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element intended for implantation in bone tissue is most obviously involved.

机译:最明显地涉及用于植入骨组织中的元素。

摘要

In an element for implantation in body tissue, particularly bone tissue, consisting of a biologically flawless material with a micro-pitted surface, the pores in the surface have a diameter many times smaller than has been previously known in order to permit the occurrence of such a tight and extensive boundary zone around the implanted element that this achieves reinforced and inextricable anchoring in the tissue. The pore diameter may be as little as about 10 nm and as large as a few multiples of the normal diameter of the cells in the tissue, preferably no larger than the cell diameter, i.e. about 1000 nm. Optimal results are obtained with pore diameters equal to or smaller than about 300 nm and a finely pored rutile layer has been found to give a particularly strong and durable joint with the growing tissue. Preferably at least one deposit of an agent facilitating and/or accelerating the growing-together process is arranged on or in the element. The element may be shaped with grooves, corrugations, channels etc. and be provided with an opening for tissue to grow through. The element is extremely suitable as anchoring device for a prosthesis or partial prosthesis and may be made integral therewith.
机译:在由具有微凹坑表面的生物无缺陷的材料组成的用于植入人体组织特别是骨骼组织的元件中,表面中的孔的直径比先前已知的直径小许多倍,以便允许这种情况的发生。植入元件周围的紧密而宽阔的边界区域,可实现在组织中的强化且不可分割的锚固。孔径可以小到约10nm,大到组织中细胞正常直径的几倍,优选不大于细胞直径,即约1000nm。在孔径等于或小于约300 nm的情况下可获得最佳结果,并且发现细孔金红石层可与生长中的组织形成特别牢固和持久的接头。优选地,将至少一种促进和/或加速共同生长过程的药剂沉积物布置在元件上或元件中。该元件可以成形为具有凹槽,波纹,通道等,并设有用于组织生长的开口。该元件非常适合作为假体或部分假体的锚固装置,并且可以与之一体制成。

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