老年女性髋部骨折风险的有限元分析:软组织形状、跌倒方向和干预措施的影响。

IF 2.4 3区 医学 Q3 BIOPHYSICS
Sotaro Murakami , Yuqing Zhao , Koji Mizuno , Minoru Yamada , Yoichi Yokoyama , Yoshitake Yamada , Masahiro Jinzaki
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引用次数: 0

摘要

本研究调查了跌倒结构对髋部骨折风险的影响,重点是骨盆软组织形状。研究采用了全身有限元(FE)模型。使用站立式 CT 系统测量了骨盆周围的软组织厚度,结果显示,随着体重指数(BMI)的升高和年龄的减小,转子软组织厚度有增加的趋势。在从大转子开始的后上方区域,老年女性的软组织较薄且呈凹形。在 THUMS 5F 模型的基础上,根据 CT 数据对骨盆周围的软组织形状进行变形,建立了低 BMI 的老年女性 FE 模型。FE 模拟结果表明,与侧向摔倒相比,后向摔倒导致老年女性模型的股骨颈受力更大。其中一个原因可能与后上方区域骨盆软组织较薄有关。此外,还利用老年女性模型评估了有助于减轻后向跌落时大腿-髋部和髋部骨折的干预措施的有效性。在大腿-臀部摔倒时,护臀器对股骨颈力的衰减率接近于零,而在臀部摔倒时,护臀器对股骨颈力的衰减率很高,而在这两种摔倒中,顺应性地板对股骨颈力的衰减率都很高。这项研究强调了女性骨盆软组织形状与年龄有关的变化,尤其是在后上方区域,这可能会影响后上方跌落时髋关节的受力减缓。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Finite element analysis of hip fracture risk in elderly female: The effects of soft tissue shape, fall direction, and interventions

This study investigates the effects of fall configurations on hip fracture risk with a focus on pelvic soft tissue shape. This was done by employing a whole-body finite element (FE) model. Soft tissue thickness around the pelvis was measured using a standing CT system, revealing a trend of increased trochanteric soft tissue thickness with higher BMI and younger age. In the lateroposterior region from the greater trochanter, the soft tissues of elderly females were thin with a concave shape. Based on the THUMS 5F model, an elderly female FE model with a low BMI was developed by morphing the soft tissue shape around the pelvis based on the CT data. FE simulation results indicated that the lateroposterior fall led to a higher femoral neck force for the elderly female model compared to the lateral fall. One reason may be related to the thin soft tissue of the pelvis in the lateroposterior region. Additionally, the effectiveness of interventions that can help mitigating hip fractures in lateroposterior falls on the thigh-hip and hip region was assessed using the elderly female model. The attenuation rate of the femoral neck force by the hip protector was close to zero in the thigh-hip fall and high in the hip fall, whereas the attenuation rate of the compliant floor was high in both falls. This study highlights age-related changes in the soft tissue shape of the pelvis in females, particularly in the lateroposterior regions, which may influence force mitigation for the hip joint during lateroposterior falls.

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来源期刊
Journal of biomechanics
Journal of biomechanics 生物-工程:生物医学
CiteScore
5.10
自引率
4.20%
发文量
345
审稿时长
1 months
期刊介绍: The Journal of Biomechanics publishes reports of original and substantial findings using the principles of mechanics to explore biological problems. Analytical, as well as experimental papers may be submitted, and the journal accepts original articles, surveys and perspective articles (usually by Editorial invitation only), book reviews and letters to the Editor. The criteria for acceptance of manuscripts include excellence, novelty, significance, clarity, conciseness and interest to the readership. Papers published in the journal may cover a wide range of topics in biomechanics, including, but not limited to: -Fundamental Topics - Biomechanics of the musculoskeletal, cardiovascular, and respiratory systems, mechanics of hard and soft tissues, biofluid mechanics, mechanics of prostheses and implant-tissue interfaces, mechanics of cells. -Cardiovascular and Respiratory Biomechanics - Mechanics of blood-flow, air-flow, mechanics of the soft tissues, flow-tissue or flow-prosthesis interactions. -Cell Biomechanics - Biomechanic analyses of cells, membranes and sub-cellular structures; the relationship of the mechanical environment to cell and tissue response. -Dental Biomechanics - Design and analysis of dental tissues and prostheses, mechanics of chewing. -Functional Tissue Engineering - The role of biomechanical factors in engineered tissue replacements and regenerative medicine. -Injury Biomechanics - Mechanics of impact and trauma, dynamics of man-machine interaction. -Molecular Biomechanics - Mechanical analyses of biomolecules. -Orthopedic Biomechanics - Mechanics of fracture and fracture fixation, mechanics of implants and implant fixation, mechanics of bones and joints, wear of natural and artificial joints. -Rehabilitation Biomechanics - Analyses of gait, mechanics of prosthetics and orthotics. -Sports Biomechanics - Mechanical analyses of sports performance.
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