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首页> 外文期刊>Journal of biomechanical engineering. >Estimation of bone matrix apparent stiffness variation caused by osteocyte lacunar size and density.
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Estimation of bone matrix apparent stiffness variation caused by osteocyte lacunar size and density.

机译:估计由骨细胞腔尺寸和密度引起的骨基质表观硬度变化。

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摘要

The role of osteocyte lacunar size and density on the apparent stiffness of bone matrix was predicted using a mechanical model from the literature. Lacunar size and lacunar density for different bones from different gender and age groups were used to predict the range of matrix apparent stiffness values for human cortical and cancellous tissue. The results suggest that bone matrix apparent stiffness depends on tissue type (cortical versus cancellous), age, and gender, the magnitudes of the effects being significant but small in all cases. Males had a higher predicted matrix apparent stiffness than females for vertebral cancellous bone (p< I0(-7)) and the difference increased with age (p =0.0007). In contrast, matrix apparent stiffness was not different between males and females forfemoral cortical bone and increased with age in both males (p < 0.0001) and females (p < 0.0364). Osteocyte lacunar density and size may cause significant gender and age-related variations in bone matrix apparent stiffness. The magnitude of variations in matrix apparent stiffness was small within the physiological range of lacunar size and density for healthy bone, whereas the variations can be profound in certain pathological cases. It was proposed that the mechanical effects of osteocyte density be uncoupled from their biological effects by controlling lacunar size in normal bone.
机译:使用文献中的力学模型预测了骨细胞腔尺寸和密度对骨基质表观硬度的作用。来自不同性别和年龄组的不同骨骼的腔隙大小和腔隙密度被用来预测人类皮层和松质组织的基质表观硬度值的范围。结果表明,骨基质的表观刚度取决于组织类型(皮质与松质),年龄和性别,影响的程度是显着的,但在所有情况下均很小。男性对于椎骨松质骨具有比女性更高的预测基质表观刚度(p <10(-7)),并且差异随着年龄的增长而增加(p = 0.0007)。相比之下,男性和女性股骨皮质骨的基质表观硬度没有差异,并且在男性(p <0.0001)和女性(p <0.0364)中均随年龄增加而增加。骨细胞腔隙的密度和大小可能会导致性别和年龄相关的骨基质表观硬度变化。在健康骨的腔隙大小和密度的生理范围内,基质表观刚度的变化幅度很小,而在某些病理情况下变化可能很大。有人提出,通过控制正常骨腔的大小,可以使骨细胞密度的机械作用与其生物学作用脱钩。

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