Effect of the Material Properties and Knee Position to the Bone Bruise Pattern in Skeletally Mature and Immature Subjects.

IF 1.7 4区 医学 Q4 BIOPHYSICS
Satoshi Yamakawa, Freddie H Fu, Volker Musahl, Richard E Debski
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引用次数: 0

Abstract

A bone bruise is generated by a bony collision that could occur when the anterior cruciate ligament (ACL) is injured, and its pattern reflects the injury mechanism and skeletal maturity. Thus, the bone bruise pattern is useful to predict a subject-specific injury mechanism, although the sensitivity and/or effect of the material property and the knee position at injury is still unclear. The objective of the present study was to determine the effect of the material property and knee position on the bone bruise pattern in skeletally mature and immature subjects using finite element analysis. Finite element models were created from a magnetic resonance (MR) image in the sagittal plane of a skeletally mature (25 y. o.) and immature (9 y. o.) male subject. The femur and tibia were collided at 2 m/s to simulate the impact trauma and determine the maximum principal stress. The analysis was performed at 15, 30, and 45 deg of knee flexion, and neutral, 10 mm anterior and posterior translated position at each knee flexion angle. Although high stress was distributed toward the metaphysis area in the mature model, the stress did not cross the growth plate in the immature model. The size of the stress area was larger in the mature model than those in the immature model. The location of the stress area changed depending on the joint position. Young's modulus of cartilage and trabecular bone also affected the location of the stress area. The Young's modulus for the cartilage affected peak stress during impact, while the size of the stress area had almost no change. These results indicate that the bone bruise pattern is strongly associated with subject-specific parameters. In addition, the bone bruise pattern was affected not only by knee position but also by tissue qualities. In conclusion, although the bone bruise distribution was generally called footprint of the injury, the combined evaluation of the quality of the structure and the bone bruise distribution is necessary for properly diagnosing tissue injury based on the MR imaging.

材料特性和膝关节位置对骨骼成熟和不成熟受试者骨挫伤模式的影响
骨挫伤是由前交叉韧带受伤时可能发生的骨质碰撞产生的,其形态应该取决于受伤机制和骨骼成熟程度。本研究的目的是利用有限元分析确定材料特性和膝关节位置对骨骼成熟和不成熟受试者骨挫伤形态的影响。根据骨骼成熟和不成熟男性受试者矢状面的磁共振图像创建了有限元模型。股骨和胫骨以 2 米/秒的速度相撞,以模拟撞击并确定最大主应力。分析是在膝关节屈曲 15 度、30 度和 45 度,以及在每个屈曲角度的中立、前 10 毫米和后 10 毫米平移位置时进行的。虽然在成熟模型中,高应力向干骺端区域分布,但在未成熟模型中,应力并未穿过生长板。成熟模型应力区的大小大于未成熟模型。应力区的位置取决于关节位置以及软骨和骨小梁的杨氏模量。因此,骨挫伤模式受到膝关节位置和组织质量的影响。总之,虽然骨挫伤分布一般被称为损伤的足迹,但要根据磁共振成像正确诊断组织损伤,必须对结构质量和骨挫伤分布进行综合评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.40
自引率
5.90%
发文量
169
审稿时长
4-8 weeks
期刊介绍: Artificial Organs and Prostheses; Bioinstrumentation and Measurements; Bioheat Transfer; Biomaterials; Biomechanics; Bioprocess Engineering; Cellular Mechanics; Design and Control of Biological Systems; Physiological Systems.
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