Haptics and the Virtual Self
Haptics and the Virtual Self
批准号:
2238934
负责人:
金额:
$0.0万
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --
中文摘要
新技术的出现为人类的行动和互动提供了新的可能性。尤其是虚拟现实(VR),我们的行为及其效果不再完全受制于物理环境。虽然这有望扩展我们的视野,但这项技术对我们自我意识的影响仍不清楚。心理学文献强调了我们的物质感官世界对于扎根和构建自我的重要性。来自环境的感觉反馈被认为是识别我们身体自我的边界(所有权意识)以及自我产生的行为和效果(代理感)的关键。我们的自我意识如何在虚拟环境中构建和生存?这个问题对心理学家和虚拟现实设计者来说都很重要。对于心理学家来说,兴趣在于自我在这些环境中发生了什么,以及关于支撑自我构建的机制可以学到什么。对于用户体验设计师来说,这些问题很重要,因为任何使用户自我感觉贫乏的因素都可能对他们的体验产生负面影响。计算机科学家已经认识到了这些问题,并正在寻找方法来丰富虚拟现实中的感觉环境。这项研究项目的非HEI合作伙伴Ultrahaptics已经开发出一种新的解决方案。Ultrahaptics已经开发出超声波技术,可以为用户在虚拟环境中表演时提供半空触觉反馈。这些技术进步有望克服虚拟世界中自我构建的一些障碍。我们的研究项目旨在系统地研究触觉反馈对虚拟环境中的归属感和代理感的影响。这个项目将为这项技术的设计者提供重要的见解,并为心理学提供一个独特的机会来探索触觉反馈的作用。构建自我的机制是心理学和哲学关注的核心问题。这个项目承诺从两个关键方面阐明这一点。首先,我们有一个独特的机会来探索触觉反馈在自我建设中的作用。到目前为止,我们还没有可用的技术来精确控制触觉信息的存在、时间和质量。通过这种方式,它承诺为那些在这一领域工作的人建立研究能力。第二,虚拟环境中自我意识可能发生的重要变化。鉴于新的虚拟技术的出现可能从根本上挑战和改变我们的自我意识,这是一个越来越感兴趣的领域。拟议中的研究与那些从事人机交互工作的人直接相关。Ultrahaptics对拟议的研究有着浓厚的兴趣,将其视为应对新的汽车和虚拟/增强现实技术带来的关键挑战的一种方式。其目的是将我们研究的结果反馈到这些技术的设计和改进中。例如,通过我们的研究,我们将能够定义精确的触觉反馈参数,以优化用户的所有权和代理感。这将有助于改进技术,进而改善用户体验。虚拟现实技术越来越多地应用于应用医疗环境,如中风后患者的运动康复。这项技术提供了练习日常活动的机会,这些活动在医院环境下是不可能的。也有人认为,这种形式的康复可以更吸引人,更能激励人。尽管有这些优点,人们也认识到虚拟现实也有一些缺点,其中之一是相对缺乏感觉反馈。我们提出的研究可以帮助微调超触觉技术,并利用这一技术来优化患者的主人翁意识和代理,从而提高这种虚拟康复方法的效率。
英文摘要
The emergence of new technology has provided fresh possibilities for human action and interaction. With virtual reality (VR) in particular, our actions and their effects are no longer tethered exclusively to the physical environment. Whilst this promises to extend our horizons, the impact of this technology on our sense of self is still unclear. Psychology literature emphasises the importance of our physical sensory world for grounding and constructing the self. Sensory feedback from the environment is thought to be crucial for recognising the boundaries of our bodily selves (sense of ownership), and self-generated actions and effects (sense of agency).How can our sense of self be constructed and survive in virtual environments? This question is important to both psychologists and VR designers. For psychologists, the interest lies in what happens to the self in these environments, and what can be learned about the mechanisms underpinning self-construction. For user-experience designers, these issues matter because any factor that impoverishes the user's sense of self is likely to negatively impact their experience. Computer scientists have recognised these issues and are looking at ways of enriching the sensory environment in VR. One novel solution has been developed by Ultrahaptics, the non-HEI partner on this research project. Ultrahaptics has developed ultrasound technology that provides users with mid-air haptic feedback when acting in virtual environments. These technological advances promise to overcome some of the barriers to self-construction in virtual worlds.Our research project aims to systematically investigate the effect of haptic feedback on the sense of ownership and sense of agency in virtual environments. This project will provide important insights for designers of the technology, and also offer psychology a unique opportunity to explore the role of haptic feedback.The mechanisms underpinning the construction of self are a central concern of psychology and philosophy. This project promises to shed light on this in two key ways. First, we have a unique opportunity to explore the role of haptic feedback in self-construction. Until now, we have not had the technology available to precisely control the presence, timing and quality of haptic information. In this way, it promises to build research capacity for those working in this area. Second, the important changes that may occur to the sense of self in virtual environments. This is an area of growing interest given the emergence of new virtual technologies that may fundamentally challenge and alter our sense of self.The proposed research is of direct relevance to those working in human-computer-interaction. Ultrahaptics has a strong interest in the proposed research, seeing it as a way of addressing key challenges arising from new automotive and virtual/augmented reality technologies. The aim is for the findings from our research to be fed back into the design and refinement of these technologies. For example, through our research we will be able to define the precise haptic feedback parameters that optimise the user's sense of ownership and agency. This will help refine the technology, which in turn will improve user experience.Virtual reality technology is increasingly used in applied medical settings, such as motor rehabilitation for post-stroke patients. This technology offers the opportunity to practice everyday activities that are not possible in a hospital setting. It has also been argued that this form of rehabilitation can be more engaging and motivating. Despite these advantages, it is also recognised that virtual reality has certain drawbacks, one of which is the relative lack of sensory feedback. Our proposed research can help fine-tune Ultrahaptic technology and utilise this to optimise the patient's sense of ownership and agency, therefore improving the efficacy of this virtual rehabilitation approach.
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