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Physics of decision processes

机译:决策过程的物理学

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.We provide evidence that information processing in linguistic elaboration entails an uncertainty relation and entangled states, without having to strictly rely on quantum processes. Thus far, reported evidences of quantum effects in human brain processes lack a plausible framework, since either no assignment of an appropriate quantum constant had been associated, or speculating on microscopic processes dependent on Planck's constant resulted in unrealistic de-coherence times. In the human brain formulation of linguistic processes, a word coded as a neuron spike sequence is compared with a previous word retrieved via the short term memory; comparison yields a judgment. Synchronization of the finite neuron spike sequences (SFSS), coding the two words, is the way two brain regions compare their content and extract the most suitable sequence. It consists of an inverse Bayes procedure. In SFSS, an uncertainty relation emerges between the bit size of a word and its duration. This uncertainty affects the task of synchronizing spike trains of different duration representing different words, entailing the occurrence of entangled sequences (ES). ES justifies the inverse Bayes inference that connects different words in a linguistic task. ES decays after a finite de-coherence time. The behavior here exhibited provides an explanation for the previously reported evidences of quantum effects in decision processes.
机译:。我们提供了证据表明语言培训中的信息处理需要不确定的关系和纠缠状态,而不必严格依赖量子流程。到目前为止,报告的人脑过程中量子效应的证据缺乏可粘合的框架,因为无论是否有适当的量子常数的分配已经相关,或者借鉴依赖于普朗克恒定导致不切实际的去相干时间的微观过程。在语言过程的人脑制剂中,将编码为神经元尖峰序列的单词与通过短期存储器检索的先前单词进行比较;比较产生了判断。有限神经元尖峰序列(SFSS)的同步,编码两个单词,是两个脑区域比较它们的内容并提取最合适的序列的方式。它由逆凸起的程序组成。在SFSS中,不确定性关系出现在单词的位大小与其持续时间之间。这种不确定性会影响同步代表不同单词的不同持续时间的尖峰列车的任务,这意味着纠缠序列的发生。 es为逆贝内斯推论证明,在语言任务中连接不同的单词。在有限的脱色时间后衰减。这里的行为表明为先前报告的决策过程中的量子效应证明提供了解释。

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