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Database Technologies for L-System Simulations in Virtual Plant Applications on Bioinformatics

机译:虚拟信息在虚拟植物应用中用于L系统仿真的数据库技术

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One of the most important advantages of database systems is that the underlying mathematics is rich enough to specify very complex operations with a small number of statements in the database language. This research covers an aspect of biological informatics that is the marriage of information technology and biology, involving the study of real-world phenomena using virtual plants derived from L-systems simulation. L-systems were introduced by Aristid Lindenmayer as a mathematical model of multicellular organisms. Not much consideration has been given to the problem of persistent storage for these simulations. Current procedures for querying data generated by L-systems for scientific experiments, simulations and measurements are also inadequate. To address these problems the research in this paper presents a generic process for data-modeling tools (L-DBM) between L-systems and database systems. This paper shows how L-system productions can be generically and automatically represented in database schemas and how a database can be populated from the L-system strings. This paper further describes the idea of pre-computing recursive structures in the data into derived attributes using compiler generation. A method to allow a correspondence between biologists' terms and compiler-generated terms in a biologist computing environment is supplied. Once the L-DBM gets any specific L-systems productions and its declarations, it can generate the specific schema for both simple correspondence terminology and also complex recursive structure data attributes and relationships.
机译:数据库系统最重要的优点之一是基础数学足够丰富,可以用很少的数据库语言语句指定非常复杂的操作。这项研究涵盖了生物信息学的一个方面,即信息技术与生物学的结合,涉及使用从L系统模拟中衍生的虚拟植物来研究现实世界的现象。 L系统由Aristid Lindenmayer引入,作为多细胞生物的数学模型。对于这些模拟,没有太多考虑持久存储的问题。用于查询由L系统生成的数据以进行科学实验,模拟和测量的当前程序也不充分。为了解决这些问题,本文的研究提出了L系统与数据库系统之间的数据建模工具(L-DBM)的通用过程。本文展示了如何在数据库模式中通用和自动地表示L系统产品,以及如何从L系统字符串填充数据库。本文进一步描述了使用编译器生成将数据中的递归结构预先计算为派生属性的想法。提供了一种在生物学家计算环境中允许生物学家的术语与编译器生成的术语之间对应的方法。一旦L-DBM获得了任何特定的L系统生成及其声明,它就可以为简单的对应术语以及复杂的递归结构数据属性和关系生成特定的架构。

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