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一种压缩试验分析的标准化和自动化算法。

: An Algorithm for Standardization and Automation of Compression Test Analysis.

机构信息

Institute of Medical Biotechnology, Friedrich-Alexander-University Erlangen-Nürnberg, Erlangen, Germany.

Centre in Regenerative Medicine, Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Australia.

出版信息

Tissue Eng Part C Methods. 2021 Oct;27(10):529-542. doi: 10.1089/ten.TEC.2021.0170.

Abstract

The mechanical properties of hydrogels, as well as native and engineered tissues are key parameters frequently assessed in biomaterial science and tissue engineering research. However, a lack of standardized methods and user-independent data analysis has impacted the research community for many decades and contributes to poor reproducibility and comparability of datasets, representing a significant issue often neglected in publications. In this study, we provide a software package, , facilitating the standardized and automated analysis of force-displacement data generated in unconfined compression tests. Using comparative studies of datasets analyzed manually and with , we demonstrate that the software reliably determines the compressive moduli, failure stress and failure strain of hydrogels, as well as engineered and native tissues, while providing an intuitive user interface that requires minimal user input. provides a fast and user-independent data analysis method and advances process standardization, reproducibility, and comparability of data for the mechanical characterization of biomaterials as well as native and engineered tissues. Impact statement Mechanical properties of hydrogels are crucial parameters in the development of new materials for tissue engineering. However, manual assessment is tedious, not standardized and suffers under user-to-user bias. Hence, the here presented stand-alone software package provides analysis and statistics of force-displacement and material geometry data to determine the compressive moduli, failure stress, and failure strain in a standardized, robust, and automated fashion. will substantially support biomechanical testing of hydrogels as well as engineered and native tissues and will thus, be of appreciable value to a broad target group in regenerative medicine, tissue engineering, but also life sciences and biomedicine.

摘要

水凝胶的力学性能以及天然组织和工程组织的力学性能是生物材料科学和组织工程研究中经常评估的关键参数。然而,缺乏标准化的方法和用户独立的数据分析已经影响了研究界几十年,导致数据集的可重复性和可比性较差,这是出版物中经常被忽视的一个重要问题。在这项研究中,我们提供了一个软件包 ,用于促进无约束压缩测试中产生的力-位移数据的标准化和自动化分析。通过对手动分析和使用 进行分析的数据集进行比较研究,我们证明该软件能够可靠地确定水凝胶以及工程组织和天然组织的压缩模量、失效应力和失效应变,同时提供直观的用户界面,只需最少的用户输入。 提供了一种快速且用户独立的数据分析方法,推进了生物材料以及天然组织和工程组织的机械特性表征的过程标准化、可重复性和可比性。 影响声明 水凝胶的力学性能是组织工程中新材料开发的关键参数。然而,手动评估繁琐、不标准化,并且存在用户间的偏差。因此,这里提出的独立软件包提供了力-位移和材料几何数据的分析和统计,以标准化、稳健和自动化的方式确定压缩模量、失效应力和失效应变。 将极大地支持水凝胶以及工程组织和天然组织的生物力学测试,因此将对再生医学、组织工程以及生命科学和生物医学领域的广大目标群体具有重要价值。

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