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SEARCH FOR QUANTUM AND CLASSICAL MODES OF INFORMATION PROCESSING IN MICROTUBULES: IMPLICATIONS FOR 'THE LIVING STATE'

机译:在Microtubules中搜索量子和经典信息处理模式:“生活状态”的影响

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Dynamical activities within living eukaryotic cells are organized by microtubules, main structural components of the cytoskeleton and cylindrical polymers of the protein tubulin. Evidence and theoretical models suggest that states of tubulin may play the role of "bits" in classical microtubule computational automata. The advent of quantum information devices, key roles played by quantum processes in protein dynamics, and coherent ordering in the cell cytoplasm further suggest that microtubules may function as quantum computational devices, and that mesoscopic and macroscopic quantum states are characteristic of living systems. In this paper new results from molecular dynamics simulation based on recently obtained atomic structure of tubulin are presented which provide support for classical and quantum modes of microtubule information processing.
机译:活性真核细胞内的动态活性由微管组织,蛋白质微管蛋白的细胞骨架和圆柱形聚合物的主要结构部件。证据和理论模型表明,管蛋白的状态可能在古典微管计算自动机中发挥“比特”的作用。量子信息装置的出现,蛋白质动力学中量子过程中的关键角色,细胞细胞质中的相干顺序进一步表明微管可以用作量子计算装置,并且介观和宏观量子状态是生物系统的特征。本文提出了基于最近获得的微管蛋白的分子动力学模拟的新结果,其提供了对微管信息处理的经典和量子模式的支持。

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