A randomized trial testing the effectiveness of virtual reality as a tool for pro-environmental dietary change | Scientific Reports – Nature.com

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Fauville, G., Queiroz, A. C. M. & Bailenson, J. N. Chapter 5Virtual reality as a promising tool to promote climate change awareness. In Technology and Health (eds Kim, J. & Song, H.) 91108 (Academic Press, 2020).

Chapter Google Scholar

Soliman, M., Peetz, J. & Davydenko, M. The impact of immersive technology on nature relatedness and pro-environmental behavior. J. Media Psychol. Theor. Methods Appl. 29, 817 (2017).

Article Google Scholar

Spangenberger, P., Geiger, S. M. & Freytag, S.-C. Becoming nature: Effects of embodying a tree in immersive virtual reality on nature relatedness. Sci. Rep. 12, 1311 (2022).

ADS CAS PubMed PubMed Central Article Google Scholar

Deringer, S. A. & Hanley, A. Virtual reality of nature can be as effective as actual nature in promoting ecological behavior. Ecopsychology 13, 219226 (2021).

Article Google Scholar

Blascovich, J. & Bailenson, J. Infinite Reality: Avatars, Eternal Life, New Worlds, and the Dawn of the Virtual Revolution (Harper Collins, 2011).

Google Scholar

Ahn, S. J. Incorporating immersive virtual environments in health promotion campaigns: A construal level theory approach. Health Commun. 30, 545556 (2015).

PubMed Article Google Scholar

Spence, A., Poortinga, W. & Pidgeon, N. The psychological distance of climate change. Risk Anal. 32, 957972 (2012).

PubMed Article Google Scholar

Brgger, A., Dessai, S., Devine-Wright, P., Morton, T. A. & Pidgeon, N. F. Psychological responses to the proximity of climatechange. Nat. Clim. Chang. 5, 10311037 (2015).

ADS Article Google Scholar

Ajzen, I. The theory of planned behavior. Organ. Behav. Hum. Decis. Process. 50, 179211 (1991).

Article Google Scholar

Grothmann, T. & Patt, A. Adaptive capacity and human cognition: The process of individual adaptation to climate change. Glob. Environ. Change 15, 199213 (2005).

Article Google Scholar

Witte, K. Putting the fear back into fear appeals: The extended parallel process model. Commun. Monogr. 59, 329349 (1992).

Article Google Scholar

van Valkengoed, A. M. & Steg, L. Meta-analyses of factors motivating climate change adaptation behaviour. Nat. Clim. Change 9, 158163 (2019).

ADS Article Google Scholar

Floyd, D. L., Prentice-Dunn, S. & Rogers, R. W. A meta-analysis of research on protection motivation theory. J. Appl. Soc. Psychol. 30, 407429 (2000).

Article Google Scholar

Lee, K. M. Presence, explicated. Commun. Theory 14, 2750 (2004).

ADS Article Google Scholar

Petersen, G. B., Petkakis, G. & Makransky, G. A study of how immersion and interactivity drive VR learning. Comput. Educ. 179, 104429 (2022).

Article Google Scholar

Cummings, J. J. & Bailenson, J. N. How immersive is enough? A meta-analysis of the effect of immersive technology on user presence. Media Psychol. 19, 138 (2015).

Google Scholar

Makransky, G., Petersen, G. B. & Klingenberg, S. Can an immersive virtual reality simulation increase students interest and career aspirations in science? Br. J. Educ. Technol. 51, 20792097 (2020).

Article Google Scholar

Mayer, R. E. & Fiorella, L. The Cambridge Handbook of Multimedia Learning Vol. 3 (Cambridge University Press, 2021).

Book Google Scholar

Makransky, G. The immersion principle in multimedia learning. In The Cambridge Handbook of Multimedia Learning Vol. 3 (eds Mayer, R. & Fiorella, L.) 296302 (Cambridge University Press, 2021).

Chapter Google Scholar

Petersen, G. B., Klingenberg, S., Mayer, R. E. & Makransky, G. The virtual field trip: Investigating how to optimize immersive virtual learning in climate change education. Br. J. Educ. Technol. 51, 20982114 (2020).

Article Google Scholar

Meijers, M. H. C. et al. Stimulating sustainable food choices using virtual reality: Taking an environmental vs health communication perspective on enhancing response efficacy beliefs. Environ. Commun. https://doi.org/10.1080/17524032.2021.1943700 (2021).

Article Google Scholar

Springmann, M. et al. Health and nutritional aspects of sustainable diet strategies and their association with environmental impacts: A global modelling analysis with country-level detail. Lancet Planet Health 2, e451e461 (2018).

PubMed PubMed Central Article Google Scholar

Springmann, M., Godfray, H. C. J., Rayner, M. & Scarborough, P. Analysis and valuation of the health and climate change cobenefits of dietary change. Proc. Natl. Acad. Sci. U.S.A. 113, 41464151 (2016).

ADS CAS PubMed PubMed Central Article Google Scholar

Fonseca, D. & Kraus, M. A comparison of head-mounted and hand-held displays for 360 videos with focus on attitude and behavior change. In Proc. 20th International Academic Mindtrek Conference, 287296 (Association for Computing Machinery, 2016). https://doi.org/10.1145/2994310.2994334.

Schultz, P. W., Nolan, J. M., Cialdini, R. B., Goldstein, N. J. & Griskevicius, V. The constructive, destructive, and reconstructive power of social norms: Reprise. Perspect. Psychol. Sci. 13, 249254 (2018).

PubMed Article Google Scholar

Peifer, C., Schnfeld, P., Wolters, G., Aust, F. & Margraf, J. Well done! Effects of positive feedback on perceived self-efficacy, flow and performance in a mental arithmetic task. Front. Psychol. 11, 1008 (2020).

PubMed PubMed Central Article Google Scholar

Trope, Y. & Liberman, N. Construal-level theory of psychological distance. Psychol. Rev. 117, 440463 (2010).

PubMed PubMed Central Article Google Scholar

Shwom, R., Dan, A. & Dietz, T. The effects of information and state of residence on climate change policy preferences. Clim. Change 90, 343358 (2008).

ADS Article Google Scholar

Spence, A. & Pidgeon, N. Framing and communicating climate change: The effects of distance and outcome frame manipulations. Glob. Environ. Change 20, 656667 (2010).

Article Google Scholar

Brgger, A., Morton, T. A. & Dessai, S. Proximising climate change reconsidered: A construal level theory perspective. J. Environ. Psychol. 46, 125142 (2016).

Article Google Scholar

Fox, J., McKnight, J., Sun, Y., Battelle, D. M. & Crawfis, R. Using a serious game to communicate risk and minimize psychological distance regarding environmental pollution. Telemat. Inform. 46, 101320 (2020).

Article Google Scholar

Breves, P. & Schramm, H. Bridging psychological distance: The impact of immersive media on distant and proximal environmental issues. Comput. Hum. Behav. 115, 106606 (2021).

Article Google Scholar

Hsu, W.-C., Tseng, C.-M. & Kang, S.-C. Using exaggerated feedback in a virtual reality environment to enhance behavior intention of water-conservation. J. Educ. Technol. Soc. 21, 187203 (2018).

Google Scholar

Bailey, J. O. et al. The impact of vivid messages on reducing energy consumption related to hot water use. Environ. Behav. 47, 570592 (2015).

Article Google Scholar

Plechat, A., Morton, T., Perez-Cueto, F. J. A. & Makransky, G. Why just Experience the Future when you can Change it: Virtual Reality can Increase Pro-Environmental Food Choices through Self-Efficacy. Technology, Mind, and Behavior (2022).

Plechat, A., Morton, T., Perez-Cueto, F. J. & Makransky, G. Virtual Reality Intervention Reduces Dietary Footprint: Implications for Environmental Communication in the Metaverse. https://doi.org/10.31234/osf.io/3ta8d (2022).

Ahn, S. J., Hahm, J. M. & Johnsen, K. Feeling the weight of calories: Using haptic feedback as virtual exemplars to promote risk perception among young females on unhealthy snack choices. Media Psychol. 22, 626652 (2019).

PubMed Article Google Scholar

Chirico, A., Scurati, G. W., Maffi, C., Huang, S. & Gaggioli, A. Designing virtual environments for attitudes and behavioral change in plastic consumption: A comparison between concrete and numerical information. Virtual Real. https://doi.org/10.1007/s10055-020-00442-w (2020).

Article Google Scholar

Ahn, S. J., Fox, J., Dale, K. R. & Avant, J. A. Framing virtual experiences: Effects on environmental efficacy and behavior over time. Commun. Res. 42, 839863 (2015).

Article Google Scholar

Bandura, A. Self-efficacy: Toward a unifying theory of behavioral change. Psychol. Rev. 84, 191215 (1977).

CAS PubMed Article Google Scholar

Cohen, J. Statistical Power Analysis for the Behavioral Sciences 2nd edn. (Routledge, 1988).

MATH Google Scholar

CONCITO. The Large Climate Database, Version 1 (2021).

Barilla Foundation & Research Unit on Nutrition, Diabetes and Metabolism. A One Health Approach to Food, the Double Pyramid Connecting Food Culture, Health and Climate (University of Naples Federico, 2021).

Google Scholar

Huang, H. Media use, environmental beliefs, self-efficacy, and pro-environmental behavior. J. Bus. Res. 69, 2206 (2015).

Article Google Scholar

R Core Team. R: A Language and Environment for Statistical Computing (2020).

Nisa, C. F., Blanger, J. J., Schumpe, B. M. & Faller, D. G. Meta-analysis of randomised controlled trials testing behavioural interventions to promote household action on climate change. Nat. Commun. 10, 4545 (2019).

ADS CAS PubMed PubMed Central Article Google Scholar

Dimotakis, N., Mitchell, D. & Maurer, T. Positive and negative assessment center feedback in relation to development self-efficacy, feedback seeking, and promotion. J. Appl. Psychol. 102, 15141527 (2017).

PubMed Article Google Scholar

Tschannen-Moran, M. & McMaster, P. Sources of self-efficacy: Four professional development formats and their relationship to self-efficacy and implementation of a new teaching strategy. Elem. Sch. J. 110, 228245 (2009).

Article Google Scholar

Schwenk, G. & Mser, G. Intention and behavior: A Bayesian meta-analysis with focus on the Ajzen-Fishbein model in the field of environmental behavior. Qual. Quant. 43, 743755 (2009).

Article Google Scholar

Ahn, S.J.-G., Bailenson, J. N. & Park, D. Short- and long-term effects of embodied experiences in immersive virtual environments on environmental locus of control and behaviour. Comput. Hum. Behav. 39, 235245 (2014).

Article Google Scholar

Markowitz, D. M., Laha, R., Perone, B. P., Pea, R. D. & Bailenson, J. N. Immersive virtual reality field trips facilitate learning about climate change. Front. Psychol. 9, 2364 (2018).

PubMed PubMed Central Article Google Scholar

Nielsen, K. S. et al. The motivationimpact gap in pro-environmental clothing consumption. Nat. Sustain. https://doi.org/10.1038/s41893-022-00888-7 (2022).

Article Google Scholar

Au, J., Gibson, B. C., Bunarjo, K., Buschkuehl, M. & Jaeggi, S. M. Quantifying the difference between active and passive control groups in cognitive interventions using two meta-analytical approaches. J. Cogn. Enhanc. 4, 192210 (2020).

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A randomized trial testing the effectiveness of virtual reality as a tool for pro-environmental dietary change | Scientific Reports - Nature.com

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