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The emergence of mind and brain: an evolutionary, computational, and philosophical approach.

机译:头脑和大脑的出现:一种进化,计算和哲学的方法。

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Modern philosophy of mind cannot be understood without recent developments in computer science, artificial intelligence (AI), robotics, neuroscience, biology, linguistics, and psychology. Classical philosophy of formal languages as well as symbolic AI assume that all kinds of knowledge must explicitly be represented by formal or programming languages. This assumption is limited by recent insights into the biology of evolution and developmental psychology of the human organism. Most of our knowledge is implicit and unconscious. It is not formally represented, but embodied knowledge, which is learnt by doing and understood by bodily interacting with changing environments. That is true not only for low-level skills, but even for high-level domains of categorization, language, and abstract thinking. The embodied mind is considered an emergent capacity of the brain as a self-organizing complex system. Actually, self-organization has been a successful strategy of evolution to handle the increasing complexity of the world. Genetic programs are not sufficient and cannot prepare the organism for all kinds of complex situations in the future. Self-organization and emergence are fundamental concepts in the theory of complex dynamical systems. They are also applied in organic computing as a recent research field of computer science. Therefore, cognitive science, AI, and robotics try to model the embodied mind in an artificial evolution. The paper analyzes these approaches in the interdisciplinary framework of complex dynamical systems and discusses their philosophical impact.
机译:没有计算机科学,人工智能(AI),机器人技术,神经科学,生物学,语言学和心理学的最新发展,就无法理解现代心智哲学。形式语言和符号AI的古典哲学认为,各种知识都必须由形式或编程语言明确表示。这种假设受到对人类进化和发展心理学的最新见识的限制。我们的大部分知识都是内隐的和无意识的。它不是形式上的代表,而是体现的知识,它是通过在实践中与不断变化的环境进行互动来学习和理解的。这不仅适用于低级技能,甚至适用于分类,语言和抽象思维的高级领域。体现的思维被认为是大脑作为一种自组织的复杂系统的新兴能力。实际上,自组织是一种成功的进化策略,可以应对日益复杂的世界。遗传程序还不够,不能为将来的各种复杂情况做好准备。自组织和出现是复杂动力系统理论中的基本概念。它们还作为计算机科学的最新研究领域应用于有机计算。因此,认知科学,人工智能和机器人技术试图在人工进化过程中对体现的思维进行建模。本文在复杂动力系统的跨学科框架中分析了这些方法,并讨论了它们的哲学影响。

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