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Structural and Functional Studies of Bioobjects Prepared from Femoral Heads

机译:从股骨头制备的生物胚胎的结构和功能研究

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Results of examination of physicomechanical characteristics of samples of medial femoral head cuts are presented. The samples of medial femoral head cuts resected in 6 patients with coxarthrosis in primary endoprosthetic replacement of a coxofemoral joint have been tested for micro- and nanohardness. Young's modulus and elemental composition of bone tissue have been investigated. To estimate the architectonics of cancellous tissue of the femoral head, adjacent cuts of the same patient have been analyzed. The porosity of bone tissue was estimated from macroscopic images obtained using macrophotography. The total porosity is calculated as the ratio of the total length of straight line segments overlapping pores to the total length of secants. A three-point bending test of the samples has shown that their strength changed from 0.187 to 1.650 MPa and their elasticity modulus changes from 1.69 to 8.15 MPa. The microhardness of the samples changes in the range 220-265 MPa and the average microhardness of medial femoral head cuts is 240 MPa. The elemental composition of medial femoral head cuts is represented by basic Ca, P, O, Na and Mg elements as well as by Sn, S, Fe, Cr, and C in microamounts. The atomic Ca to P ratio for bone tissue is 1.55. It is revealed that pores of the upper part of the femoral head have a more regular shape and in the lower part they are more elongated along the cut and occupy a larger volume. The lower part of the femoral head has a higher porosity (39 and 33%) than the upper part (34 and 30%). The total porosity of all samples does not exceed 37%.
机译:介绍了内侧股骨头切割样本的物理机械特性的结果。已经测试了在初级内华松体内替代偶联置换的6例Coxarthosis患者中切除的内侧股骨头的样本已经过了微型和纳米型接头。已经研究了杨氏模量和骨组织的元素组成。为了估计股骨头的松质组织的建筑学,已经分析了相同患者的相邻切口。从使用宏观摄影获得的宏观图像估计骨组织的孔隙率。总孔隙率计算为直线段的总长度与孔的总长度与剪枝的总长度的比率。样品的三点弯曲试验表明,它们的强度从0.187变为1.650MPa,它们的弹性模量从1.69到8.15MPa变化。样品的显微硬度在220-265MPa的范围内变化,内侧股骨头切割的平均微硬度为240MPa。内侧股骨头切割的元素组成由碱性Ca,P,O,Na和Mg元素以及Sn,S,Fe,Cr和C中的Mg,Ca,S,Fe,Cr和C.骨组织的原子Ca为1.55。据透露,股骨头的上部的孔具有更规则的形状和在下部,它们沿着切割更长,占据更大的体积。股骨头的下部比上部(34和30%)具有更高的孔隙率(39和33%)。所有样品的总孔隙率不超过37%。

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