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Elasticity modulus of rabbit middle ear ossicles determined by a novel micro-indentation technique.

机译:通过新型微压痕技术测定兔中耳小骨的弹性模量。

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摘要

For the purpose of creating a finite element model of the middle ear, the ossicles can be modelled as rigid bodies or as linear elastic materials. The general elasticity parameters used are usually measured on larger bones like the femur. In order to obtain a highly realistic model, the actual elastic modulus (Young's modulus) of the ossicles themselves is needed. We developed a novel 2-needle indentation method of determining the Young's modulus of small samples based on Sneddon's solution. We introduce the second needle in such a way that small specimens can be clamped between the two needles and a symmetry plane is obtained, so that geometry-dependent sample deformations are avoided. A finite element calculated correction factor is used to compensate for the small thickness of the samples. The system was tested on several materials with known parameters in order to validate the technique, and was then used to determine the elasticity parameters of incus and malleus in rabbit. No significant differences between measurement locations were found, and we found an average Young's modulus of 16+/-3 GPa.
机译:为了建立中耳的有限元模型,可以将小骨建模为刚体或线性弹性材料。通常使用的一般弹性参数是在股骨等较大的骨骼上测量的。为了获得高度真实的模型,需要听小骨本身的实际弹性模量(杨氏模量)。我们开发了一种新颖的2针压痕方法,该方法可以根据Sneddon溶液确定小样品的杨氏模量。我们以这样一种方式引入第二个针,即可以将小样本夹在两个针之间,并获得一个对称平面,从而避免了与几何相关的样品变形。使用有限元计算的校正因子来补偿样品的小厚度。为了验证该技术,在具有已知参数的几种材料上对该系统进行了测试,然后将该系统用于确定兔的砧骨和锤骨的弹性参数。没有发现测量位置之间的显着差异,并且我们发现平均杨氏模量为16 +/- 3 GPa。

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