International Evidence-Based Anatomy Working Group, Krakow, Poland.
Department of Anatomy, Jagiellonian University Medical College, Krakow, Poland.
Clin Anat. 2019 May;32(4):597-602. doi: 10.1002/ca.23342. Epub 2019 Apr 1.
The plantar fascia (PF) plays a significant role in ankle movement and anatomical variations of this structure may significantly alter the biomechanical properties of the foot and lower extremity. The aim of this study was to evaluate the changes of the PF's origin point on the calcaneus (CB), and whether these changes are dependent on age and sex. Two independent observers evaluated two hundred and two foot and ankle MRIs and the following measurements was performed: (A) horizontal length of the AT insertion into the posterior aspect of the CB, (B) horizontal length of the CB and (C) horizontal distance from the most anterior point of the CB to the most posterior part of the PF. Statistical analysis was performed with the results obtained to evaluate both sex and age differences. Based on our results, we observed that: (1) changes of the PF's origin point on the CB is independent of age and sex and (2) the continuity between the PF and AT decreases during aging as a result from changes in the AT's insertion point into the CB. This study concludes that the PF's origin point does not change with respect to age or sex, but the continuity between the PF and AT decreases during aging. Knowledge regarding the biomechanical influences caused by changes in the relationship between the AT and PF may be important in terms of treatment and prophylaxis of both PF and AT pathologies. Clin. Anat. 32:597-602, 2019. © 2019 Wiley Periodicals, Inc.
足底筋膜(PF)在踝关节运动中起着重要作用,而该结构的解剖变异可能会显著改变足部和下肢的生物力学特性。本研究旨在评估 PF 在跟骨(CB)上的起点的变化,以及这些变化是否依赖于年龄和性别。两名独立的观察者评估了 202 例足踝 MRI,并进行了以下测量:(A)AT 在 CB 后表面的插入的水平长度,(B)CB 的水平长度和(C)CB 的最前点到 PF 的最后部分的水平距离。用所得结果进行统计学分析,以评估性别和年龄差异。根据我们的结果,我们观察到:(1)PF 在 CB 上的起点的变化与年龄和性别无关,(2)随着年龄的增长,由于 AT 插入点到 CB 的变化,PF 和 AT 之间的连续性降低。本研究得出结论,PF 的起点不会随年龄或性别而改变,但随着年龄的增长,PF 和 AT 之间的连续性会降低。了解 AT 和 PF 之间关系变化所引起的生物力学影响,对于 PF 和 AT 病变的治疗和预防可能很重要。临床解剖学 32:597-602,2019。©2019 Wiley Periodicals, Inc.