Discovery Early Career Researcher Award - Grant ID: DE240101275
Funder
Australian Research Council
Funding Amount
$382,440.00
Summary
Paying and playing: Assessing and regulating digital games-as-a-service . The digital games industry has turned to a service-based business model reliant on the generation of continuous user revenue. This project assesses the implications of service-based monetisation for how games are designed, consumed, and regulated, focusing on three controversial, yet insufficiently understood monetisation strategies: advertising, in-game transactions, and blockchain-based play. While promising benefit for ....Paying and playing: Assessing and regulating digital games-as-a-service . The digital games industry has turned to a service-based business model reliant on the generation of continuous user revenue. This project assesses the implications of service-based monetisation for how games are designed, consumed, and regulated, focusing on three controversial, yet insufficiently understood monetisation strategies: advertising, in-game transactions, and blockchain-based play. While promising benefit for consumers and industry, these monetisation strategies carry the potential for risks like surveillance, harmful advertising, and predatory design. Discoveries from this project will help policymakers, industry, and consumers regulate, design, and use games featuring service-based monetisation in effective and ethical ways.Read moreRead less
Comparing properties of innate immune proteins of bats and humans. Supra-molecular protein complexes known as signalosomes drive our innate immune response by forming large signaling hubs capable of recruiting downstream effectors. This project aims to compare the properties and structure of human and bat signalosomes and discover the molecular origins of the “supra-immunity” of bats. In this context, the project expects to generate new knowledge concerning the fundamental molecular mechanisms t ....Comparing properties of innate immune proteins of bats and humans. Supra-molecular protein complexes known as signalosomes drive our innate immune response by forming large signaling hubs capable of recruiting downstream effectors. This project aims to compare the properties and structure of human and bat signalosomes and discover the molecular origins of the “supra-immunity” of bats. In this context, the project expects to generate new knowledge concerning the fundamental molecular mechanisms that regulate the signalosomes. The intended outcome is to answer the long-standing question of control of speed and amplitude of innate immune response at the molecular level. Both locally and internationally, this new approach should provide benefits across structural biology, molecular evolution and biotechnology.Read moreRead less