Chen Wen-Ming, Lee Sung-Jae, Lee Peter Vee Sin
Department of Mechanical Engineering, Melbourne School of Engineering, University of Melbourne, Victoria, Australia.
Department of Biomedical Engineering, College of Biomedical Science & Engineering, Inje University, Gyongnam, Republic of Korea.
J Biomech. 2015 Feb 26;48(4):659-665. doi: 10.1016/j.jbiomech.2014.12.043. Epub 2014 Dec 30.
Therapeutic footwear with specially-made insoles is often used in people with diabetes and rheumatoid arthritis to relieve ulcer risks and pain due to high pressures from areas beneath bony prominences of the foot, in particular to the metatarsal heads (MTHs). In a three-dimensional finite element study of the foot and footwear with sensitivity analysis, effects of geometrical variations of a therapeutic insole, in terms of insole thicknesses and metatarsal pad (MP) placements, on local peak plantar pressure under MTHs and stress/strain states within various forefoot tissues, were determined. A validated musculoskeletal finite element model of the human foot was employed. Analyses were performed in a simulated muscle-demanding instant in gait. For many design combinations, increasing insole thicknesses consistently reduce peak pressures and internal tissue strain under MTHs, but the effects reach a plateau when insole becomes very thick (e.g., a value of 12.7mm or greater). Altering MP placements, however, showed a proximally- and a distally-placed MP could result in reverse effects on MTH pressure-relief. The unsuccessful outcome due to a distally-placed MP may attribute to the way it interacts with plantar tissue (e.g., plantar fascia) adjacent to the MTH. A uniform pattern of tissue compression under metatarsal shaft is necessary for a most favorable pressure-relief under MTHs. The designated functions of an insole design can best be achieved when the insole is very thick, and when the MP can achieve a uniform tissue compression pattern adjacent to the MTH.
带有特制鞋垫的治疗性鞋类常用于糖尿病和类风湿性关节炎患者,以缓解因足部骨突下方区域,特别是跖骨头(MTH)处的高压所带来的溃疡风险和疼痛。在一项对足部和鞋类进行敏感性分析的三维有限元研究中,确定了治疗性鞋垫的几何变化(鞋垫厚度和跖骨垫(MP)位置)对MTH下方局部足底峰值压力以及前足各组织内应力/应变状态的影响。采用了经过验证的人体足部肌肉骨骼有限元模型。在步态中模拟肌肉需求较大的瞬间进行分析。对于许多设计组合而言,增加鞋垫厚度会持续降低MTH下方的峰值压力和内部组织应变,但当鞋垫变得非常厚(例如12.7毫米或更大的值)时,效果会达到平稳状态。然而,改变MP的位置显示,MP近端放置和远端放置会对MTH减压产生相反的效果。MP远端放置导致的不理想结果可能归因于它与MTH相邻的足底组织(如足底筋膜)相互作用的方式。跖骨干下方组织的均匀压缩模式对于MTH下方最有利减压是必要的。当鞋垫非常厚且MP能够在MTH相邻处实现均匀的组织压缩模式时,鞋垫设计的指定功能才能最佳实现。