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Brain-Computer Interfaces and Quantum Robots

Eliano Pessa, Paola Zizzi

发表年份
2009
引用次数
4
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摘要

The actual (classical) Brain-Computer Interface attempts to use brain signals to drive suitable actuators performing the actions corresponding to subject's intention. However this goal is not fully reached, and when BCI works, it does only in particular situations. The reason of this unsatisfactory result is that intention cannot be conceived simply as a set of classical input-output relationships. It is therefore necessary to resort to quantum theory, allowing the occurrence of stable coherence phenomena, in turn underlying high-level mental processes such as intentions and strategies. More precisely, within the context of a dissipative Quantum Field Theory of brain operation it is possible to introduce generalized coherent states associated, within the framework of logic, to the assertions of a quantum metalanguage. The latter controls the quantum-mechanical computing corresponding to standard mental operation. It thus become possible to conceive a Quantum Cyborg in which a human mind controls, through a quantum metalanguage, the operation of an artificial quantum computer.

关键词

Computer scienceQuantumCoherence (philosophical gambling strategy)Context (archaeology)Interface (matter)Set (abstract data type)Quantum computerBrain–computer interfaceField (mathematics)Macroscopic quantum phenomena

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