Computer Science > Human-Computer Interaction
arXiv:2606.24826 (cs)
[Submitted on 23 Jun 2026]
Abstract:Poorly designed interventions or those deployed without adequate safeguards can harm the communities they aim to serve, thus exacerbating existing vulnerabilities and leaving individuals unsupported. This is especially the case for the mental health context, where there is a growing trend of relying on technological interventions due to their accessibility and ability to deliver large-scale support. However, the mental health context is also particularly sensitive to change and risks of failure are dire; at their worst, failures in mental health interventions can result in lasting negative outcomes for individuals and tragic losses as people fall through the cracks. Thus, enabling safe ways to experiment in the mental health context is vital to allow both individuals and communities to engage with new interventions without risk of their real-world consequences. Virtual simulation, which uses virtual environments to replicate real-world interactions, processes, and behaviors, offers a promising opportunity for enabling safe, controlled experimentation with its ability to accurately replicate social situations, fears, stressors, and the potential outcomes of specific interactions. This work explores how simulation approaches can support emerging mental health processes through (1) evaluating community-level outcomes using agent-based modeling and (2) individual training in the mental health context through embodied, controlled spaces. I demonstrate this use of virtual simulation systems through a grounded human-centered approach, where system design is guided by empirical understanding of current real-world needs and challenges. By leveraging simulation to create environments where mental health strategies can be safely tested and practiced, this work aims to open new possibilities for designing scalable, user-centered systems that are effective and safe.
Submission history
From: Anna Fang [view email]
[v1]
Tue, 23 Jun 2026 17:11:09 UTC (11,907 KB)
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