首页|基于μMRI生物力学建模评估股骨近端微结构力学行为

基于μMRI生物力学建模评估股骨近端微结构力学行为

Evaluation of Microstructure Mechanical Behavior of Proximal Femur Based on μMRI Biomechanical Modeling

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目的 建立并验证一种基于显微磁共振成像(micro-magnetic resonance imaging,μMRI)和微结构分割无创评估股骨近端微观力学行为的生物力学建模方法.方法 首先,对股骨样本进行μMRI扫描,基于分区域图像处理的方法分割骨微结构,建立μMRI微有限元模型(μMRI模型),模拟侧向跌倒姿态进行有限元分析,计算应力和应变.其次,借助显微CT(μCT),验证μMRI图像分割骨微结构的准确性;基于μCT构建有限元模型(μCT模型),验证μMRI模型计算结果的准确性.最后,通过模拟侧向跌倒的离体力学加载实验和应变片测量,验证μMRI模型计算骨表面应变的准确性.结果 μMRI 与 μCT 模型计算得到的骨微结构参数 BV/TV 显著相关(r=0.89,P<0.05),μMRI模型和μCT模型计算得到的最大和最小主应力/主应变百分位数高度相关(R2>0.9).μMRI模型计算得到的应变与力学实验测量的应变高度相关(R2=0.82).结论 基于μMRI分割骨微结构建立的股骨近端微有限元模型可较为准确地表征股骨近端微观力学行为,研究结果为在体无创评估髋部股骨微结构退变和骨质疏松性骨折风险提供了重要工具.
Objective To establish and validate a biomechanical modeling method based on micro-magnetic resonance imaging(μMRI)and microstructure segmentation for noninvasively assessing microstructure behavior of the proximal femur.Methods Firstly,μMRI images were obtained from the femoral samples,and bone microstructures were segmented through regionized image processing to create the μMRI finite element model(μMRI model).Finite element analysis was performed utilizing a lateral fall posture simulation,and stress and strain were calculated.Secondly,the accuracy of μMRI image segmentation of bone microstructure was verified using micro-computed tomography(μCT),and the accuracy of μMRI model calculation result was verified using a finite element model constructed based on μCT(μCT model).Finally,the accuracy of bone surface strain calculated by μMRI model was verified through in vitro mechanical loading experiments simulating lateral falls and strain gauge measurements.Results The bone microstructure parameters BV/TV calculated by μMRI model and μCT model were significantly correlated(r=0.89,P<0.05).The maximum and minimum principal stress/principal strain percentiles calculated by μMRI model and μCT model were highly correlated(R2>0.9).The strain calculated by μMRI-FEM was highly correlated with the strain measured by mechanical experiments(R2=0.82).Conclusions The micro finite element model based on μMRI segmentation of bone microstructure can accurately characterize the micro-mechanical behavior of the proximal femur.This study provides an important tool for non-invasive assessment of hip femur microstructure degeneration and osteoporosis fracture risk in vivo.

micro-magnetic resonance imaging(μMRI)micro-computed tomography(μCT)finite element analysisfemurbone microstructure

霍晨晨、杨海胜

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北京工业大学 生物医学工程系,北京 100124

显微磁共振成像 微计算机断层扫描 有限元分析 股骨 骨微结构

北京市自然科学基金项目

L232058

2024

医用生物力学
上海第二医科大学

医用生物力学

CSTPCD北大核心
影响因子:0.858
ISSN:1004-7220
年,卷(期):2024.39(5)