A Review of Olfactory Display Designs for Virtual Reality Environments

被引:3
|
作者
Tewell, Jordan [1 ]
Ranasinghe, Nimesha [2 ]
机构
[1] Sacred Heart Univ, Sch Comp Sci & Engn, Fairfield, CT 06825 USA
[2] Univ Maine Syst, Sch Comp & Informat Sci, Orono, ME USA
关键词
Virtual reality; olfaction; odor; smell; presence; immersion; multisensory; ODOR; SENSE; AROMATHERAPY; EXPERIENCES; REACTIVITY; EXPOSURE; CUES;
D O I
10.1145/3665243
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
The field of Virtual Reality continues to evolve to provide an ever-greater sense of immersion to the user. However, VR experiences are still primarily constrained through the human senses of vision and audition, with some interest in haptic (mainly vibrotactile) applications. Only recently have olfactory displays-technologies that generate and deliver scent stimuli-been examined to provide the sense of smell to the human olfactory organ in virtual environments. This article presents a classification and review of olfactory-enhanced virtual reality systems, particularly those that deployed a Head-mounted Display or Cave Automatic Virtual Environment system. In addition, the article provides a discussion of the various technological and design challenges for developing an olfactory display suitable for enhancing virtual reality experiences. Finally, the article proposes future perspectives on the field and includes a table summarizing the characteristics and features of the reviewed systems.
引用
收藏
页数:35
相关论文
共 50 条
  • [21] An olfactory virtual reality system for mice
    Radvansky, Brad A.
    Dombeck, Daniel A.
    NATURE COMMUNICATIONS, 2018, 9
  • [22] The Ultimate Display for Physical Rehabilitation: A Bridging Review on Immersive Virtual Reality
    Elor, Aviv
    Kurniawan, Sri
    FRONTIERS IN VIRTUAL REALITY, 2020, 1
  • [23] An olfactory virtual reality system for mice
    Brad A. Radvansky
    Daniel A. Dombeck
    Nature Communications, 9
  • [24] Programmable Virtual Reality Environments
    Sun, Nanlin
    Feng, Annette
    Patton, Ryan
    Gingold, Yotam
    Lages, Wallace
    2021 IEEE CONFERENCE ON VIRTUAL REALITY AND 3D USER INTERFACES ABSTRACTS AND WORKSHOPS (VRW 2021), 2021, : 619 - 620
  • [25] EVALUATIONS IN VIRTUAL REALITY ENVIRONMENTS
    Tuma, Zdenek
    Kotek, Lubos
    Kroupa, Jiri
    Subrt, Ksmil
    Blecha, Petr
    Kovar, Jiri
    Dado, Miroslav
    Heinrich, Petr
    MM SCIENCE JOURNAL, 2022, 2022 : 6059 - 6063
  • [26] Intelligent virtual environments for virtual reality art
    Cavazza, M
    Lugrin, JL
    Hartley, S
    Le Renard, M
    Nandi, A
    Jacobson, J
    Crooks, S
    COMPUTERS & GRAPHICS-UK, 2005, 29 (06): : 852 - 861
  • [27] Creating the ultimate virtual reality display
    Joo, Won-Jae
    Brongersma, Mark L.
    SCIENCE, 2022, 377 (6613) : 1376 - 1378
  • [28] The Varrier™ autostereoscopic virtual reality display
    Sandin, DJ
    Margolis, T
    Ge, JH
    Girado, J
    Peterka, T
    DeFanti, TA
    ACM TRANSACTIONS ON GRAPHICS, 2005, 24 (03): : 894 - 903
  • [29] Virtual reality helmet display quality influences the magnitude of virtual reality analgesia
    Hoffman, Hunter G.
    Seibel, Eric J.
    Richards, Todd L.
    Furness, Thomas A., III
    Patterson, David R.
    Sharar, Sam R.
    JOURNAL OF PAIN, 2006, 7 (11): : 843 - 850
  • [30] Impacts of 3D visualizations and virtual reality in display designs for remote monitoring of satellite operations
    Buchner, Savannah L.
    Rindfuss, Abigail
    Wood, Jennifer
    Schaub, Hanspeter
    Hayman, Allison P.
    FRONTIERS IN VIRTUAL REALITY, 2025, 6