存在就是现实:重新思考虚拟和现实世界的意识
Oliver Singleton1, Aikaterini Fotopoulou1
1Clinical, Educational and Health Psychology Research Department, Division of Psychology and Language Sciences, University College London.
概括
存在和现实不是不同的,而是连续的体验,挑战传统的定义. 虚拟现实 (VR) 可以帮助研究现实感及其障碍.
科学领域:
- 认知科学 认知科学
- 虚拟现实 (VR) 研究研究
- 神经科学是一个神经科学.
背景情况:
- 存在感 (感觉"在那里") 和现实感 (区分真实和不真实) 通常被视为单独的.
- 现有的文献显示,在认知科学和VR研究中,这些术语的使用是不一致的和可互换的.
研究的目的:
- 挑战存在与现实之间的二分法.
- 提出存在和现实是连续的现象.
- 整合感知和认知主义的存在理论.
主要方法:
- 认知科学和VR文学的审查和综合.
- 在多感官集成,自我体现和代理中识别融合的心理物理发现.
- 对初步神经成像数据的分析.
主要成果:
- 存在和现实共享概念,机制和现象学的连续性.
- 整合机制可能是存在和现实的基础.
- 在多感官集成,自我体现和代理方面存在融合的证据.
- 预先的神经成像表明",真实性"的共享前临界神经基质.
结论:
- 存在和现实应该被视为连续的,而不是二分化的.
- 虚拟现实 (VR) 是研究现实感和相关临床疾病的有效工具.
- 未来的研究应该直接比较存在和现实,以测试功能和神经等价性.
相关概念视频
Virtual Work
1.4K
The principle of virtual work states that if a body is in static and dynamic equilibrium, then the sum of all the virtual work done by all external forces and couple moments for any given virtual displacement must be zero.
In static equilibrium, a body can experience an imaginary or virtual movement, such as displacement or rotation. The virtual work done by a force is equal to the dot product of force and virtual displacement in the direction of the force. When it comes to virtually rotating a...
In static equilibrium, a body can experience an imaginary or virtual movement, such as displacement or rotation. The virtual work done by a force is equal to the dot product of force and virtual displacement in the direction of the force. When it comes to virtually rotating a...
1.4K
Understanding Consciousness
2.2K
Consciousness can be defined as the state of being aware of and able to think about one's existence, sensations, and surroundings. It encompasses two major components: awareness and arousal. Awareness pertains to the recognition of environmental stimuli and internal states. At the same time, arousal refers to the physiological readiness to engage with these stimuli, which varies significantly between states like sleep and wakefulness.
Sleep, a crucial state, is characterized by reduced...
Sleep, a crucial state, is characterized by reduced...
2.2K
Principle of Virtual Work: Problem Solving
1.7K
The principle of virtual work is an essential concept in the field of mechanics and engineering. This is used to solve problems related to the equilibrium of a structure or system. It is based on the assumption that if a system is in equilibrium, the work done by all the forces during a virtual displacement is zero. This principle is applied by considering virtual displacements of the system and the corresponding work done by internal and external forces.
To apply the principle of virtual work,...
To apply the principle of virtual work,...
1.7K
Virtual Work for a System of Connected Rigid Bodies
770
Virtual work is a powerful method used to solve problems involving several connected rigid bodies. When the system is in equilibrium, virtual work is zero. This allows the calculation of the resulting forces when a system undergoes a virtual displacement. When attempting to analyze such a system, first, use a free-body diagram, where an independent coordinate represents the configuration of the links, and mark its deflected position resulting from the positive virtual displacement.
Next,...
Next,...
770
Real Number System
1.2K
The real number system includes all numbers used for counting, measuring, and comparing quantities. Natural numbers are the basic counting numbers: 1, 2, 3, and so on. Integers expand this set by including zero and negative whole numbers: ..., –3, –2, –1, 0, 1, 2, .... Rational numbers are those that can be expressed as the ratio of two integers m/n, where n≠0. This includes fractions like 1/2, integers such as 46, and decimals that terminate, such as 0.17, or...
1.2K
Real Number Operations
339
The concept of real numbers includes all the values that can be represented on a continuous number line. The system began with basic counting values used for enumeration. It later expanded to include values that represent the absence of quantity and opposites of the counting values. When situations required expressing parts of a whole or dividing quantities evenly, values capable of representing such proportions were developed. When written using decimal notation, these values can end or repeat...
339


