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各种碳纤维编织技术及固定方法对韧带假体伸展性的影响。

The influence of various carbon fibre braiding techniques and methods of fixation on the extensibility of ligament prostheses.

作者信息

Claes L, Burri C, Neugebauer R, Wolter D, Rose P

出版信息

Biomaterials. 1983 Apr;4(2):134-6. doi: 10.1016/0142-9612(83)90055-8.

Abstract

An alloplastic ligament prosthesis with carbon fibres should not only be biocompatible but should also restore the biomechanical function of a natural system, which includes restoring its elasticity. Tests with new types of braided carbon fibre strands showed their elastic extensibility to increase with increasing number of filament tows and increasing braid angle. The best results were obtained with 32 tows and a 43 degrees braid angle. This strand type was tested in vitro as a medial collateral ligament prosthesis with two methods of fixation in human knees and, in like manner, in vivo in sheep knees. Biomechanical tests in vitro using human cadaver knees and sheep knees after 12 weeks' implantation showed an elasticity similar to that of normal natural ligaments.

摘要

一种带有碳纤维的人工韧带假体不仅应具有生物相容性,还应恢复自然系统的生物力学功能,其中包括恢复其弹性。对新型编织碳纤维束进行的测试表明,其弹性延伸率随着丝束数量的增加和编织角度的增大而增加。使用32束丝束和43度编织角度时可获得最佳效果。这种束丝类型作为内侧副韧带假体,在人体膝关节中采用两种固定方法进行了体外测试,同样也在绵羊膝关节中进行了体内测试。在人体尸体膝关节和绵羊膝关节植入12周后进行的体外生物力学测试表明,其弹性与正常天然韧带相似。

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