个性化下肢假体合成的方法学和信息测量系统

Ludmila Smirnova, G. Ponomarenko, V. Suslyaev
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引用次数: 0

摘要

前言:管理义肢质量的方法之一是优化模块化义肢组件的组成。选择假肢功能模块模型的错误导致患者的潜在能力得到有限的实现,或者选择昂贵的高功能模型,而这些模型的潜力在给定的身体系统残疾情况下无法完全实现。解决这一问题最有效的方法之一就是利用计算机技术的能力。目的:证实用于个性化合成下肢假体的创新计算机技术的开发方法,包括用于其实施的信息测量系统结构的开发。方法:分析、综合、类比;专家调查;层次分析法(Saaty法)。使用国际功能、残疾和健康分类的概念语言来描述影响假肢模块特性要求的因素。结果:在选择假肢模块模型时,我们应该使用一个扩展的因素系统,既包括与产品用途相关的基本因素和目录中所示的因素,也包括假肢计划使用的身体功能和结构的损伤指标、患者活动和参与的能力和表现、是否存在障碍和促进因素等环境因素。考虑到这一系统的因素,一个信息测量系统的结构图检查假体病人已经开发。为了选择假肢的组件,我们已经证实了创建一个全球电子目录的必要性,该目录结合了不同制造商提供的假肢模块模型的结构化信息。提出了知识库的矩阵表示形式,反映了根据特征与因子估计的对应关系选择模型的规则。从电子目录中计算机选择模型的方法已得到证实。实际意义:考虑到患者的个人需求和功能能力,这项工作的结果是朝着创建模块化假体组件的计算机多标准选择技术迈出的一步。该技术的应用将提高患者的康复水平和生活质量。
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Methodology and information-measuring system for personalized synthesis of lower limb prostheses
Introduction: One of the methods for managing the quality of prosthetics is optimizing the composition of a modular prosthesis components. Mistakes in choosing models for functional modules of a prosthesis lead to a limited realization of the patient's potential capabilities, or to the choice of expensive highly functional models whose potential cannot be fully realized with the given body system disabilities. One of the most effective ways to solve this problem is to use the computer technology capabilities. Purpose: Substantiation of the methodology for the development of an innovative computer technology for personalized synthesis of a lower-limb prosthesis, including the development of the structure of an information-measuring system for its implementation. Methods: Analysis, synthesis, analogy; expert survey; analytic hierarchy process (Saaty method). The conceptual language of the International Classification of Functioning, Disability and Health was used to describe the factors influencing the requirements for the characteristics of prosthetic modules. Results: In order to choose models for prosthetic modules, we should use an extended system of factors, including both the basic factors associated with the purpose of the products and indicated in the catalogs, and additional factors: impairment indicators of the body functions and structures, the capacity and performance of the patient's activity and participation, the presence of barriers and facilitators environmental factors in which the prosthesis is planned to be used. Taking this system of factors into account, a structural diagram of an information-measuring system for examining a prosthetic patient has been developed. To select the components for the prosthesis, we have substantiated the necessity of creating a global electronic catalog, combining structured information on the models of prosthetic modules supplied by various manufacturers. A matrix representation form is proposed for the knowledge base, reflecting the rules for choosing models according to the correspondence of their characteristics to the estimates of the factors. The methodology of computerized selection of models from the electronic catalog has been substantiated. Practical relevance: The results of the work are a step towards the creation of a technology for a computerized multicriteria choice of components for a modular prosthesis, taking into account the personal needs and functional capabilities of the patient. The use of this technology will improve the patient's rehabilitation level and the quality of his or her life.
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来源期刊
Informatsionno-Upravliaiushchie Sistemy
Informatsionno-Upravliaiushchie Sistemy Mathematics-Control and Optimization
CiteScore
1.40
自引率
0.00%
发文量
35
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