive load theory: New conceptualizations, specifications, and integrated research perspectives
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Effectiveness of part-task training and increasing-difficulty training strategies
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Test-enhanced learning: Taking memory tests improves long-term retention
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Development of NASA-TLX (Task Load Index): Results of empirical and theoretical research
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The Subjective Workload Assessment Technique: A scaling procedure for measuring mental workload
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Neuroergonomics
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Cognitive load theory, learning difficulty, and instructional design
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Desirable difficulties in theory and practice
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Does one-size training fit all? Evaluating adaptive learning for VR assembly training
Reference 21
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Towards user-aware VR learning environments: Combining brain-computer interfaces with vir- tual reality for mental state decoding
Reference 22
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The effects of VR and TP visual cues on motor imagery subjects and performance
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Performance monitoring via functional near infrared spec- troscopy for virtual reality based basic life support training
Reference 24
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Assessing cognitive load in virtual reality: A comparative analysis of objective and subjective measures
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Reference 30
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Demonstrating brain-level interactions between visuospatial attentional demands and working memory load while driving using functional near- infrared spectroscopy
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Assessing the driver’s current level of working memory load with high density functional near- infrared spectroscopy: A realistic driving simulator study
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The angular gyrus: Multiple functions and multiple subdivisions
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Frontoparietal and cingulo-opercular networks play dissociable roles in control of working memory
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Cingulo-opercular subnetworks motivate frontoparietal subnetworks during distinct cognitive control demands
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The role of PFC networks in cognitive control and executive function
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Reference 42
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Reference 45
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Estimation of optical pathlength through tissue from direct time of flight measurement
Reference 49
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Reference 51
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Comparison of oxyhemoglobin and deoxyhemoglobin signal reliability with and without global mean removal for digit manipulation motor tasks
Reference 52
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality End-tidal CO2: An important parameter for a correct interpretation in functional brain studies using speech tasks
Reference 53
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The effect of inner speech on arterial CO2 and cerebral hemodynamics and oxygenation: A functional NIRS study
Reference 54
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The role of the mid-dorsolateral prefrontal cortex in working memory
Reference 56
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The role of dorsolateral prefrontal cortex in the selection of action as revealed by functional imaging
Reference 57
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Willed action and the prefrontal cortex in man: A study with PET
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Reference 59
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Reference 60
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The cognitive and neuroanatomical correlates of multitasking
Reference 61
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Neuroanatomical dissociation between bottom-up and top-down processes of visuospatial selective attention
Reference 62
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Causal role of the angular gyrus in insight-driven memory reconfiguration
Reference 63
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Effects of a cognitive training on spatial learning and associated functional brain activations
Reference 64
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality Changes in brain activation during the acquisition of a new bimanual coordination task
Reference 65
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality The use of virtual reality alone does not promote training performance (but sense of presence does)
Reference 66
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Leveraging fNIRS to Evaluate Workload for Adaptive Training in Virtual Reality A novel mutual information-based approach for neurophysiological characterization of sense of presence in virtual reality
Reference 67
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