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Osseointegration of Prostheses on the Stapes Footplate: Evaluation of the Biomechanical Feasibility by Using a Finite Element Model

机译:Sta骨足踏板上的假体骨整合:使用有限元模型评估生物力学可行性

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摘要

Restoration of hearing is one of the main issues of tympanoplasty. Depending on the extent of destruction, the ossicular chain is partially or totally replaced by prostheses. In the unfavorable event of complete ossicular chain destruction with only the stapes footplate remaining in the oval niche, implanting of a columella prosthesis represents the gold standard. Besides ventilation problems, the main causes of unsatisfactory hearing results are dislocation of the prosthesis and poor coupling to the footplate. Therefore, stable fixation of prostheses is desirable but has not been realized to date. In line with our experimental intention to realize a bony prosthesis fixation on the footplate, we designed a finite element model for the simulation of the interacting forces once an osseointegration was achieved. These preliminary results predict the mechanical feasibility of this endeavor and the necessary general preconditions, which have to be carefully considered. A specially designed titanium prosthesis anchor needs a minimal bony fixation of 104 μm accretion height on the footplate to withstand all emerging forces. Therefore, providing a sort of artificial stapedial suprastructure in the form of a firm, preferably bony, integration of a prosthesis anchor on the footplate seems to be realistic and worthwhile from a mechanical and medical point of view.
机译:恢复听力是鼓膜成形术的主要问题之一。根据破坏程度,听骨链部分或全部被假体取代。在仅使the骨足板保留在椭圆形壁iche中的情况下,完全听骨链破坏的不利事件中,植入小肠假体是金标准。除了通风问题外,导致听觉效果不佳的主要原因还包括假体错位和与踏板的连接不良。因此,希望稳定地固定假体,但迄今为止尚未实现。为了实现将脚骨假体固定在踏板上的实验意图,我们设计了一个有限元模型,用于在骨整合完成后模拟相互作用力。这些初步结果预测了这项工作的机械可行性以及必要的一般前提条件,必须仔细考虑这些前提条件。专门设计的钛假肢锚固件在脚踏板上的骨固定最小高度为104μm,以承受所有新兴力量。因此,从机械和医学的角度来看,提供一种牢固,优选为骨的形式的人工骨上结构,将假体锚固件牢固地整合在足板上似乎是现实的且值得的。

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