Increased Audiovisual Immersion Associated with Mirror Neuron System Enhancement Following High Fidelity Vibrokinetic Stimulation
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-13064-9_8
Reference26 articles.
1. Petersen, C. G. (2019). The address of the ass: d-box motion code, personalized surround sound, and focalized immersive spectatorship. Journal of Film and Video, 71, 3–19.
2. Giroux, F., Boasen, J., Sénécal, S., Fredette, M., Tchanou, A. Q., Ménard, J. F., Léger, P. M., et al. (2019). Haptic stimulation with high fidelity vibro-kinetic technology psychophysiologically enhances seated active music listening experience. In 2019 IEEE World Haptics Conference (pp. 151–156). IEEE.
3. Boasen, J., Giroux, F., Duchesneau, M. O., Senecal, S., Leger, P. M., & Menard, J. F. (2020). High-fidelity vibrokinetic stimulation induces sustained changes in intercortical coherence during a cinematic experience. Journal of Neural Engineering, 17.
4. Gardé, A., Léger, P. M., Sénécal, S., Fredette, M., Chen, S. L., Labonté-Lemoyne, É., & Ménard, J. F. (2018). Virtual reality: Impact of vibro-kinetic technology on immersion and psychophysiological state in passive seated vehicular movement. In International Conference on Human Haptic Sensing and Touch Enabled Computer Applications (pp. 264–275). Springer.
5. Gardé, A., Léger, P. M., Sénécal, S., Fredette, M., Labonté-Lemoyne, E., Courtemanche, F., & Ménard, J. F. (2018). The effects of a vibro-kinetic multi-sensory experience in passive seated vehicular movement in a virtual reality context. In Extended Abstracts of the 2018 CHI Conference on Human Factors in Computing Systems (pp. 1–6).
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