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Motivation and Organizational Principles for Anatomical Knowledge Representation: The Digital Anatomist Symbolic Knowledge Base

机译:解剖知识表示的动机和组织原则:数字解剖学家符号知识库

摘要

Objective: Conceptualization of the physical objects and spaces that constitute the human body at the macroscopic level of organization, specified as a machine-parseable ontology which, in its human-readable form, is comprehensible to both expert and novice users of anatomical information.Design: Conceived as an anatomical enhancement of the UMLS Semantic Network and Metathesaurus, the anatomical ontology was formulated by specifying defining attributes and differentia for classes and subclasses of physical anatomical entities based on their partitive and spatial relationships. The validity of the classification was assessed by instantiating the ontology for the thorax. Several transitive relationships were used for symbolically modeling aspects of the physical organization of the thorax.Results: By declaring Organ as the macroscopic organizational unit of the body, and defining the entities that constitute organs and higher level entities constituted by organs, all anatomical entities could be assigned to one of three top level classes (Anatomical structure, Anatomical spatial entity and Body substance). The ontology accommodates both the systemic and regional (topographical) views of anatomy, as well as diverse clinical naming conventions of anatomical entities.Conclusions: The ontology formulated for the thorax is extendible to microscopic and cellular levels, as well as to other body parts, in that its classes subsume essentially all anatomical entities that constitute the body. Explicit definitions of these entities and their relationships provide the first requirement for standards in anatomical concept representation. Conceived from an anatomical view point, the ontology can be generalized and mapped to other biomedical domains and problem solving tasks that require anatomical knowledge.
机译:目的:在组织的宏观层面上概念化构成人体的物理对象和空间,被指定为机器可解析的本体,以其人类可读的形式,对于解剖学信息的专家和新手用户而言都是可以理解的。 :被认为是UMLS语义网络和Metathesaurus的解剖学增强,通过指定实体解剖学实体的类和子类的属性和差异来定义它们的属性,并根据它们的部分和空间关系来区分它们。通过实例化胸部的本体来评估分类的有效性。结果:通过声明器官为身体的宏观组织单位,并定义构成器官的实体和由器官构成的更高级别的实体,可以使用几种传递关系来对胸部物理组织的各个方面进行符号化建模。被分配给三个顶级类别之一(解剖结构,解剖空间实体和身体物质)。该本体既可以容纳系统的和局部的(地形)解剖学视图,也可以容纳多种解剖学实体的临床命名约定。结论:为胸部设计的本体可以扩展到微观和细胞水平以及其他身体部位,因为它的类别实质上包含了构成人体的所有解剖学实体。这些实体及其关系的显式定义为解剖概念表示中的标准提供了第一个要求。从解剖学角度出发,可以对本体进行概括并映射到其他生物医学领域和需要解剖知识的问题解决任务。

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