Department of Radiology, University of California-San Diego, 9500 Gilman Drive, La Jolla, CA 92093, USA.
Department of Orthopedic Surgery, Faculty of Medicine, Fukuoka University, Fukuoka 810-0180, Japan.
Tomography. 2024 Oct 10;10(10):1665-1675. doi: 10.3390/tomography10100122.
The calcaneal enthesis, an osseous footprint where the Achilles tendon seamlessly integrates with the bone, represents a complex interface crucial for effective force transmission. Bone adapts to mechanical stress and remodels based on the applied internal and external forces. This study explores the relationship between the elasticity of the Achilles tendon enthesis and the bone microstructure in the calcaneal crescent.
In total, 19 calcaneal-enthesis sections, harvested from 10 fresh-frozen human cadaveric foot-ankle specimens (73.8 ± 6.0 years old, seven female), were used in this study. Indentation tests were performed at the enthesis region, and Hayes' elastic modulus was calculated for each specimen. Micro-CT scanning was performed at 50-micron voxel size to assess trabecular bone microstructure within six regions of interest (ROIs) and the cortical bone thickness along the calcaneal crescent.
Significant Spearman correlations were observed between the enthesis elastic modulus and trabecular bone thickness in the distal entheseal (ROI 3) and proximal plantar (ROI 4) regions (R = 0.786 and 0.518, respectively).
This study highlights the potential impacts of Achilles tendon enthesis on calcaneal bone microstructure, which was pronounced in the distal calcaneal enthesis, suggesting regional differences in load transfer mechanism that require further investigation.
跟腱止点是跟骨上跟腱与骨无缝结合的骨足迹,它是一个复杂的界面,对于有效力的传递至关重要。骨骼会根据施加的内力和外力发生适应性改变和重塑。本研究旨在探讨跟腱止点弹性与跟骨半月区骨微结构之间的关系。
本研究共使用了 10 个新鲜冷冻人尸足踝标本(年龄 73.8±6.0 岁,7 名女性)的 19 个跟腱止点切片。在止点区域进行压痕试验,并计算每个标本的海耶斯弹性模量。采用 50 微米体素大小进行微 CT 扫描,以评估六个感兴趣区域(ROI)的小梁骨微结构和跟骨半月区的皮质骨厚度。
在远端跟腱止点(ROI3)和近侧足底(ROI4)区域,跟腱止点弹性模量与骨小梁厚度之间存在显著的斯皮尔曼相关性(R=0.786 和 0.518)。
本研究强调了跟腱止点对跟骨微结构的潜在影响,这种影响在跟骨远端止点更为明显,提示存在需要进一步研究的局部负荷传递机制的差异。