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基于新鲜尸体皮肤测试的生物逼真皮肤模拟物的开发。

Development of Biofidelic Skin Simulants Based on Fresh Cadaveric Skin Tests.

作者信息

Singh Gurpreet, Yadav Pramod, Chanda Arnab

机构信息

Centre for Biomedical Engineering, Indian Institute of Technology Delhi, New Delhi 110016, India.

Department of Biomedical Engineering, All India Institute of Medical Sciences Delhi, New Delhi 110029, India.

出版信息

Eur Burn J. 2024 Dec 16;5(4):454-463. doi: 10.3390/ebj5040040.

Abstract

The development of artificial skin that accurately mimics the mechanical properties of human skin is crucial for a wide range of applications, including surgical training for burn injuries, biomechanical testing, and research in sports injuries and ballistics. While traditional materials like gelatin, polydimethylsiloxane (PDMS), and animal skins (such as porcine and bovine skins) have been used for these purposes, they have inherent limitations in replicating the intricate properties of human skin. In this work, we conducted uniaxial tensile tests on freshly obtained cadaveric skin to analyze its mechanical properties under various loading conditions. The stress-strain data obtained from these tests were then replicated using advanced skin simulants. These skin simulants were specifically formulated using a cost-effective and moldable multi-part silicone-based polymer. This material was chosen for its ability to accurately replicate the mechanical behavior of human skin while also addressing ethical considerations and biosafety concerns. In addition, the non-linear mechanical behavior of the developed skin simulants was characterized using three different hyperelastic curve-fit models (i.e., Neo-Hookean, Mooney-Rivlin, and Yeoh models). Moreover, these innovative simulants offer an ethical and practical alternative to cadaveric skin for use in laboratory and clinical settings.

摘要

开发能够精确模拟人体皮肤力学性能的人造皮肤对于广泛的应用至关重要,包括烧伤手术训练、生物力学测试以及运动损伤和弹道学研究。虽然明胶、聚二甲基硅氧烷(PDMS)和动物皮(如猪皮和牛皮)等传统材料已用于这些目的,但它们在复制人体皮肤的复杂特性方面存在固有局限性。在这项工作中,我们对新鲜获取的尸体皮肤进行了单轴拉伸试验,以分析其在各种加载条件下的力学性能。然后使用先进的皮肤模拟物复制从这些试验中获得的应力-应变数据。这些皮肤模拟物是使用具有成本效益且可模塑的多组分硅基聚合物专门配制的。选择这种材料是因为它能够准确复制人体皮肤的力学行为,同时还能解决伦理问题和生物安全问题。此外,使用三种不同的超弹性曲线拟合模型(即Neo-Hookean模型、Mooney-Rivlin模型和Yeoh模型)对所开发的皮肤模拟物的非线性力学行为进行了表征。此外,这些创新的模拟物为实验室和临床环境中使用的尸体皮肤提供了一种符合伦理且实用的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be67/11727412/d852789ada81/ebj-05-00040-g001.jpg

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