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[优化及个体化髋关节假体的计算。可行性研究]

[Calculation of optimized and individualized hip prosthesis. A study of feasibility].

作者信息

Ferre J C, Chevalier C, Helary J L, Le Cloarec A Y, Legoux R, Le Tenneur J, Lumineau J P, Mora H, Bournat J P, Guillou G

出版信息

Chirurgie. 1992;118(9):575-9.

PMID:1344795
Abstract

As logical consequence of a series of basic research studies on human femoral bones with unipodal support and under static stress, performed with physicomathematic modelling methods (finite-elements method) then confirmed by direct visualization of deformations resulting from such stress using holographic interferometry, the authors have worked on the definition of an optimized and individualized hip prosthesis. Thick CT sections digitized with a table and entered into a specially programmed computer allowed three-dimensional modelling of the femur as a volume, i.e. with its external contour and its medullary canal, and therefore of the implantable space. The prosthesis was then defined taking a number of hypotheses into account: necessity to regularize cortical bone spicules inside spongious bone, which are so often present opposite the rough line, partial machining at the level of the calcar, reduced tail length, presence or absence of collar. Thus an optimized and individualized prosthesis was defined. A prototype corresponding to a given femoral bone could then have been produced. However, the authors found it preferable to use simulation with computer synthetic images to check easy insertion and removal.

摘要

作为一系列运用物理数学建模方法(有限元法)对单足支撑且承受静态应力的人体股骨进行基础研究的必然结果,随后通过全息干涉测量法直接观察此类应力产生的变形得以证实,作者致力于定义一种优化的个性化髋关节假体。用工作台对厚层CT切片进行数字化处理并输入专门编程的计算机,可对股骨进行三维建模,即连同其外部轮廓和髓腔一起建模,从而得到可植入空间的模型。然后在考虑诸多假设的情况下定义假体:有必要规整松质骨内常常出现在粗线对面的皮质骨针,在股骨矩水平进行部分加工,缩短尾部长度,有无颈圈。这样就定义出了一种优化的个性化假体。原本可以制作出与某一特定股骨对应的原型。然而,作者发现使用计算机合成图像进行模拟来检查假体的轻松植入和取出更为可取。

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