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BIOMECHANICAL THEORETICAL ANALYSISViscoelastic behavior of human fasciae under extension in manual therapy

机译:生物力学理论分析手动治疗下人筋膜的粘弹性行为

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Summary The basic field equations for viscoelastic soft tissues are employed for exploring the relationship between time varying mechanical stresses and dynamic deformations of human fasciae in manual therapy. The predicted stress range for plastic deformation of plantar fascia, based on the viscoelastic model is close to experimental data. Fascia lata (in vitro) and plantar fascia (in vitro) are found to exhibit similar behavior, irrespective of how the fasciae are deformed.Manual therapists should avoid increasing deformation with time. It is desirable to produce deformation which should become constant after some time, and be applied for the duration up to 60s. The therapists may apply almost the same load to produce the same plastic deformation for plantar fascia and fascia lata. Greater loads are needed to produce the same strain with higher rate of deformation. The data presented in this paper may also be useful for surgeons in planning the orientation of fascia in knee and hip replacement surgeries.
机译:小结粘弹性软组织的基本场方程用于探索人工治疗中筋膜的时变机械应力与动态变形之间的关系。基于粘弹性模型的足底筋膜塑性变形的预测应力范围接近实验数据。筋膜(体外)和足底筋膜(体外)表现出相似的行为,无论筋膜如何变形。手动治疗师应避免随着时间的推移而增加变形。希望产生变形,该变形应在一段时间后变得恒定,并施加长达60s的持续时间。治疗师可能会施加几乎相同的载荷,以使足底筋膜和足底筋膜产生相同的塑性变形。需要更大的载荷以产生具有更高变形率的相同应变。本文中提供的数据对于外科医生在膝关节和髋关节置换手术中规划筋膜的方向时可能也很有用。

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