| dc.relation | Altamura, A. C., Maggioni, E., Dhanoa, T., Ciappolino, V., Paoli, R. A., Cremaschi, L., …
Brambilla, P. (2018). The impact of psychosis on brain anatomy in bipolar disorder: A
structural MRI study. Journal of Affective Disorders, 233(October 2017), 100–109.
https://doi.org/10.1016/j.jad.2017.11.092
Alves, P., Miranda, L., & Morais, C. (2015). Publishing and accessing contents on a virtual
learning environment of a higher education institution. In 2015 10th Iberian Conference on
Information Systems and Technologies (CISTI) (pp. 1–6).
https://doi.org/10.1109/CISTI.2015.7170468
Andersson, G. (2018). Internet interventions: Past, present and future. Internet Interventions,
12(March), 181–188. https://doi.org/10.1016/j.invent.2018.03.008
AP. (2016). Chicago: Centro médico usa realidad virtual para enseñanza - Hoy Chicago.
Retrieved April 26, 2018, from http://www.chicagotribune.com/hoy/ct-hoy-8662179
chicago-centro-medico-usa-realidad-virtual-para-ensenanza-story.html
Archives Center, National Museum of American History, S. I. (2010). Whirlwind Computer
Collection.
Ariyana, Y., & Wuryandari, A. I. (2012). Virtual Interaction on Augmented Reality for
Education with Nonparametric Belief Propagation Algorithm. Procedia - Social and
Behavioral Sciences, 67(November 2011), 590–599.
https://doi.org/10.1016/j.sbspro.2012.11.364
Bailenson, J. N., Yee, N., Merget, D., & Schroeder, R. (2006). The effect of behavioral realism
and form realism of real-time avatar faces on verbal disclosure, nonverbal disclosure,
emotion recognition, and copresence in dyadic interaction. Presence: Teleoperators and Virtual Environments, 15(4), 359–372. https://doi.org/10.1162/pres.15.4.359
Barron, A. B., Hebets, E. A., Cleland, T. A., Fitzpatrick, C. L., Hauber, M. E., & Stevens, J. R.
(2015). Embracing multiple definitions of learning. Trends in Neurosciences, 38(7), 405–
407. https://doi.org/10.1016/j.tins.2015.04.008
Bell, J. T., Fogler, H. S., & Arbor, A. (1995). The Investigation and Application of Virtual
Reality as an Educational Tool. In Proceedings of the American Society for Engineering
Education (pp. 1–11). Anaheim, U.S. Retrieved from
https://www.researchgate.net/profile/Hs_Fogler/publication/247920944_The_Investigation_
and_Application_of_Virtual_Reality_as_an_Educational_Tool/links/55f721fb08ae07629db
fcfee.pdf
Bertrand, J., Brickler, D., Babu, S., Madathil, K., Zelaya, M., Wang, T., … Luo, J. (2015). The
role of dimensional symmetry on bimanual psychomotor skills education in immersive
virtual environments. In 2015 IEEE Virtual Reality Conference, VR 2015 - Proceedings (pp.
3–10). https://doi.org/10.1109/VR.2015.7223317
Biocca, F. (2006). The Cyborg ’ s Dilemma : Progressive Embodiment in Virtual Environments .
The Cyborg ’ s Dilemma : Progressive Embodiment in Virtual Environments [ 1 ],
(December).
Bohil, C. J., Alicea, B., & Biocca, F. A. (2011). Virtual reality in neuroscience research and
therapy. Nature Reviews Neuroscience, 12(12). https://doi.org/10.1038/nrn3122
Bolas, M. T. (1994). Human factors in the design of an immersive display. IEEE Computer
Graphics and Applications, 14(1), 55–59.
Bongers, P. J., Van Hove, P. D., Stassen, L. P. S., Dankelman, J., & Schreuder, H. W. R. (2015).
A new virtual-reality training module for laparoscopic surgical skills and equipment handling: Can multitasking be trained? A randomized controlled trial. Journal of Surgical
Education, 72(2), 184–191. https://doi.org/10.1016/j.jsurg.2014.09.004
Brooks, F. P., Ouh-Young, M., Batter, J. J., & Kilpatrick, P. J. (1990). Project GROPE Haptic
displays for scientific visualization. ACM SIGGRAPH Computer Graphics, 24(4), 177–185.
https://doi.org/10.1145/97880.97899
Brooks Jr, F. P., Airey, J., Alspaugh, J., Bell, A., Brown, R., Hill, C., … Yuan, X. (1992). Six
Generations of Building Walkthrough: Final Technical Report to the National Science
Foundation. North Carolina, U.S.
Brundage, S. B., Brinton, J. M., & Hancock, A. B. (2016). Utility of virtual reality environments
to examine physiological reactivity and subjective distress in adults who stutter. Journal of
Fluency Disorders, 50, 85–95. https://doi.org/10.1016/j.jfludis.2016.10.001
Bryson, S., & Levit, C. (1991). The virtual windtunnel: An environment for the exploration of
three-dimensional unsteady flows. Proceedings of the 2nd Conference on Visualization’91,
(October), 17–24. https://doi.org/10.1109/TVCG.2005.87
Bun, P., Gorski, F., Grajewski, D., Wichniarek, R., & Zawadzki, P. (2017). Low – Cost Devices
Used in Virtual Reality Exposure Therapy. Procedia Computer Science, 104(December
2016), 445–451. https://doi.org/10.1016/j.procs.2017.01.158
Cabero Almerana, J. (2007). Nuevas Tecnologías Aplicadas a la Educación. McGRAW-HILL
INTERAMERICANA DE ESPAÑA, S. A. U (Vol. 1).
Centers for Medicare and Medicaid Services. (2008). Selecting a development approach.
Chuptys, S., & Coninck, J. De. (2013). Head Mounted Displays. In inproceedings (pp. 1–6).
https://doi.org/10.2493/jjspe.54.264
Cipresso, P., Giglioli, I. A. C., Raya, M. A., & Riva, G. (2018). The Past, Present, and Future of Virtual and Augmented Reality Research: A Network and Cluster Analysis of the
Literature. Frontiers in Psychology, 9(November), 1–20.
https://doi.org/10.3389/fpsyg.2018.02086
Comisión de las Comunidades Europeas. (2001). Tecnologías de la información y de la
comunicación en el ámbito del desarrollo El papel de las TIC en la política comunitaria de
desarrollo. Bruselas.
Cornell INSEAD WIPO. (2017). Indicator Rankings & Analysis | Global Innovation Index.
Retrieved April 26, 2018, from https://www.globalinnovationindex.org/analysis-indicator
Cruz-neira, C., Sandin, D. J., & Defanti, T. A. (1993). Surround-Screen Projection-Based Virtual
Reality: The Design and Implementation of the CAVE. In Proceedings of the 20th annual
conference on Computer graphics and interactive techniques (pp. 135–142).
Cruz-Neira, C., Sandin, D. J., DeFanti, T. A., Kenyon, R. V., & Hart, J. C. (1992). The CAVE:
audio visual experience automatic virtual environment. Communications of the ACM, 35(6),
64–72. https://doi.org/10.1145/129888.129892
Da Silva, M. H., Legey, A. P., & Mól, A. C. D. A. (2016). Review study of virtual reality
techniques used at nuclear issues with emphasis on Brazilian research. Annals of Nuclear
Energy, 87, 192–197. https://doi.org/10.1016/j.anucene.2015.08.017
Dávideková, M., Mjartan, M., & Greguš, M. (2017). Utilization of Virtual Reality in Education
of Employees in Slovakia. Procedia Computer Science, 113, 253–260.
https://doi.org/10.1016/j.procs.2017.08.365
Davis, M. C., Can, D. D., Pindrik, J., Rocque, B. G., & Johnston, J. M. (2016). Virtual
Interactive Presence in Global Surgical Education: International Collaboration Through
Augmented Reality. World Neurosurgery, 86, 103–111
https://doi.org/10.1016/j.wneu.2015.08.053
Didehbani, N., Allen, T., Kandalaft, M., Krawczyk, D., & Chapman, S. (2016). Virtual Reality
Social Cognition Training for children with high functioning autism. Computers in Human
Behavior, 62, 703–711. https://doi.org/10.1016/j.chb.2016.04.033
Djukic, T., Mandic, V., & Filipovic, N. (2013). Virtual reality aided visualization of fluid flow
simulations with application in medical education and diagnostics. Computers in Biology
and Medicine, 43(12), 2046–2052. https://doi.org/10.1016/j.compbiomed.2013.10.004
Everett, R. R., & Jacobs, J. F. (1965). Whirlwind I Computer.
Everett, R. R., & Swain, F. E. (1947). Project Whirlwind. SERVOMECHANISMS LABORATORY
MASSACHUSETTS INSTITUTE OF TECHNOLOGY. Massachusetts. Retrieved from
http://libraries.mit.edu/archives/exhibits/project-whirlwind/index.html
Fang, Y., Yan, J., Liu, X., & Wang, J. (2019). Stereoscopic image quality assessment by deep
convolutional neural network. Journal of Visual Communication and Image Representation,
58, 400–406. https://doi.org/10.1016/j.jvcir.2018.12.006
Farra, S., Miller, E. T., Hodgson, E., Cosgrove, E., Brady, W., Gneuhs, M., & Baute, B. (2016).
Storyboard Development for Virtual Reality Simulation. Clinical Simulation in Nursing,
12(9), 392–399. https://doi.org/10.1016/j.ecns.2016.04.002
Feiner, S., Macintyre, B., & Seligmann, D. (1993). Knowledge-based augmented reality.
Communications of the ACM, 36(7), 53–62. https://doi.org/10.1145/159544.159587
Figueroa, P., Coral, M., Boulanger, P., Borda, J., Londoño, E., Vega, F., … Restrepo, D. (2009).
Multi-modal exploration of small artifacts. In Proceedings of the 16th ACM Symposium on
Virtual Reality Software and Technology - VRST ’09 (Vol. 1, p. 67). Kyoto, Japan.
https://doi.org/10.1145/1643928.1643945 Fuchs, H., Bishop, G., Bricken, W., Brooks, F., Brown, M., Burbeck, C., … Wenzel, E. (1992).
Research Directions in Virtual Environments. NSF Invitational Workshop. Chapel Hill.
https://doi.org/10.1145/142413.142416
Gagné, R. M. (1984). Learning outcomes and their effects: Useful categories of human
performance. American Psychologist, 39(4), 377–385. https://doi.org/10.1037/0003
066X.39.4.377
Graells, P. M. (2015). Las TIC y sus aportaciones a la sociedad. ResearchGate, (35), 7.
Retrieved from
https://www.researchgate.net/publication/267419766_LAS_TIC_Y_SUS_APORTACIONE
S_A_LA_SOCIEDAD
Greenwald, S. W., Kulik, A., Beck, S., Cobb, S., Parsons, S., Newbutt, N., … Maes, P. (2017).
Technology and Applications for Collaborative Learning in Virtual Reality. Technology and
Applications for Collaborative Learning in Virtual Reality, 719–726. Retrieved from
https://repository.isls.org/bitstream/1/210/1/115.pdf
Guedes, H. G., Câmara Costa Ferreira, Z. M., Ribeiro de Sousa Leão, L., Souza Montero, E. F.,
Otoch, J. P., & Luiz de Almeida Artifon, E. (2019). Virtual reality simulator versus box
trainer to teach minimally invasive procedures: A meta-analysis. International Journal of
Surgery, 61(December 2018), 60–68. https://doi.org/10.1016/j.ijsu.2018.12.001
Guney, A., & Al, S. (2012). Effective Learning Environments in Relation to Different Learning
Theories. Procedia - Social and Behavioral Sciences, 46, 2334–2338.
https://doi.org/10.1016/j.sbspro.2012.05.480
Haelermans, C., & Witte, K. De. (2012). The role of innovations in secondary school
performance – Evidence from a conditional efficiency model. European Journal of Operational Research, 223(2), 541–549. https://doi.org/10.1016/j.ejor.2012.06.030
Hafner, K., & Lyon, M. (1998). Where wizards stay up late: The origins of the Internet. Journal
of Chemical Information and Modeling (Vol. 53).
https://doi.org/10.1017/CBO9781107415324.004
Häfner, P., Häfner, V., & Ovtcharova, J. (2013). Teaching methodology for virtual reality
practical course in engineering education. In Procedia Computer Science (Vol. 25, pp. 251–
260). Elsevier Masson SAS. https://doi.org/10.1016/j.procs.2013.11.031
Hagar, C. (2011). Introduction. In Crisis Information Management: Communication and
Technologies (pp. 1–7). https://doi.org/10.1016/B978-1-84334-647-0.50017-5
Harrington, C. M., Kavanagh, D. O., Quinlan, J. F., Ryan, D., Dicker, P., O’Keeffe, D., …
Tierney, S. (2017). Development and evaluation of a trauma decision-making simulator in
Oculus virtual reality. American Journal of Surgery, pp. 1–6.
https://doi.org/10.1016/j.amjsurg.2017.02.011
He, C., Hu, X., Liu, Y., Wang, Y., & Cheng, H. (2012). A novel drift compensating method for
orientation measurement system in VR applications. In 2012 IEEE I2MTC - International
Instrumentation and Measurement Technology Conference, Proceedings (pp. 2482–2487).
https://doi.org/10.1109/I2MTC.2012.6229539
Hogg, M. E., Tam, V., Zenati, M., Novak, S., Miller, J., Zureikat, A. H., & Zeh, H. J. (2016).
Mastery-Based Virtual Reality Robotic Simulation Curriculum: The First Step Toward
Operative Robotic Proficiency. Journal of Surgical Education.
https://doi.org/10.1016/j.jsurg.2016.10.015
Holloway, R., & Lastra, A. (1995). Virtual environments: A survey of the technology.
SIGGRAPH’95 Course, 8(September), 1–40. Retrieved from http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.91.7388&rep=rep1&ty
pe=pdf
Howard, M. C. (2019). Virtual Reality Interventions for Personal Development: A Meta
Analysis of Hardware and Software. Human-Computer Interaction, 34(3), 205–239.
https://doi.org/10.1080/07370024.2018.1469408
Jang, S., Vitale, J. M., Jyung, R. W., & Black, J. B. (2017). Direct manipulation is better than
passive viewing for learning anatomy in a three-dimensional virtual reality environment.
Computers and Education, 106, 150–165. https://doi.org/10.1016/j.compedu.2016.12.009
Juang, J. R., Hung, W. H., & Kang, S. C. (2013). SimCrane 3D+: A crane simulator with
kinesthetic and stereoscopic vision. Advanced Engineering Informatics, 27(4), 506–518.
https://doi.org/10.1016/j.aei.2013.05.002
Kalavakonda, N., Chandra, S., & Thondiyath, A. (2015). Development of virtual reality based
robotic surgical trainer for patient-specific deformable anatomy. In Conference on Advances
In Robotics - AIR ’15 (pp. 1–5). Goa, India. https://doi.org/10.1145/2783449.2783465
Kim, H. E., Hong, Y. J., Kim, M. K., Jung, Y. H., Kyeong, S., & Kim, J. J. (2017). Effectiveness
of self-training using the mobile-based virtual reality program in patients with social anxiety
disorder. Computers in Human Behavior, 73, 614–619.
https://doi.org/10.1016/j.chb.2017.04.017
Kim, J.-H. K. J.-H., Thang, N. D. T. N. D., Kim, T.-S. K. T.-S., Ph, D., Voinea, A., Shin, J., …
Smith, K. (2013). Virtual Reality History, Applications, Technology and Future. Digital
Outcasts, 63(ISlE), 92–98. https://doi.org/http://dx.doi.org/10.1016/B978-0-12-404705
1.00006-6
Klopfer, E., & Squire, K. (2008). Environmental detectives-the development of an augmented reality platform for environmental simulations. Educational Technology Research and
Development, 56(2), 203–228. https://doi.org/10.1007/s11423-007-9037-6
KOCIAN, D. F. (1977). A Visually-Coupled Airborne Systems Simulator (VCASS) - An
Approach To Visual Simulation. In Image Conference (p. pp 3-11). Phoenix, U.S.
Kockro, R. A., Killeen, T., Ayyad, A., Glaser, M., Stadie, A., Reisch, R., … Schwandt, E.
(2016). Aneurysm Surgery with Preoperative Three-Dimensional Planning in a Virtual
Reality Environment: Technique and Outcome Analysis. World Neurosurgery, 96, 489–
499. https://doi.org/10.1016/j.wneu.2016.08.124
Lam, C. K., Sundaraj, K., & Sulaiman, M. N. (2013). Virtual reality simulator for
phacoemulsification cataract surgery education and training. In Procedia Computer Science
(Vol. 18, pp. 742–748). Elsevier B.V. https://doi.org/10.1016/j.procs.2013.05.238
Lamargue-Hamel, D., Deloire, M., Saubusse, A., Ruet, A., Taillard, J., Philip, P., & Brochet, B.
(2015). Cognitive evaluation by tasks in a virtual reality environment in multiple sclerosis.
Journal of the Neurological Sciences, 359(1–2), 94–99.
https://doi.org/10.1016/j.jns.2015.10.039
Leiner, B. M., Cerf, V. G., Clarck, D. D., Kahn, R. E., Kleinrock, L., Lynch, D., … Wolff, S.
(1997). A brief history of internet. Studies in Health Technology and Informatics (Vol. 36).
https://doi.org/10.3233/978-1-60750-880-9-121
Liu, D., Sun, Z., Li, R., Liu, J., & Chen, C. (2010). The application of Virtual Reality in the
practice course of physical education. In ICDLE 2010 - 2010 4th International Conference
on Distance Learning and Education, Proceedings (pp. 78–80). San Juan, PR, USA: IEEE.
https://doi.org/10.1109/ICDLE.2010.5606035
Liu, X., Toki, E. I., & Pange, J. (2014). The Use of ICT in Preschool Education in Greece and China : A Comparative Study. In Procedia - Social and Behavioral Sciences (Vol. 112, pp.
1167–1176). Elsevier B.V. https://doi.org/10.1016/j.sbspro.2014.01.1281
López-Martín, O., Segura Fragoso, A., Rodríguez Hernández, M., Dimbwadyo Terrer, I., &
Polonio-López, B. (2016). Efectividad de un programa de juego basado en realidad virtual
para la mejora cognitiva en la esquizofrenia. Gaceta Sanitaria, 30(2), 133–136.
https://doi.org/10.1016/j.gaceta.2015.10.004
López, B. G., Cerveró, G. A., Rodríguez, J. M. S., Félix, E. G., & Esteban, P. R. G. (2013).
Learning styles and approaches to learning in excellent and average first-year university
students. European Journal of Psychology of Education, 28(4), 1361–1379.
https://doi.org/10.1007/s10212-012-0170-1
Machover, C., & Tice, S. E. (1994). Virtual reality. IEEE Computer Graphics and Applications,
14(1), 15–16. https://doi.org/10.1109/38.250913
Maffei, L., Masullo, M., Pascale, A., Ruggiero, G., & Romero, V. P. (2016). Immersive virtual
reality in community planning: Acoustic and visual congruence of simulated vs real world.
Sustainable Cities and Society, 27, 338–345. https://doi.org/10.1016/j.scs.2016.06.022
Mai, C., Hassib, M., & Königbauer, R. (2017). Estimating visual discomfort in head-mounted
displays using electroencephalography. Lecture Notes in Computer Science (Including
Subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics),
10516 LNCS, 243–252. https://doi.org/10.1007/978-3-319-68059-0_15
Makransky, G., Lilleholt, L., & Aaby, A. (2017). Development and validation of the Multimodal
Presence Scale for virtual reality environments: A confirmatory factor analysis and item
response theory approach. Computers in Human Behavior, 72, 276–285.
https://doi.org/10.1016/j.chb.2017.02.066 Marins, R., Mol, D. A., Paula, A., Siqueira, L. De, & Mol, D. M. (2015). Progress in Nuclear
Energy Using virtual reality to support the physical security of nuclear facilities, 78.
https://doi.org/10.1016/j.pnucene.2014.07.004
Mathews, M., Mitrovic, A., Ohlsson, S., Holland, J., & McKinley, A. (2016). A Virtual Reality
Environment for Rehabilitation of Prospective Memory in Stroke Patients. Procedia
Computer Science, 96, 7–15. https://doi.org/10.1016/j.procs.2016.08.081
Matzke, J., Ziegler, C., Martin, K., Crawford, S., & Sutton, E. (2017). Usefulness of virtual
reality in assessment of medical student laparoscopic skill. Journal of Surgical Research,
211(502), 191–195. https://doi.org/10.1016/j.jss.2016.11.054
McGreevy, M. W. (1991). THE VIRTUAL ENVIRONMENT DISPLAY SYSTEM. National
Aeronautics and Space Administration, Technology 2000. https://doi.org/10.1007/978-3
642-24474-2
McLean, A. N., & Christensen, J. W. (2017). The application of learning theory in horse training.
Applied Animal Behaviour Science, 190, 18–27.
https://doi.org/10.1016/j.applanim.2017.02.020
Mechta, D., Harous, S., Djoudi, M., Douar, A., & Belmahdi, R. (2011). Supervision and control
tool for E-learning virtual laboratory. In 2011 International Conference on Innovations in
Information Technology, IIT 2011 (pp. 61–66).
https://doi.org/10.1109/INNOVATIONS.2011.5893869
Miki, T., Iwai, T., Kotani, K., Dang, J., Sawada, H., & Miyake, M. (2016). Development of a
virtual reality training system for endoscope-assisted submandibular gland removal. Journal
of Cranio-Maxillofacial Surgery, 44(11), 1800–1805.
https://doi.org/10.1016/j.jcms.2016.08.018 Milgram, P., Takemura, H., Utsumi, A., & Kishino, F. (1994). Mixed Reality (MR) Reality
Virtuality (RV) Continuum. Proceedings of SPIE - The International Society for Optical
Engineering, 2351(Telemanipulator and Telepresence Technologies), 282–292.
https://doi.org/10.1.1.83.6861
Miranda, L. C. M., & Lima, C. A. S. (2012). Trends and cycles of the internet evolution and
worldwide impacts. Technological Forecasting and Social Change, 79(4), 744–765.
https://doi.org/10.1016/j.techfore.2011.09.001
Mirelman, A., Patritti, B. L., Bonato, P., & Deutsch, J. E. (2010). Effects of virtual reality
training on gait biomechanics of individuals post-stroke. Gait and Posture, 31(4), 433–437.
https://doi.org/10.1016/j.gaitpost.2010.01.016
Myron, K. W. (1992). An architecture for artificial realities. In Digest of Papers COMPCON
Spring 1992 (pp. 462–465). San Francisco, CA, USA, USA: IEEE.
https://doi.org/10.1109/CMPCON.1992.186756
Niu, L., Aha, L., Mattila, J., Gotchev, A., & Ruiz, E. (2019). A stereoscopic eye-in-hand vision
system for remote handling in ITER. Fusion Engineering and Design, (February), 0–1.
https://doi.org/10.1016/j.fusengdes.2019.03.036
Odlyzko, A. (2012). Web history and economics. Computer Networks, 56(18), 3886–3890.
https://doi.org/10.1016/j.comnet.2012.10.011
Papanikolaou, I. G., Haidopoulos, D., Paschopoulos, M., Chatzipapas, I., Loutradis, D., &
Vlahos, N. F. (2019). Changing the way we train surgeons in the 21th century: A narrative
comparative review focused on box trainers and virtual reality simulators. European
Journal of Obstetrics Gynecology and Reproductive Biology, 235, 13–18.
https://doi.org/10.1016/j.ejogrb.2019.01.016 Parsons, S. (2016). Authenticity in Virtual Reality for assessment and intervention in autism: A
conceptual review. Educational Research Review. Elsevier Ltd.
https://doi.org/10.1016/j.edurev.2016.08.001
Pelargos, P. E., Nagasawa, D. T., Lagman, C., Tenn, S., Demos, J. V., Lee, S. J., … Yang, I.
(2017). Utilizing virtual and augmented reality for educational and clinical enhancements in
neurosurgery. Journal of Clinical Neuroscience. Elsevier Ltd.
https://doi.org/10.1016/j.jocn.2016.09.002
Pelgrum, W. J. (2001). Obstacles to the integration of ICT in education: Results from a
worldwide educational assessment. Computers and Education, 37(2), 163–178.
https://doi.org/10.1016/S0360-1315(01)00045-8
Portman, M. E., Natapov, A., & Fisher-Gewirtzman, D. (2015). To go where no man has gone
before: Virtual reality in architecture, landscape architecture and environmental planning.
Computers, Environment and Urban Systems, 54, 376–384.
https://doi.org/10.1016/j.compenvurbsys.2015.05.001
Potkonjak, V., Gardner, M., Callaghan, V., Mattila, P., Guetl, C., Petrović, V. M., & Jovanović,
K. (2016). Virtual laboratories for education in science, technology, and engineering: A
review. Computers & Education, 95, 309–327.
https://doi.org/10.1016/j.compedu.2016.02.002
Prendes Espinosa, C. (2014). Realidad aumentada y educación: análisis de experiencias
prácticas. Píxel-Bit, Revista de Medios y Educación, 46(46), 187–203.
https://doi.org/10.12795/pixelbit.2015.i46.12
Pujol, J., Fenoll, R., Ribas-Vidal, N., Martínez-Vilavella, G., Blanco-Hinojo, L., García-Alba, J.,
… Esteba-Castillo, S. (2018). A longitudinal study of brain anatomy changes preceding dementia in Down syndrome. NeuroImage: Clinical, 18(September 2017), 160–166.
https://doi.org/10.1016/j.nicl.2018.01.024
Rizzo, A., John, B., Newman, B., Williams, J., Hartholt, A., Lethin, C., & Buckwalter, J. G.
(2012). Virtual Reality as a Tool for Delivering PTSD Exposure Therapy and Stress
Resilience Training. Military Behavioral Health, 1(1), 52–58.
https://doi.org/10.1080/21635781.2012.721064
Roy, A. K., Soni, Y., & Dubey, S. (2013). Enhancing effectiveness of motor rehabilitation using
kinect motion sensing technology. C2013 IEEE Global Humanitarian Technology
Conference: South Asia Satellite, GHTC-SAS 2013, 298–304.
https://doi.org/10.1109/GHTC-SAS.2013.6629934
Roy, E., Bakr, M. M., & George, R. (2015). The need for virtual reality simulators in dental
education: A review. Saudi Dental Journal, pp. 41–47.
https://doi.org/10.1016/j.sdentj.2017.02.001
Rushton, S., Mon-Williams, M., & Wann, J. P. (1994). Binocular vision in a bi-ocular world:
new-generation head-mounted displays avoid causing visual deficit. Displays, 15(4), 255–
260. https://doi.org/10.1016/0141-9382(94)90073-6
Sanchez-Vives, M. V., & Slater, M. (2005). From presence to consciousness through virtual
reality. Nature Reviews Neuroscience, 6(4), 332–339. https://doi.org/10.1038/nrn1651
Sandaruwan, D., Kodikara, N., Keppitiyagama, C., Rosa, R., Jayawardena, M., & Samarasinghe,
P. (2012). User perception of the physical & behavioral realism of a maritime virtual reality
environment. In Proceedings - 2012 14th International Conference on Modelling and
Simulation, UKSim 2012 (pp. 172–178). https://doi.org/10.1109/UKSim.2012.32
Semana Educacion. (2016). Colombia quedó entre los diez países con peor resultado en las Pruebas Pisa 2012. Retrieved April 26, 2018, from
https://www.semana.com/educacion/articulo/colombia-quedo-entre-los-diez-paises-con
peor-resultado-en-las-pruebas-pisa-2012/460104
Seth, A., Vance, J. M., & Oliver, J. H. (2011). Virtual reality for assembly methods prototyping:
A review. Virtual Reality, 15(1), 5–20. https://doi.org/10.1007/s10055-009-0153-y
Seymour, N. E., Gallagher, A. G., Roman, S. A., O’Brien, M. K., Bansal, V. K., Andersen, D.
K., & Satava, R. M. (2002). Virtual reality training improves operating room performance:
results of a randomized, double-blinded study. Annals of Surgery, 236(4), 454–458.
https://doi.org/10.1097/01.sla.0000028969.51489.b4
Sfard, A. (2007). On Two Metaphors for Learning and the Dangers of Choosing Just One.
Educational Researcher, 27(2), 4–13. https://doi.org/10.3102/0013189x027002004
Skinner, B. F. (2014). Science and Human Behavior. Free Press; Edición: New Impression (1 de
marzo de 1965) (Vol. 28). https://doi.org/10.1021/cen-v028n052.p4529
Slater, M., Usoh, M., & Steed, A. (2015). Depth of Presence in Virtual Environments. Presence:
Teleoperators and Virtual Environments, 3(2), 130–144.
https://doi.org/10.1162/pres.1994.3.2.130
Sobota, B., Kore??ko, Pastornick??, P., & Jacho, L. (2016). Virtual-reality technologies in the
process of handicapped school children education. In ICETA 2016 - 14th IEEE
International Conference on Emerging eLearning Technologies and Applications,
Proceedings (pp. 321–326). Starý Smokovec, Slovakia.
https://doi.org/10.1109/ICETA.2016.7802077
Stratos, A., Loukas, R., Dimitris, M., Konstantinos, G., Dimitris, M., & George, C. (2016). A
Virtual Reality Application to Attract Young Talents to Manufacturing. Procedia CIRP, 57, 134–139. https://doi.org/10.1016/j.procir.2016.11.024
Su, X., & Zhao, G. (2010). Study on virtual experiment platform of computer network. In 2010
International Conference on Intelligent Computation Technology and Automation, ICICTA
2010 (Vol. 3, pp. 648–651). https://doi.org/10.1109/ICICTA.2010.782
Sundar, S. S., Xu, Q., & Bellur, S. (2010). Designing interactivity in media interfaces, (January),
2247. https://doi.org/10.1145/1753326.1753666
Sutherland, I. E. (1965). The Ultimate Display. In Proceedings of IFIP Congress (pp. 506–508).
Munich, Germany. https://doi.org/10.1109/MC.2005.274
Sutherland, I. E. (1968). A head-mounted three dimensional display. Proceedings of the
December 9-11, 1968, Fall Joint Computer Conference, Part I on - AFIPS ’68 (Fall, Part
I), 757. https://doi.org/10.1145/1476589.1476686
Thomas, J. S., France, C. R., Applegate, M. E., Leitkam, S. T., & Walkowski, S. (2016).
Feasibility and Safety of a Virtual Reality Dodgeball Intervention for Chronic Low Back
Pain: A Randomized Clinical Trial. Journal of Pain, 17(12), 1302–1317.
https://doi.org/10.1016/j.jpain.2016.08.011
Ulrich, D., Farra, S., Smith, S., & Hodgson, E. (2014). The student experience using virtual
reality simulation to teach decontamination. Clinical Simulation in Nursing, 10(11), 546–
553. https://doi.org/10.1016/j.ecns.2014.08.003
UNESCO. (2008). ICT Competency Standards for Teachers.
Vaughan, N., Gabrys, B., & Dubey, V. N. (2016). An overview of self-adaptive technologies
within virtual reality training. Computer Science Review. Elsevier Inc.
https://doi.org/10.1016/j.cosrev.2016.09.001
Wilson, M., Scalise, K., & Gochyyev, P. (2015). Rethinking ICT literacy: From computer skills to social network settings. Thinking Skills and Creativity, 18, 65–80.
https://doi.org/10.1016/j.tsc.2015.05.001
Witmer, B. G., & Sadowski, W. J. (2007). Nonvisually Guided Locomotion to a Previously
Viewed Target in Real and Virtual Environments. Human Factors: The Journal of the
Human Factors and Ergonomics Society, 40(3), 478–488.
https://doi.org/10.1518/001872098779591340
Witte, K. De, & Rogge, N. (2014). Computers & Education Does ICT matter for effectiveness
and efficiency in mathematics education ? Computers & Education, 75, 173–184.
https://doi.org/10.1016/j.compedu.2014.02.012
Wu, J. X., Chen, G. C., Chang, C. W., & Lin, C. H. (2016). Development of virtual-reality
simulator system for minimally invasive surgery (MIS) using fractional-order vascular
access. In Proceedings of 2016 SAI Computing Conference, SAI 2016 (pp. 1257–1259).
https://doi.org/10.1109/SAI.2016.7556140
Yuan, Y. (2016). Cloud Classroom Boost Online Learning and Educational Resources Sharing.
2016 International Symposium on Educational Technology (ISET), 80–83.
https://doi.org/10.1109/ISET.2016.18
Zahedi, E., Rahmat-Khan, H., Dargahi, J., & Zadeh, M. (2017). Virtual Reality Based Training :
Evaluation of User Performance by Capturing Upper Limb Motion. Virtual Reality (VR),
2017 IEEE, 255–256. https://doi.org/10.1109/VR.2017.7892273
Zhirnova, G. I., & Absalyamova, S. G. (2013). Global innovation gap and quality of education.
In 2013 International Conference on Interactive Collaborative Learning (ICL) (pp. 144–
145). Kazan, Russia. https://doi.org/10.1109/ICL.2013.6644558
Zhou, X., Zhao, Y., Zhou, Y., & Li, F. (2011). Information research of remote pulse diagnose based on virtual technology. In 2011 IEEE 3rd International Conference on Communication
Software and Networks, ICCSN 2011 (pp. 419–421).
https://doi.org/10.1109/ICCSN.2011.6014082
Zita Sampaio, A., & Viana, L. (2013). Virtual Reality used as a learning technology: Visual
simulation of the construction of a bridge deck. Information Systems and Technologies
(CISTI), 1–5. Retrieved from http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=6615855
Ray Schmeck, Ronald. (1988). Learning Strategies and Learning Styles. 10.1007/978-1-4899-
2118-5.
Daroff, R. B., & Aminoff, M. J. (2014). Encyclopedia of the Neurological Sciences. Burlington:
Elsevier Science. | |