1Walker A D. The role of head movements in simulatorsickness generated by a virtual environment [D]. USA:Clemson University, 2008.
2Nolin P, Stipanicic A, Henry M, et al. ClinicaVR:Classroom-CPT, A virtual reality tool for assessingattention and inhibition in children and adolescents [J].Computers in Human Behavior (S0747-5632), 2016, 59:327-333.
3Stanney K M, Kennedy R S, Drexler J M. Cybersicknessis not simulator sickness [C]// Proceedings of the HumanFactors and Ergonomics Society annual meeting. USA:SAGE Publications, 1997,41(2): 1138-1142.
4Rebenitsch L R. Cybersickness prioritization andmodeling [D]. USA: Michigan State University, 2015.
5Wei C S, Ko L W, Chuang S W, et al. EEG-basedevaluation system for motion sickness estimation [C]//International IEEE/EMBS Conference on NeuralEngineering. USA: IEEE, 2011: 100-103.
6Dong X, Yoshida K, Stoffregen T A. Control of a virtualvehicle influences postural activity and motion sickness[J]. Journal of Experimental Psychology Applied(S1076-898X), 2011, 17(2): 128-138.
7Aykent B, Merienne F, Guillet C, et al. Motion sicknessevaluation and comparison for a static driving simulatorand a dynamic driving simulator [J]. Proceedings of theInstitution of Mechanical Engineers, Part D: Journal ofAutomobile Engineering (S0954-4062), 2014, 228(7):818-829.
8Mullen N W, Weaver B, Riendeau J A, et al. DrivingPerformance and Susceptibility to Simulator Sickness:Are They Related? [J]. American Journal ofOccupational Therapy (S0272-9490), 2010, 64(2):288-295.
9Lo W T, So R H. Cybersickness in the presence of scenerotational movements along different axes [J]. AppliedErgonomics (S0003-6870), 2001, 32(1): 1-14.