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Computing stable contact interface for customized surgical jigs

机译:计算稳定的接触界面,用于定制手术夹具

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This paper presents a framework to compute stable contact interfaces for automatically designing customized jigs used in bone surgeries. Given the surface model of a bone represented by polygonal meshes, we find out a small region on the surface to be used as the interface of a customized jig so that it can be stably fixed on the bone under a directional clamping force. The variation of directions on the clamping force is allowed in our formulation. Moreover, the surface region serves as the interface of stable contact must also be disassemblable so that the jig and the bone can be separated after removing the clamping force. The analysis of stable contact is formulated on a Gaussian map by the common regions of half-spaces according to the motion restrictions. A flooding algorithm is proposed to determine those disassemblable and stable contact interfaces on the surface of a bone, where the contact surfaces are later converted into the solid model of a jig to be fabricated by additive manufacturing. Experimental tests are taken to verify the stable contact between a bone and the jig generated by our approach.
机译:本文提出了一种计算稳定接触界面的框架,用于自动设计骨外科中使用的定制夹具。给定以多边形网格表示的骨骼的表面模型,我们在表面上发现了一个小区域,可以用作定制夹具的界面,以便可以在定向夹紧力下将其稳定地固定在骨骼上。在我们的配方中允许改变夹紧力的方向。此外,用作稳定接触的界面的表面区域也必须是可拆卸的,以使夹具和骨头在去除夹紧力后可以分离。根据运动限制,通过半空间的公共区域在高斯图上建立稳定接触的分析。提出了一种泛洪算法来确定骨骼表面上那些可拆卸且稳定的接触界面,然后将接触表面转换成夹具的实体模型,以通过增材制造法进行制造。进行了实验测试,以验证通过我们的方法生成的骨骼与夹具之间的稳定接触。

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