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羊颞下颌关节盘在压痕、单轴拉伸和双轴拉伸中的力学特性和黏弹性模型。

Mechanical characterization and viscoelastic model of the ovine temporomandibular joint Disc in indentation, uniaxial tension, and biaxial tension.

机构信息

Department of Mechanical Engineering, Colorado State University, 1374 Campus Delivery, 200 W. Lake St.Fort Collins, CO, 80523, USA.

Department of Clinical Sciences, Colorado State University, 1678 Campus Delivery, 200 W. Lake St.Fort Collins, CO, 80523, USA.

出版信息

J Mech Behav Biomed Mater. 2021 Apr;116:104300. doi: 10.1016/j.jmbbm.2020.104300. Epub 2020 Dec 31.

Abstract

There have been recent investigations into developing disc replacements and regenerative medicine to treat internal derangements of the temporomandibular joint (TMJ) disc. Previous attempts at disc replacements have faced challenges related in part to a limited understanding of the TMJ's complex mechanical environment. The purpose of this study was to characterize the mechanical behavior of the ovine TMJ disc and to derive viscoelastic constitutive models from the experimental data. Fresh ovine TMJ discs were tested in indentation stress-relaxation tests on the inferior surface, uniaxial tension tests to failure, and dynamic biaxial tensile tests. Results showed an order of magnitude stiffer behavior in tension in the anteroposterior (primary fiber) direction compared to the mediolateral direction. The stiffness in tension was much greater than in compression. Regional comparisons showed greater elastic moduli in indentation in the posterior and anterior bands compared to the central region. A hyper-viscoelastic constitutive model captured the dynamic stress-stretch behavior in both indentation and biaxial tension with good agreement. These data will support ongoing and future computational modeling of local TMJ mechanics, aid in biomaterials identification, and ultimately enhance development of implant designs for TMJ disc replacement.

摘要

最近有研究致力于开发盘状置换物和再生医学来治疗颞下颌关节(TMJ)盘的内部紊乱。先前在盘状置换物方面的尝试面临着挑战,部分原因是对 TMJ 复杂力学环境的理解有限。本研究的目的是描述羊 TMJ 盘的力学行为,并从实验数据中推导出黏弹性本构模型。在羊 TMJ 盘的下表面进行了压痕应力松弛试验、单轴拉伸至破坏试验和动态双轴拉伸试验。结果表明,在前后方向(主要纤维方向)的拉伸行为比在内外方向硬一个数量级。拉伸时的刚度远大于压缩时的刚度。区域比较表明,在后带和前带的压痕中的弹性模量大于中央区域。超黏弹性本构模型很好地捕捉了压痕和双轴拉伸中的动态应力-应变行为。这些数据将支持 TMJ 局部力学的持续和未来的计算建模,有助于生物材料的鉴定,并最终增强 TMJ 盘状置换物的植入物设计的开发。

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