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Contributions of Dr. Sirajul Husain in the Greatest Unsolved Problems in Cognitive Science

机译:Sirajul Husain博士对认知科学中最大的未解决问题的贡献

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The most significant contribution of Dr. Sirajul Husain is a theory of consciousness that has offered solutions to the three major unsolved problems in Cognitive Science: How a conscious experience arises in a physical brain, how it acquires meaning, and how meaning is represented in the brain. His research marks a major paradigm shift by his introduction of a non-reductionist approach to the phenomenon of consciousness as the foundation of cognition. His insightful prediction of a novel society of non-coding genes as a non-reductive source for emergence of consciousness, (International Conference on “Toward a Science of Consciousness”, University of Arizona, 2004) was based on his conviction that consciousness cannot be reduced to brain physiology, and that it emerges as a field, with neurobiology essentially acting as a neurocatalyst. His prediction was duly fulfilled by a monumental discovery of a set of forty nine non-coding genes, (University of California, Santa Cruz, 2006), in particular, RNA gene (HAR1F), which was found to be responsible for development of human cerebral cortex, the centre of cognitive process. These favourable circumstances led Dr. Husain to develop a unified cognitive field theory of consciousness, which mathematically describes the cognitive kinematics of how meaning arrives in a conscious experience and how it is represented, essentially independent of a language. In order to account for semantic relativistic effect that arises when conscious experiences are expressed using a natural languages, Dr. Husain propounded a non-Euclidean, curved, four-dimensional space, termed sense-sound continuum, comprising of auditory, visual, somatosensory, and sound, for conserving semantic invariance of a conscious experience. Dr. Husain’s interdisciplinary research in consciousness and cognitive science has a far reaching impact on several disciplines, from reconciliation of theory of relativity and quantum mechanics to a theory of everything, from psychiatry to mind-body medicine, and to theology. However, by far the most significant aspect of his research is toward a theory of human mind, the most efficient, self-regulating system in nature that is known to function at negative entropy. One can say we are entering an Era of the Mind, vis-à-vis the Decade of the Brain, of the nineties.NeuroQuantology | June 2013 | Volume 11 | Issue 2 | Page 305-313
机译:Sirajul Husain博士最重要的贡献是一种意识理论,它为认知科学中的三个主要未解决问题提供了解决方案:意识在大脑中如何产生,如何获得含义以及如何在大脑中表达含义脑。他的研究标志着一种主要的范式转变,因为他引入了一种非还原主义的方法,将意识现象作为认知的基础。他将非编码基因的新型社会作为意识出现的非还原性来源的有见地的预测(2004年在亚利桑那大学举行的“迈向意识科学”国际会议)是基于他的信念:归结为脑生理学,它作为一个领域出现,而神经生物学本质上是作为神经催化剂。巨大的发现充分实现了他的预测,该发现包括一组49个非编码基因(加利福尼亚大学,圣克鲁斯,2006年),尤其是RNA基因(HAR1F),该基因被认为与人类的发育有关。大脑皮层,认知过程的中心。这些有利的情况促使侯赛因博士发展了一种统一的意识领域的意识理论,该理论从数学上描述了意义如何进入意识体验以及如何表达的认知运动学,基本上与语言无关。为了说明使用自然语言表达意识体验时出现的语义相对论效应,侯赛因博士提出了一个非欧几里德弯曲的四维空间,称为听觉连续体,包括听觉,视觉,躯体感觉,和声音,以保护意识体验的语义不变性。侯赛因博士在意识和认知科学方面的跨学科研究对几门学科产生了深远的影响,从相对论和量子力学的和解到从精神病学到身心医学以及神学的一切理论。然而,到目前为止,他的研究中最重要的方面是关于人类心灵理论,这是自然界中最有效,自我调节的系统,已知该系统在负熵中起作用。可以说,我们正在进入一个相对于90年代大脑十年的思维时代。 2013年6月|第11卷|第2期|第305-313页

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