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在单周期单轴拉伸中,膝关节半月板组织中的短裂缝会导致应变集中,但不会降低极限应力。

Short cracks in knee meniscus tissue cause strain concentrations, but do not reduce ultimate stress, in single-cycle uniaxial tension.

作者信息

Peloquin John M, Santare Michael H, Elliott Dawn M

机构信息

Department of Biomedical Engineering, University of Delaware, Newark, DE, USA.

Department of Mechanical Engineering, University of Delaware, Newark, DE, USA.

出版信息

R Soc Open Sci. 2018 Nov 14;5(11):181166. doi: 10.1098/rsos.181166. eCollection 2018 Nov.

Abstract

Tears are central to knee meniscus pathology and, from a mechanical perspective, are crack-like defects (cracks). In many materials, cracks create stress concentrations that cause progressive local rupture and reduce effective strength. It is currently unknown if cracks in meniscus have these consequences; if they do, this would have repercussions for management of meniscus pathology. The objective of this study was to determine if a short crack in meniscus tissue, which mimics a preclinical meniscus tear, (a) causes crack growth and reduces effective strength, (b) creates a near-tip strain concentration and (c) creates unloaded regions on either side of the crack. Specimens with and without cracks were tested in uniaxial tension and compared in terms of macroscopic stress-strain curves and digital image correlation strain fields. The strain fields were used as an indicator of stress concentrations and unloaded regions. Effective strength was found to be insensitive to the presence of a crack (potential effect < 0.86 s.d.; = 0.2), but significant strain concentrations, which have the potential to lead to long-term accumulation of tissue or cell damage, were observed near the crack tip.

摘要

眼泪在膝关节半月板病变中起着核心作用,从力学角度来看,它们是类似裂纹的缺陷(裂缝)。在许多材料中,裂纹会产生应力集中,导致局部渐进性破裂并降低有效强度。目前尚不清楚半月板中的裂纹是否会产生这些后果;如果会,这将对半月板病变的治疗产生影响。本研究的目的是确定模拟临床前半月板撕裂的半月板组织中的短裂纹是否(a)导致裂纹扩展并降低有效强度,(b)产生近尖端应变集中,以及(c)在裂纹两侧产生无载荷区域。对有裂纹和无裂纹的标本进行单轴拉伸测试,并根据宏观应力 - 应变曲线和数字图像相关应变场进行比较。应变场被用作应力集中和无载荷区域的指标。发现有效强度对裂纹的存在不敏感(潜在效应<0.86标准差;P = 0.2),但在裂纹尖端附近观察到显著的应变集中,这有可能导致组织或细胞损伤的长期积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d499/6281910/17ad10886d11/rsos181166-g1.jpg

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