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Tobias Dienlin

Publications and source records attributed to Tobias Dienlin.

2 recordsLinked to original sources

AI-RP: The AI Relationship Process Framework

For a growing number of people, AI chatbots have become close personal companions. Despite rising scholarly attention, theoretical accounts of how such relationships develop remain fragmented. Existing frameworks address important aspects of the phenomenon, but they rarely treat human-chatbot communication as the central behavior that builds relationships. To address this gap, we propose the AI relationship process (AI-RP) framework. The AI-RP outlines relationship formation as a sequential process. (a) Chatbot characteristics shape users' (b) social perceptions. These perceptions guide (c) communication, and communication produces (d) relational outcomes such as attachment and companionship. The AI-RP introduces a six-features profile characterizing chatbots, a dual-route approach of social perception, a behavioral conceptualization of communication and discusses the foundation and types of artificial relationships. By foregrounding observable communicative behavior, the AI-RP provides a foundation for theory building and empirical research on the social and ethical implications of AI companionship.

cs.HC

Reducing the Human Factor in Virtual Reality Research to Increase Reproducibility and Replicability

The replication crisis is real, and awareness of its existence is growing across disciplines. We argue that research in human-computer interaction (HCI), and especially virtual reality (VR), is vulnerable to similar challenges due to many shared methodologies, theories, and incentive structures. For this reason, in this work, we transfer established solutions from other fields to address the lack of replicability and reproducibility in HCI and VR. We focus on reducing errors resulting from the so-called human factor and adapt established solutions to the specific needs of VR research. In addition, we present a toolkit to support the setup, execution, and evaluation of VR research. Some of the features aim to reduce human errors and thus improve replicability and reproducibility. Finally, the identified chances are applied to a typical scientific process in VR.

cs.HC