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基于超材料的切口模式建模,以在皮片中产生高扩张。

Modeling of metamaterial based incision patterns for generating high expansions in skin grafts.

机构信息

Centre for Biomedical Engineering, Indian Institute of Technology (IIT), Delhi, India.

Centre for Biomedical Engineering, Indian Institute of Technology (IIT), Delhi, India; Department of Biomedical Engineering, All India Institute of Medical Sciences (AIIMS), Delhi, India..

出版信息

Clin Biomech (Bristol). 2023 Dec;110:106118. doi: 10.1016/j.clinbiomech.2023.106118. Epub 2023 Oct 4.

Abstract

BACKGROUND

Split-thickness skin grafting is a widely used treatment for burn patients. It requires removing a small portion of healthy skin, making parallel incisions on it, stretching it, and surgically implanting it into the burn site. Although skin graft mesher companies claim to significantly expand the size of the skin graft, in reality, the amount of expansion achieved is much smaller.

METHODS

This study aimed to improve the expansion potential of skin grafts by designing new incision patterns with auxetic properties, using a skin simulant material and additive manufacturing. The mechanical properties and digital image correlation was used to analyze the strain, effective Poisson's ratio, local strains, void area, and meshing ratio of the auxetic skin graft simulants.

FINDINGS

The results showed that the Y-shaped skin graft simulant had the highest effective negative Poisson's ratio, largest areal expansions, lowest maximum induced stresses and strains, and uniform strain distribution properties, making it the best choice for generating high expansions in skin grafts.

INTREPRETATION

The study found that the expansions were highly strain sensitive, with higher auxeticity observed at lower strains. The novel findings with auxetic skin graft simulants are expected to provide valuable insights for developing skin grafts with higher expansion potential in the future.

摘要

背景

皮肤移植术是治疗烧伤患者的常用方法。它需要从健康的皮肤上切下一小部分,在上面做平行切口,拉伸它,然后将其手术植入烧伤部位。尽管皮肤移植网格公司声称可以显著扩大皮肤移植的面积,但实际上,实现的扩展量要小得多。

方法

本研究旨在通过设计具有仿生特性的新切口图案,使用皮肤模拟材料和增材制造来提高皮肤移植的扩展潜力。我们使用数字图像相关技术分析了仿生皮肤移植模拟物的应变、有效泊松比、局部应变、空隙面积和网格比。

结果

结果表明,Y 形皮肤移植模拟物具有最高的有效负泊松比、最大的面积扩展、最低的最大诱导应力和应变,以及均匀的应变分布特性,是在皮肤移植中产生高扩展的最佳选择。

解释

研究发现,扩展对应变非常敏感,在较低的应变下观察到更高的仿生特性。这项关于仿生皮肤移植模拟物的新发现,有望为未来开发具有更高扩展潜力的皮肤移植提供有价值的见解。

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