多参数质量设计模糊模型在生物医学测量系统开发中的应用

Q3 Engineering
D. R. Tasé Velázquez, E. Costa Monteiro, Daniel Ramos Louzada, C. H. Barbosa
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引用次数: 3

摘要

本文介绍了设计质量(QbD)方法在生物医学测量系统质量保证中的应用。将QbD应用于生物医学技术的首次尝试表明,其参数数量明显高于其在制药工业中的传统应用。这些初步研究没有完成生物医学设备设计空间(DS)配置的QbD阶段,这是确定适当的操作参数范围和保证质量特征的重要步骤。因此,它坚持了为健康设备配置DS的挑战,克服了多个工艺参数和关键属性相互作用中的依赖性。本工作发展了一种多参数DS组态的混合qbd -模糊方法。该方法已应用于一种基于巨磁阻抗效应的传感器,用于低成本、高灵敏度的患者金属异物定位磁测量系统的开发阶段。研究结果提供了多种工艺参数的可接受操作范围,以保证生物医学设备的适用性。提出的战略有助于生物医学技术的QbD实施,因此,促进临床环境中诊断和治疗结果的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiparametric quality by design-fuzzy model applied in the development of a biomedical measuring system
This work presents the adaptation of the Quality by Design (QbD) approach for application in the quality assurance of a biomedical measuring system under development. First attempts in applying QbD to biomedical technologies indicated a significantly higher number of parameters than its traditional application in the pharmaceutical industry. These preliminary studies did not fulfill the QbD stage of Design Space (DS) configuration for biomedical devices, an essential step to identifying the proper operating ranges of parameters and guaranteeing quality features. Therefore, it persisted the challenge of configuring DS for health devices, overcoming dependences in the interaction of multiple process parameters and critical attributes. The present work develops a hybrid QbD-Fuzzy approach for multiparametric DS configuration. The proposed method was applied in the development phase of a low-cost and high-sensitive magnetic measuring system for locating metallic foreign bodies in patients, employing sensors based on the Giant Magnetoimpedance effect. The results provided the acceptable operating ranges of the multiple process parameters to ensure the biomedical equipment's suitability. The proposed strategy contributes to the QbD implementation in biomedical technologies and, therefore, promotes the reliability of diagnostic and therapeutic results in the clinical environment.
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来源期刊
International Journal of Metrology and Quality Engineering
International Journal of Metrology and Quality Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
1.70
自引率
0.00%
发文量
8
审稿时长
8 weeks
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