婴儿颅骨在跌落过程中受冲击载荷的应力和应变传播:有限元分析。

Q2 Medicine
F J Burgos-Flórez, Diego Alexander Garzón-Alvarado
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引用次数: 8

摘要

背景与目的:模拟不同程度骨化缝合线的婴儿低高度跌落后颅骨外伤。方法:建立4周龄婴儿颅骨有限元模型,模拟30 cm和50 cm跌落的低高度冲击。模拟两种冲击:枕骨-顶骨对小羔羊骨缝的冲击和右侧顶骨的外侧冲击,并考虑了6例:未骨化和完全骨化的缝合线,矢状面、异位面、右侧小羔羊骨和右侧冠状面颅缝闭塞。结果:共进行了26次模拟。结果显示,应变幅度显著增加颅骨与未僵化的缝合和fontanal。在枕部撞击中发现较高的变形和较低的Von Mises应力。完全骨化的颅骨整体变形较小,脑内Von Mises应力较低。结果表明,新生儿向后摔倒时颅骨撞击造成永久性损伤的可能性较大。结论:这项研究初步揭示了新生儿在家庭环境中暴露于低高度跌落时发生TBI的机制,并可作为设计和开发用于预防或减轻TBI的颅骨矫形器和保护装置的起点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Stress and strain propagation on infant skull from impact loads during falls: a finite element analysis.

Stress and strain propagation on infant skull from impact loads during falls: a finite element analysis.

Stress and strain propagation on infant skull from impact loads during falls: a finite element analysis.

Stress and strain propagation on infant skull from impact loads during falls: a finite element analysis.

Background and Objective: To simulate infant skull trauma after low height falls when variable degrees of ossification of the sutures are present. Methods: A finite elements model of a four-week-old infant skull was developed for simulating low height impact from 30 cm and 50 cm falls. Two impacts were simulated: An occipito-parietal impact on the lambdoid suture and a lateral impact on the right parietal and six cases were considered: unossified and fully ossified sutures, and sagittal, metopic, right lambdoid and right coronal craniosynostosis. Results: 26 simulations were performed. Results showed a marked increase in strain magnitudes in skulls with unossified sutures and fontanels. Higher deformations and lower Von Mises stress in the brain were found in occipital impacts. Fully ossified skulls showed less overall deformation and lower Von Mises stress in the brain. Results suggest that neonate skull impact when falling backward has a higher probability of resulting in permanent damage. Conclusion: This work shows an initial approximation to the mechanisms underlying TBI in neonates when exposed to low height falls common in household environments, and could be used as a starting point in the design and development of cranial orthoses and protective devices for preventing or mitigating TBI.

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来源期刊
International Biomechanics
International Biomechanics Medicine-Rehabilitation
CiteScore
1.90
自引率
0.00%
发文量
2
审稿时长
17 weeks
期刊介绍: International Biomechanics is a fully Open Access biomechanics journal that aims to foster innovation, debate and collaboration across the full spectrum of biomechanics. We publish original articles, reviews, and short communications in all areas of biomechanics and welcome papers that explore: Bio-fluid mechanics, Continuum Biomechanics, Biotribology, Cellular Biomechanics, Mechanobiology, Mechano-transduction, Tissue Mechanics, Comparative Biomechanics and Functional Anatomy, Allometry, Animal locomotion in biomechanics, Gait analysis in biomechanics, Musculoskeletal and Orthopaedic Biomechanics, Cardiovascular Biomechanics, Plant Biomechanics, Injury Biomechanics, Impact Biomechanics, Sport and Exercise Biomechanics, Kinesiology, Rehabilitation in biomechanics, Quantitative Ergonomics, Human Factors engineering, Occupational Biomechanics, Developmental Biomechanics.
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