首页> 外文期刊>NeuroQuantology: an interdisciplinary journal of neuroscience and quantum physics >Calabi-Yau Manifolds in Biology and Biological String-Brane Theory
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Calabi-Yau Manifolds in Biology and Biological String-Brane Theory

机译:生物学中的卡拉比·丘流形和生物学弦-理论

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Based on topological biology and structural biology, and combined the extensive quantum biology and general biological string, we propose that Calabi-Yau manifolds can provide a mathematical method to be applied to biology. Some Calabi-Yau spaces may possibly describe the biological spatial structures, in particular, in NeuroQuantology. In biology usual Calabi-Yau manifolds are also smaller and cannot be observed except microscope. It is used to superstring and brane, so may also describe some biological strings, and biological branes, etc. Further, this may combine the extensive graph theory, which includes five types of the basic elements: various solid lines, dotted lines, wavy lines, and vertices, fields. Variegated Calabi-Yau manifolds and superstring-branes correspond to multiformity of biological structures.
机译:在拓扑生物学和结构生物学的基础上,结合广泛的量子生物学和一般生物学原理,我们提出卡拉比尤流形可以提供一种应用于生物学的数学方法。某些Calabi-Yau空间可能描述了生物学的空间结构,特别是在NeuroQuantology中。在生物学中,通常的Calabi-Yau流形也较小,除显微镜外无法观察到。它用于超弦乐和麸皮,因此也可以描述一些生物弦和生物麸皮等。此外,它可以结合广泛的图论,包括五种基本元素:各种实线,虚线,波浪线以及顶点,字段。杂色的Calabi-Yau流形和超弦状的大脑对应于生物结构的多样性。

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