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Living room conservation: Gaming and virtual reality for insect and ecosystem conservation

Players explore and search for butterflies using knowledge gained through gameplay

Date:
April 18, 2019
Source:
Pensoft Publishers
Summary:
Gaming and virtual reality could bridge the gap between urban societies and nature, thereby paving the way to insect conservation by the means of education and participation. This is what an interdisciplinary team strive to achieve by developing a virtual reality game dedicated to insect and plant species.
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Gaming and virtual reality (VR) could bridge the gap between urban societies and nature, thereby paving the way to insect conservation by the means of education, curiosity and life-like participation.

This is what Florida International University's team of computer scientist Alban Delamarre and biologist Dr Jaeson Clayborn strive to achieve by developing a VR game dedicated to insect and plant species. Focused on imperiled butterflies, their innovative idea: Butterfly World 1.0, is described in the open-access journal Rethinking Ecology.

Butterfly World 1.0 is an adventure game designed to engage its users in simulated exploration and education. Set in the subtropical dry forest of the Florida Keys (an archipelago situated off the southern coast of Florida, USA), Butterfly World draws the players into an immersive virtual environment where they learn about relationships between butterflies, plants, and invasive species. While exploring the set, they interact with and learn about the federally endangered Schaus' swallowtail butterfly, the invasive graceful twig ant, native and exotic plants, and several other butterflies inhabiting the dry forest ecosystem. Other nature-related VR experiences, including conservation awareness and educational programs, rely on passive observations with minimal direct interactions between participants and the virtual environment.

According to the authors, virtual reality and serious gaming are "the new frontiers in environmental education" and "present a unique opportunity to interact with and learn about different species and ecosystems."

The major advantage is that this type of interactive, computer-generated experience allows for people to observe phenomena otherwise impossible or difficult to witness, such as forest succession over long periods of time, rare butterflies in tropical dry forests, or the effects of invasive species against native wildlife.

"Imagine if, instead of opening a textbook, students could open their eyes to a virtual world. We live in a time where experiential learning and stories about different species matter, because how we feel about and connect with these species will determine their continued existence in the present and future. While technology cannot replace actual exposure to the environment, it can provide similar, near-realistic experiences when appropriately implemented," say the scientists.

In conclusion, Delamarre and Clayborn note that the purpose of Butterfly World is to build knowledge, reawaken latent curiosity, and cultivate empathy for insect and ecosystem conservation.


Story Source:

Materials provided by Pensoft Publishers. The original story is licensed under a Creative Commons License. Note: Content may be edited for style and length.


Journal Reference:

  1. Jaeson Clayborn, Alban Delamarre. Living room conservation: a virtual way to engage participants in insect conservation. Rethinking Ecology, 2019; 4: 31 DOI: 10.3897/rethinkingecology.4.32763

Cite This Page:

Pensoft Publishers. "Living room conservation: Gaming and virtual reality for insect and ecosystem conservation." ScienceDaily. ScienceDaily, 18 April 2019. <www.sciencedaily.com/releases/2019/04/190418095134.htm>.
Pensoft Publishers. (2019, April 18). Living room conservation: Gaming and virtual reality for insect and ecosystem conservation. ScienceDaily. Retrieved November 14, 2024 from www.sciencedaily.com/releases/2019/04/190418095134.htm
Pensoft Publishers. "Living room conservation: Gaming and virtual reality for insect and ecosystem conservation." ScienceDaily. www.sciencedaily.com/releases/2019/04/190418095134.htm (accessed November 14, 2024).

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