Prochor Piotr, Sajewicz Eugeniusz
Department of Biocybernetics and Biomedical Engineering, Faculty of Mechanical Engineering, Bialystok University of Technology, Bialystok 15-351, Poland.
Appl Bionics Biomech. 2019 Feb 7;2019:8027064. doi: 10.1155/2019/8027064. eCollection 2019.
The aim of the research was to determine the optimal thread's shape to be used in implants for direct skeletal attachment of limb prosthesis. In addition, by testing appropriate parameters' modification of the suitable thread, an attempt was made to maximise its effectiveness. The analyses included three thread types described in the ISO standards: shallow, symmetrical, and asymmetrical. The obtained results suggest that shallow thread ensures the lowest equivalent and directional stress peaks generated in the bone as well as favourable stress patterns and profiles during implant loading in relation to symmetrical and asymmetrical threads. Moreover, shallow thread ensured the generation of single equivalent and directional stress peaks, while symmetrical and asymmetrical threads provided additional stress peak for equivalent as well as for each of directional peaks. Subsequently, optimisation of the shallow thread's shape was conducted by changing two relevant thread's parameters (flank angle and rounding arc) which influence the generated stress distribution. The highest reduction of stress peaks was obtained while reducing the rounding arc by 0.2 mm. Therefore, it can be stated that the proposed modification of the HA thread can lead to obtaining a higher biomechanical effectiveness of implants for direct skeletal attachment of limb prosthesis.
该研究的目的是确定用于肢体假肢直接骨骼附着植入物的最佳螺纹形状。此外,通过测试合适螺纹的适当参数修改,试图使其有效性最大化。分析包括ISO标准中描述的三种螺纹类型:浅螺纹、对称螺纹和不对称螺纹。所得结果表明,与对称螺纹和不对称螺纹相比,浅螺纹可确保在骨骼中产生的等效应力和定向应力峰值最低,以及在植入物加载期间具有良好的应力模式和分布。此外,浅螺纹确保产生单个等效应力和定向应力峰值,而对称螺纹和不对称螺纹则为等效应力以及每个定向峰值提供额外的应力峰值。随后,通过改变影响所产生应力分布的两个相关螺纹参数(牙侧角和圆角弧)对浅螺纹形状进行了优化。当将圆角弧减小0.2毫米时,应力峰值得到了最大程度的降低。因此,可以说所提出的HA螺纹修改可导致获得用于肢体假肢直接骨骼附着植入物的更高生物力学有效性。