The paper claims that a core/periphery distinction, derived from Ashby's Law of Requisite Variety, is a practical organizing principle for both biological and artificial intelligence, and proposes entropy-based definitions of core-dominant and periphery-dominant systems.
Cognitive Functions of the Brain: Perception, Attention and Memory
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abstract
This is a follow-up tutorial article of [17] and [16], in this paper, we will introduce several important cognitive functions of the brain. Brain cognitive functions are the mental processes that allow us to receive, select, store, transform, develop, and recover information that we've received from external stimuli. This process allows us to understand and to relate to the world more effectively. Cognitive functions are brain-based skills we need to carry out any task from the simplest to the most complex. They are related with the mechanisms of how we learn, remember, problem-solve, and pay attention, etc. To be more specific, in this paper, we will talk about the perception, attention and memory functions of the human brain. Several other brain cognitive functions, e.g., arousal, decision making, natural language, motor coordination, planning, problem solving and thinking, will be added to this paper in the later versions, respectively. Many of the materials used in this paper are from wikipedia and several other neuroscience introductory articles, which will be properly cited in this paper. This is the last of the three tutorial articles about the brain. The readers are suggested to read this paper after the previous two tutorial articles on brain structure and functions [17] as well as the brain basic neural units [16].
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Exploring Core and Periphery Precepts in Biological and Artificial Intelligence: An Outcome-Based Perspective
The paper claims that a core/periphery distinction, derived from Ashby's Law of Requisite Variety, is a practical organizing principle for both biological and artificial intelligence, and proposes entropy-based definitions of core-dominant and periphery-dominant systems.