Page 43 - GHES-1-1
P. 43
Global Health Econ Sustain Neuroinclusive workplaces and biophilic design
https://doi.org/10.1002/smll.202102453 Review of Meditation, Mindfulness and Virtual Reality.
ArXiv.
Sieghardt, M., Mursch-Radlgruber, E., Paoletti, E., Couenberg, E.,
Dimitrakopoulus, A., Rego, F., & Randrup, T.B. (2005). https://doi.org/10.48550/arXiv.2209.14645
The abiotic urban environment: Impact of urban growing Wilkinson, S., & Orr, F. (2017). The Impact of Horticulture
conditions on urban vegetation. In: Urban Forests and Trees: Therapy on Mental Health Care Consumers on a Retrofitted
A Reference Book. Germany: Springer, p.281-323.
Roof. In: Annual Pacific Rim Real Estate Society Conference.
Söderlund, J., & Newman, P. (2017). Improving mental health in Pacific Rim Real Estate Society Conference.
prisons through biophilic design. The Prison Journal, 97(6): Williams, K.J.H., Lee, K.E., Hartig, T., Sargent, L.D.,
750-772.
Williams, N.S.G., & Johnson, K.A. (2018). Conceptualising
https://doi.org/10.1177/0032885517734516 creativity benefits of nature experience: Attention restoration
and mind wandering as complementary processes. Journal
Tang, Y.Y., Tang, R., Posner, M.I., & Gross, J.J. (2022). Effortless
training of attention and self-control: Mechanisms and of Environmental Psychology, 59: 36-45.
applications. Trends in Cognitive Sciences, 26: 567-577. https://doi.org/10.1016/j.jenvp.2018.08.005
https://doi.org/10.1016/j.tics.2022.04.006 Wilson, E.O. (1986). Biophilia. United States: Harvard University
Press.
Tekin, B.H., Corcoran, R., & Gutiérrez, R.U. (2023). The impact
of biophilic design in Maggie’s Centres: A meta-synthesis Wood, R.A., Orwell, R.L., Tarran, J., Torpy, F., & Burchett, M.
analysis. Frontiers of Architectural Research, 12(1): 188-207. (2002). Potted-plant/growth media interactions and
capacities for removal of volatiles from indoor air. The
https://doi.org/10.1016/j.foar.2022.06.013
Journal of Horticultural Science and Biotechnology, 77(1):
Tharim, A.H.A., Ahmad, A.C., Saarani, P.S.N., Haossain, N.Q.R., 120-129.
Purwanto, E., Tafridj, I.S.I., & Prasetio, T. (2022). The https://doi.org/10.1080/14620316.2002.11511467
determinant factors of biophilic design strategies and
occupants’psychological performance in office building. Zare, G., Faizi, M., Baharvand, M., & Masnavi, M.R. (2021).
Malaysian Journal of Sustainable Environment, 9(3): 87-106. Determination of biophilic design strategies that affecting
the patients’ health in hospitals. Journal of Iranian
https://doi.org/10.24191/myse.v9i3.18292
Architecture and Urbanism (JIAU), 12(1): 59-78.
Ulrich, R.S., Simons, R.F., Losito, B.D., Fiorito, E., Miles, M.A., https://doi.org/10.30475/isau.2020.210114.1318
& Zelson, M. (1991). Stress recovery during exposure to
natural and urban environments. Journal of Environmental Zari, M.P. (2017). What Makes a City ‘Biophilic’? Observations
Psychology, 11(3): 201-230. and Experiences from the Wellington Nature Map
project. In: Back to the Future: The Next 50 Years,
https://doi.org/10.1016/S0272-4944(05)80184-7
51 International Conference of the Architectural Science
st
Van den Bosch, M., & Bird, W. (eds.). (2018). Oxford Textbook of Association. New Zealand: The Architectural Science
Nature and Public Health: The Role of Nature in Improving Association and Victoria University of Wellington, p.
the Health of a Population. United Kingdom: Oxford 105-114.
University Press.
Zhong, W., Schröder, T., & Bekkering, J. (2022). Biophilic design
Van der Geest, T. (2020). Twice Exceptional: Shaping Supportive in architecture and its contributions to health, well-being,
Environments for Neurodiversity (Master’s Thesis). and sustainability: A critical review. Frontiers of Architectural
Research, 11(1): 114-141.
Wang, X., Mo, X., Fan, M., Lee, L.H., Shi, B.E., & Hui, P. (2022).
Reducing Stress and Anxiety in the Metaverse: A Systematic https://doi.org/10.1016/j.foar.2021.07.006
Volume 1 Issue 1 (2023) 18 https://doi.org/10.36922/ghes.0549

