Department of Anthropological Sciences, Radford University, Radford, Virginia, USA.
Department of Anthropology, University of Toronto, Toronto, Canada.
Am J Biol Anthropol. 2023 Jan;180(1):115-126. doi: 10.1002/ajpa.24641. Epub 2022 Oct 30.
The Dmanisi Homo fossils include a tibia with a low degree of torsion and metatarsals with a pattern of robusticity differing from modern humans. It has been proposed that low tibial torsion would cause a low foot progression angle (FPA) in walking, and consequently increased force applied to the medial rays. This could explain the more robust MT III and IV from Dmanisi. Here we experimentally tested these hypothesized biomechanical relationships in living human subjects.
We measured transmalleolar axis (TMA, a proxy for tibial torsion), FPA, and plantar pressure distributions during walking in young men (n = 40). TMA was measured externally using a newly developed method. A pressure mat recorded FPA and pressure under the metatarsal heads (MT I vs. MT II-IV vs. MT V).
TMA is positively correlated with FPA, but only in the right foot. Plantar pressure under MT II-IV does increase with lower TMA, as predicted, but FPA does not affect pressure. Body mass index also influenced plantar pressure distribution.
Lower tibial torsion in humans is associated with slightly increased pressures along the middle rays of the foot during walking, but not because of changes in FPA. Therefore, it is possible that the low degree of torsion in the Dmanisi Homo tibia is related to the unusual pattern of robusticity in the associated metatarsals, but the mechanism behind this relationship is unclear. Future work will explore TMA, FPA, and plantar pressures during running.
德马尼西人化石包括胫骨扭转程度较低和跖骨粗壮模式不同于现代人的跖骨。有人提出,胫骨扭转程度低会导致步行时足推进角(FPA)较低,从而导致内侧射线受力增加。这可以解释来自德马尼西的更粗壮的 MT III 和 IV。在这里,我们在活体人类受试者中实验测试了这些假设的生物力学关系。
我们测量了年轻男性(n=40)行走时的踝间轴(TMA,胫骨扭转的替代物)、FPA 和足底压力分布。TMA 采用新开发的外部方法进行测量。压力垫记录 FPA 和跖骨头部(MT I 与 MT II-IV 与 MT V)下的压力。
TMA 与 FPA 呈正相关,但仅在右脚。如预测的那样,较低的 TMA 确实会导致 MT II-IV 下的足底压力增加,但 FPA 不会影响压力。体重指数也会影响足底压力分布。
人类胫骨扭转程度较低与步行时中足射线的压力略有增加有关,但不是由于 FPA 的变化。因此,德马尼西人胫骨扭转程度较低可能与相关跖骨的粗壮模式有关,但这种关系的机制尚不清楚。未来的工作将探索跑步时的 TMA、FPA 和足底压力。