Learning from navigation, and tasks assessing its accuracy: The role of visuospatial abilities and wayfinding inclinations

Journal of Environmental Psychology - Tập 75 - Trang 101614 - 2021
Chiara Meneghetti1, Laura Miola1, Enrico Toffalini1, Massimiliano Pastore2, Francesca Pazzaglia1
1Department of General Psychology, University of Padova, Italy
2Department of Developmental and Social Psychology, University of Padova, Italy

Tài liệu tham khảo

Allen, 1996, Predicting environmental learning from spatial abilities: An indirect route, Intelligence, 22, 327, 10.1016/S0160-2896(96)90026-4 2010 Borenstein, 2009 Burgess, 2006, Spatial memory: How egocentric and allocentric combine, Trends in Cognitive Sciences, 10, 551, 10.1016/j.tics.2006.10.005 Bürkner, 2017, brms: An R package for Bayesian multilevel models using Stan, Journal of Statistical Software, 80, 1, 10.18637/jss.v080.i01 Burnham, 2004, Multimodal inference: Understanding AIC and BIC in model selection, Sociological Methods & Research, 33, 261, 10.1177/0049124104268644 Condon, 2015, Sense of direction: General factor saturation and associations with the Big-Five traits, Personality and Individual Differences, 86, 38, 10.1016/j.paid.2015.05.023 Corsi, 1972 De Beni, 2014, Batteria visuo-spaziale. Strumenti per la valutazione delle abilità visuo-spaziali nell'arco di vita adulta Denis, 2018 Fields, 2006, Individual skill differences and large-scale environmental learning, Journal of Experimental Psychology: Learning, Memory, and Cognition, 32, 506 Gabry, 2019 Gagnon, 2014, Stepping into a map: Initial heading direction influences spatial memory flexibility, Cognitive Science, 38, 275, 10.1111/cogs.12055 General Assembly of the World Medical Association, 2014, World Medical Association Declaration of Helsinki: Ethical principles for medical research involving human subjects, Journal of the American College of Dentists, 81, 14 Hegarty, 2006, Spatial abilities at different scales: Individual differences in aptitude-test performance and spatial-layout learning, Intelligence, 34, 151, 10.1016/j.intell.2005.09.005 Hegarty, 2002, Development of a self-report measure of environmental spatial ability, Intelligence, 30, 425, 10.1016/S0160-2896(02)00116-2 Hegarty, 2004, A dissociation between mental rotation and perspective-taking spatial abilities, Intelligence, 32, 175, 10.1016/j.intell.2003.12.001 Hegarty, 2005, Individual differences in spatial abilities, 121 He, 2020, How anxiety and growth mindset are linked to navigation ability: Impacts of exploration and GPS use, Journal of Environmental Psychology, 71, 101475, 10.1016/j.jenvp.2020.101475 Hund, 2016, Visuospatial working memory facilitates indoor wayfinding and direction giving, Journal of Environmental Psychology, 45, 233, 10.1016/j.jenvp.2016.01.008 Hund, 2009, The effects of sense of direction and training experience on wayfinding efficiency, Journal of Environmental Psychology, 29, 151, 10.1016/j.jenvp.2008.05.009 Jöreskog, 1993 Kozhevnikov, 2006, Perspective‐taking vs. mental rotation transformations and how they predict spatial navigation performance, Applied Cognitive Psychology: The Official Journal of the Society for Applied Research in Memory and Cognition, 20, 397, 10.1002/acp.1192 Kruschke, 2018, The Bayesian new statistics: Hypothesis testing, estimation, meta-analysis, and power analysis from a Bayesian perspective, Psychonomic Bulletin & Review, 25, 178, 10.3758/s13423-016-1221-4 Labate, 2014, What working memory subcomponents are needed in the acquisition of survey knowledge? Evidence from direction estimation and shortcut tasks, Journal of Environmental Psychology, 37, 73, 10.1016/j.jenvp.2013.11.007 Lawton, 1994, Gender differences in way-finding strategies: Relationship to spatial ability and spatial anxiety, Sex Roles, 30, 765, 10.1007/BF01544230 Lawton, 1996, Strategies for indoor wayfinding: The role of orientation, Journal of Environmental Psychology, 16, 137, 10.1006/jevp.1996.0011 Lhuillier, 2020 Lohman, 1988, Spatial abilities as traits, processes, and knowledge, 181 Lokka, 2019, Toward optimizing the design of virtual environments for route learning: Empirically assessing the effects of changing levels of realism on memory, International Journal of Digital Earth, 12, 137, 10.1080/17538947.2017.1349842 Martínez, 2011, Can fluid intelligence be reduced to ‘simple’ short-term storage?, Intelligence, 39, 473, 10.1016/j.intell.2011.09.001 McElreath, 2016 Mellet, 2010, Impact of the virtual reality on the neural representation of an environment, Human Brain Mapping, 31, 1065, 10.1002/hbm.20917 Meneghetti, 2014, The role of spatial abilities and self-assessments in cardinal point orientation across the lifespan, Learning and Individual Differences, 35, 113, 10.1016/j.lindif.2014.07.006 Meneghetti, 2020, Positive and negative wayfinding inclinations, choice of navigation aids, and how they relate to personality traits, Journal of Individual Differences, 41, 45, 10.1027/1614-0001/a000302 Meneghetti, 2021, Successful navigation: The influence of task goals and working memory, Psychological Research, 85, 634, 10.1007/s00426-019-01270-7 Meneghetti, 2016, Mental representations derived from navigation: The role of visuo-spatial abilities and working memory, Learning and Individual Differences, 49, 314, 10.1016/j.lindif.2016.07.002 Merkle, 2018, blavaan: Bayesian structural equation models via parameter expansion, Journal of Statistical Software, 85, 1, 10.18637/jss.v085.i04 Moffat, 1998, Navigation in a “virtual” maze: Sex differences and correlation with psychometric measures of spatial ability in humans, Evolution and Human Behavior, 19, 73, 10.1016/S1090-5138(97)00104-9 Montello, 2005, Navigation, 257 Muffato, 2019, Spatial mental representations: The influence of age on route learning from maps and navigation, Psychological Research, 83, 1836, 10.1007/s00426-018-1033-4 Muffato, 2020, The role of visuo‐spatial abilities in environment learning from maps and navigation over the adult lifespan, British Journal of Psychology, 111, 70, 10.1111/bjop.12384 Münzer, 2011, Learning routes from visualizations for indoor wayfinding: Presentation modes and individual differences, Spatial Cognition and Computation, 11, 281, 10.1080/13875868.2011.571326 Nys, 2015, Landmark and route knowledge in children's spatial representation of a virtual environment, Frontiers in Psychology, 5, 1522, 10.3389/fpsyg.2014.01522 Pazzaglia, 2017, Acquiring spatial knowledge from different sources and perspectives: Abilities, strategies and representations, 120 Pazzaglia, 2017, Are wayfinding self-efficacy and pleasure in exploring related to shortcut finding? A study in a virtual environment, 55 Pazzaglia, 2018, Tracing a route and finding a shortcut: The working memory, motivational, and personality factors involved, Frontiers in Human Neuroscience, 12, 225, 10.3389/fnhum.2018.00225 2020 Richardson, 1999, Spatial knowledge acquisition from maps and from navigation in real and virtual environments, Memory & Cognition, 27, 741, 10.3758/BF03211566 Ruginski, 2019, GPS use negatively affects environmental learning through spatial transformation abilities, Journal of Environmental Psychology, 64, 12, 10.1016/j.jenvp.2019.05.001 Schönbrodt, 2017, Sequential hypothesis testing with Bayes factors: Efficiently testing mean differences, Psychological Methods, 22, 322, 10.1037/met0000061 Tolman, 1948, Cognitive maps in rats and men, Psychological Review, 55, 189, 10.1037/h0061626 Uttal, 2013, The malleability of spatial skills: A meta-analysis of training studies, Psychological Bulletin, 139, 352, 10.1037/a0028446 Vandenberg, 1978, Mental rotations: A group test of three-dimensional spatial visualization, Perceptual & Motor Skills, 47, 599, 10.2466/pms.1978.47.2.599 Waller, 2004, Using virtual environments to assess directional knowledge, Journal of Environmental Psychology, 24, 105, 10.1016/S0272-4944(03)00051-3 Watanabe, 2010, Asymptotic equivalence of Bayes cross validation and widely applicable information criterion in singular learning theory, Journal of Machine Learning Research, 11, 3571 Weisberg, 2014, Variations in cognitive maps: Understanding individual differences in navigation, Journal of Experimental Psychology: Learning, Memory, and Cognition, 40, 669 Wolbers, 2010, What determines our navigational abilities?, Trends in Cognitive Sciences, 14, 138, 10.1016/j.tics.2010.01.001