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皮质骨组织加工后骨单位取向对表面形貌参数的影响

The Influence of Osteon Orientation on Surface Topography Parameters after Machining of Cortical Bone Tissue.

作者信息

Zawadzki Paweł, Talar Rafał, Grochalski Karol, Dąbrowski Mikołaj

机构信息

Faculty of Mechanical Engineering, Poznan University of Technology, Maria Sklodowska-Curie Square 5, 60-965 Poznan, Poland.

Adult Spine Orthopaedics Department, Poznan University of Medical Sciences, 61-545 Poznan, Poland.

出版信息

Materials (Basel). 2023 Jun 9;16(12):4293. doi: 10.3390/ma16124293.

Abstract

Mechanical processing of cortical bone tissue is one of the most common surgical procedures. A critical issue accompanying this processing is the condition of the surface layer, which can stimulate tissue growth and serve as a drug carrier. A comparison of the surface condition before and after orthogonal and abrasive processing was conducted to validate the influence of bone tissue's processing mechanism and orthotropic properties on the surface topography. A cutting tool with a defined geometry and a custom-made abrasive tool was used. The bone samples were cut in three directions, depending on the orientation of the osteons. The cutting forces, acoustic emission, and surface topography were measured. The level of isotropy and the topography of the grooves showed statistical differences relative to the anisotropy directions. After orthogonal processing, the surface topography parameter Ra was determined from 1.38 ± 0.17 μm to 2.82 ± 0.32. In the case of abrasive processing, no correlation was found between the orientation of osteons and topographical properties. The average groove density for abrasive machining was below 1004 ± 0.7, and for orthogonal, it was above 1156 ± 58. Due to the positive properties of the developed bone surface, it is advisable to cut in the transverse direction and parallel to the axis of the osteons.

摘要

皮质骨组织的机械加工是最常见的外科手术之一。伴随这种加工的一个关键问题是表层状况,其可以刺激组织生长并作为药物载体。对正交加工和研磨加工前后的表面状况进行比较,以验证骨组织加工机制和正交各向异性特性对表面形貌的影响。使用具有确定几何形状的切削工具和定制的研磨工具。根据骨单位的方向,将骨样本沿三个方向切割。测量切削力、声发射和表面形貌。相对于各向异性方向,各向同性水平和沟槽形貌显示出统计学差异。正交加工后,表面形貌参数Ra从1.38±0.17μm确定为2.82±0.32。在研磨加工的情况下,未发现骨单位方向与形貌特性之间存在相关性。研磨加工的平均沟槽密度低于1004±0.7,正交加工的平均沟槽密度高于1156±58。由于所形成的骨表面具有积极特性,建议沿横向并平行于骨单位的轴进行切割。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02a5/10301028/218332b3f208/materials-16-04293-g001.jpg

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