首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >A NOVEL DEVICE TO INVESTIGATE THE EFFECT OF RESIDUAL TENSION IN NATURAL TISSUE IMPLANTS
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A NOVEL DEVICE TO INVESTIGATE THE EFFECT OF RESIDUAL TENSION IN NATURAL TISSUE IMPLANTS

机译:研究残余张力在自然组织植入物中的作用的新装置

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Natural collagen tissue implants derived from fetal bovine dermis are an attractive alternative to polymers for use in soft tissue repair. Constitutive relationships for this material are typically determined in vitro on a universal testing machine. However, upon implementation, tissue remodeling may cause the material properties to change rapidly. The literature indicates that the level of in vivo strain and the corresponding stress field may promote either tissue adaptation or undesirable resorption. The present work investigates a novel device for eventual use as an implantable tensometer. The device is not intended to be a substitute for material characterization on a universal testing machine, but rather a new device, representing a basic mechanical system that would facilitate the development of an even smaller instrument on the scale to be implanted in laboratory animals. An instrument of this type would enable the in vivo characterization of biomaterials under a prescribed load. The new device uses springs to generate a force on the biomaterial sample. Results show that the device creates a diminishing force that reaches quasi-static equilibrium displacement with acellular collagen implants (n=ll) of varying cross sectional areas under different loads. Reaching an equilibrium displacement is an essential starting point for an implantable instrument. Changes from the equilibrium position may forecast a threshold stress to initiate resorption. In addition, knowledge on resorption rate may be obtained.
机译:衍生自胎牛真皮的天然胶原植入植入物是用于软组织修复的聚合物的有吸引力的替代品。该材料的本构关系通常在通用测试机上体外测定。然而,在实施方面,组织重塑可能导致材料特性快速变化。该文献表明体内菌株和相应的应力场的水平可以促进组织适应或不希望的吸收。本工作调查了一种用于最终用作植入张计的新颖装置。该装置不旨在是通用测试机器上的材料表征的替代品,而是一种新设备,其代表基本的机械系统,该系统将促进在植物动物中植入鳞片上的较小仪器的发展。这种类型的仪器将在规定的载荷下使生物材料的体内表征能够。新设备使用弹簧在生物材料上产生力。结果表明,该装置产生了逐渐减少力,该力达到了不同载荷下不同横截面积的细胞胶原植入物(N = LL)的准静态平衡位移。达到平衡位移是可植入仪器的基本起点。来自均衡位置的变化可以预测阈值应力以启动吸收。此外,可以获得关于吸收率的知识。

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