954 resultados para video game


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In this paper, we report some initial findings from our investigations into the Australian Government’s Longitudinal Study of Australian Children dataset. It is revealed that the majority of Australian children are exceeding the government’s Screen Time recommendations and that most of their screen time is spent as TV viewing, as opposed to video game play or computer use. In light of this finding,we review the body of research surrounding children’s engagement in Screen Time activities and the associated positive and negative effects. Based on existing evidence,we define two categories of Screen Time—Active Screen Time and Passive Screen Time. It is proposed that this distinction provides a more accurate classification of Screen Time and a more informative lens through which to consider the associated benefits and detrimental effects for young children.

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This thesis considers and evaluates different approaches to regulating online gaming communities, including traditional top-down regulation, as well as bottom-up and hybrid forms led by participants. I examine the regulatory environment in both the video game and gambling industries through case studies of the science fiction, massively multiplayer game Eve Online and offshore gambling platforms and their community sites. I identify that the participant driven approach to regulation sometimes used in the offshore gambling industry was dependent on a number of factors, notably the strength of the community and the risks to platform operators of negative publicity. By subsequently comparing this to the video gaming industry, I suggest that participant driven processes may be an appropriate way to resolve disputes in the games industry, and show how these are – to a limited extent – already being applied.

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In this paper we reflect on our experiences in developing PANORAMA, a playful application meant to promote and support social awareness in a work environment, through art-inspired visualisations of social processes and personal contributions. With respect to the design of PANORAMA, we found common notions of visual semiotics helpful in determining the overall composition of the screen layout. More in general, however, the development of PANORAMA proved to be an exercise in interaction aesthetics, which as we will argue in this paper may greatly benefit from common notions in interactive video game play. In this paper we will only briefly discuss technical and deployment issues, since our main contribution here is to establish the relation between the aesthetics of interaction and game play.

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This thesis investigates the design of motivating and engaging software experiences. In particular it examines the use of video game elements in non-game contexts, known as gamification, and how to effectively design gamification experiences for smartphone applications. The original contribution of this thesis is a novel framework for designing gamification, derived from an iterative process of evaluating gamified prototypes. The outcomes of this research can help us to better understand the impact of gamification in today's society and how it can be used to design more effective software.

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This paper explores novel driving experiences that make use of gamification and augmented reality in the car. We discuss our design considerations, which are grounded in road safety psychology and video game design theory. We aim to address the tension between safe driving practices and player engagement. Specifically, we propose a holistic, iterative thinking process inspired by game design cognition and share our insights generated through the application of this process. We present preliminary game concepts that blend digital components with physical elements from the driving environment. We further highlight how this design process helped us to iteratively evolve these concepts towards being safer while maintaining fun. These insights and game design cognition itself will be useful to the AutomotiveUI community investigating similar novel driving experiences.

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This paper explores novel driving experiences that make use of gamification and augmented reality in the car. We discuss our design considerations, which are grounded in road safety psychology and video game design theory. We aim to address the tension between safe driving practices and player engagement. Specifically, we propose a holistic, iterative thinking process inspired by game design cognition and share our insights generated through the application of this process. We present preliminary game concepts that blend digital components with physical elements from the driving environment. We further highlight how this design process helped us to iteratively evolve these concepts towards being safer while maintaining fun. These insights and game design cognition itself will be useful to the AutomotiveUI community investigating similar novel driving experiences.

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This work is focused on the player experience and the design of artificial intelligence (AI) to meet player expectations in a competitive video game context. The original contribution of this research is a new approach to designing games and AI opponents that are more enjoyable for players to interact with, particularly in First Person Shooter (FPS) video games. This approach is modeled in detail and implemented in a prototype game AI called ThreatBot. The results show that the new AI design is more enjoyable to compete against, particularly with regards to player's perceived levels of competence.

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Video game play is becoming an increasingly social experience, yet we have little understanding of how social and solitary modes of play differ in terms of the player experience or interact with player wellbeing. An online survey (n = 446) collected data on players' current mode of play, their game play experience, social capital gained from game play and wellbeing. The results indicate that social and solitary players differ in terms of degree of autonomy, presence and relatedness experienced, while the different types of social play are associated with differences in relatedness and social capital experienced. Different predictors of wellbeing were also present across solitary and social player samples. People who play games on their own experience greater wellbeing when experiencing in-game autonomy. Social players experience greater wellbeing when playing with strangers, and when experiencing in-game bridging social capital. All players experienced increased wellbeing with age and decreased wellbeing with greater amounts of play.

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This study aims to further research in the field of video games by examining flow during individual and co-operative gameplay. Using a puzzle game called Droppit, we examined differences in flow based on two modes of play: single player vs. co-operative gameplay. Co-operative gameplay was found to induce greater flow in participants than single player gameplay. Additionally, co-operative gameplay participants had increased feelings of Challenge-Skill Balance, Unambiguous Feedback, Transformation of Time and Autotelic Experience. Our findings suggest that co-operative gameplay, involving puzzle-based problems, may result in increased flow during video game play.

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The aim of our research is to iteratively refine and begin validating a proposed videogame reward typology and its associated definitions. A mixed methods approach has been taken so as to best evaluate and refine the taxonomy. The views of an expert focus group have been explored and considered. Separately, a review of the videogame rewards observed within recreational videogames has been undertaken and analyzed. The collective findings of both the focus group and the videogame reward review have prompted the redesign of an existing videogame reward taxonomy, resulting in more robust definitions with increased applicability.

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O objetivo deste trabalho é entender como o jogo narrativo de aventura para videogame consegue atrair e manter a atenção do jogador, imergindo-o no mundo ficcional, em face dos inúmeros estímulos existentes a sua volta. É sugerida uma definição para o jogo narrativo de aventura e a imersão e, posteriormente, estabelece-se uma relação entre elementos presentes nos jogos e as estruturas que atraem a atenção do indivíduo. Para isso, consultou-se material produzido pelas duas principais linhas de estudos de jogos: Narratologia e Ludologia. O conteúdo teórico foi comparado e exemplificado através da prática de diversos jogos, principalmente do console Sony Playstation 3. O próprio conceito de jogo narrativo, a prática dos jogos e a relação percebida entre seus elementos e as ferramentas para criar e manter a atenção revelaram que o videogame, através dos jogos narrativos de aventura, representa um potente meio para criar e manter o estado de imersão sobre o jogador.

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Esta pesquisa tem como objetivo documentar o processo de redução de riscos e incertezas de um jogo eletrônico em desenvolvimento por meio da aplicação de métodos de avaliação de Usabilidade. Foi realizado um estudo de caso da utilização de métodos e técnicas de avaliação de Usabilidade durante a produção do jogo eletrônico Dungeonland, conduzido entre 2010 a 2013 ao longo de diversas iterações do produto, da pré-produção ao lançamento. Foram utilizados os métodos de observação direta baseada em problemas, avaliação cooperativa, questionário e entrevista semi-estruturada. Os dados coletados demonstram a evolução do design do jogo, as diferentes metodologias empregadas em cada estágio de desenvolvimento, e o impacto da avaliação no projeto. Apesar de problemas e limitações no emprego dos testes de Usabilidade no produto em questão, o impacto da avaliação foi visto como muito grande e muito positivo pelos desenvolvedores - através de dados qualitativos como protocolos verbais e de gameplay de usuários, e de dados quantitativos sobre suas experiências com o produto que possam ser comparados estatisticamente, os desenvolvedores de jogos têm à sua disposição poderosas ferramentas para estabelecer processos de Design claros, centrados no usuário, e que ofereçam um ambiente onde problemas são rapidamente identificados e soluções são validadas com usuários reais.

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This dissertation has as its object the concept of creativity, as applied on entertainment products, more specifically on video games. Since this is a concept that has been used as an analysis category for researches within the CiberCog Research Lab, we want to problematize and redefine its parameters for future investigations. Thus our goal is to revise the concept of creativity, seeking to uncover how this category shall be used to study cognitive abilities that are required (and/or stimulated) for the fruition of entertainment products, most specially video games. The selected games for this study were divided into two groups (according to their genre): (1) action/adventure games, and (2) platform games. In the first group, we have Assassins Creed III (Ubisoft 2012); in the second, we have Rayman Origins (Ubisoft 2011). For the implementation of the research, there is a Cartographic-inspired method which stimulated the writing of collected data

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This paper discusses the hardware foundations of the cryptosystem employed by the Xbox(TM) video game console from Microsoft. A secret boot block overlay is buried within a system ASIC. This secret boot block decrypts and verifies portions of an external FLASH-type ROM. The presence of the secret boot block is camouflaged by a decoy boot block in the external ROM. The code contained within the secret boot block is transferred to the CPU in the clear over a set of high-speed busses where it can be extracted using simple custom hardware. The paper concludes with recommendations for improving the Xbox security system. One lesson of this study is that the use of a high-performance bus alone is not a sufficient security measure, given the advent of inexpensive, fast rapid prototyping services and high-performance FPGAs.

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A vision based technique for non-rigid control is presented that can be used for animation and video game applications. The user grasps a soft, squishable object in front of a camera that can be moved and deformed in order to specify motion. Active Blobs, a non-rigid tracking technique is used to recover the position, rotation and non-rigid deformations of the object. The resulting transformations can be applied to a texture mapped mesh, thus allowing the user to control it interactively. Our use of texture mapping hardware allows us to make the system responsive enough for interactive animation and video game character control.