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Biomechanical Analysis of Achilles Tendon Stretch And Plantar Fascia Stretch In Plantar Fasciitis Treatment

机译:跖筋膜筋膜肌腱肌腱筋膜肌腱筋膜肌筋膜筋膜肌筋炎的生物力学分析

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This paper aims to simulate two stretching methods adopted in plantar fasciitis treatment in MSC.ADAMS, Achilles tendon stretch and plantar fascia stretch. Clinical evidence has been accumulated that stretching is effective in relieving heel pain caused by plantar fasciitis. While plantar fascia stretching is conceived to be more effective than the traditional Achilles tendon stretch, the reason leading to this difference has not been identified yet. A multi-segment foot model consisted of ligaments, plantar fascia, plantar soft tissue was constructed and then validated by comparing the ground reaction forces and joint rotation angles obtained in a gait simulation with previous research results. The model was then applied in finding out the root cause in these two stretching methods by analysing the deformation of plantar fascia. Achilles tendon stretch was performed to collect kinematic data of tibia using NDI, which was used to drive the simulation. In the plantar fascia stretch, a rotational plate was placed beneath the fore-foot and had a range of motion from 0° to 20°. The forefoot was supported and lifted to simulate the stretching process. Deformation of the plantar fascia under two stretching methods were compared. The result shows that average deformation in Achilles tendon is smaller than that of plantar fascia stretch which may cause the therapeutic difference between these two stretch methods. This analysis method could also be applied in refining physical therapy treatment.
机译:本文旨在模拟MSC.Adams,Achilles肌腱伸展和跖筋膜术中采用的两种伸展方法。临床证据已经积累了伸展是有效地减轻由跖筋膜炎引起的后跟疼痛。虽然Purtorar筋膜伸展被设想比传统的Achilles肌腱伸展更有效,但尚未确定导致这种差异的原因。多段脚模型由韧带,跖筋,跖骨软组织组成,然后通过比较在步态模拟中获得的地面反作用力和接头旋转角度来验证与先前的研究结果。然后应用该模型通过分析Purtorar筋膜的变形,在这两种拉伸方法中发现根本原因。进行Achilles肌腱伸展以利用NDI收集胫骨的运动学数据,用于推动模拟。在跖筋拉伸中,将旋转板放置在前脚下方,并且运动范围为0°至20°。支持并提升前掌以模拟拉伸过程。比较了跖筋下的两个拉伸方法的变形。结果表明,Achilles肌腱中的平均变形小于PurtOrar筋膜伸展的变形,这可能导致这两个拉伸方法之间的治疗差异。该分析方法也可用于精炼物理治疗治疗。

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