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Determination of the Hounsfield value for CT-based design of custom femoral stems

机译:基于CT的定制股骨柄设计的Hounsfield值的确定

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CT and advanced computer-aided design techniques offer the means for designing customised femoral stems. Our aim was to determine the Hounsfield (HU) value of the bone at the corticocancellous interface, as part of the criteria for the design algorithm.We obtained transverse CT images from eight human cadaver femora. The proximal femoral canal was rasped until contact with dense cortical bone was achieved. The femora were cut into several sections corresponding to the slice positions of the CT images. After obtaining a computerised image of the anatomical sections using a scanner, the inner cortical contour was outlined and transferred to the corresponding CT image. The pixels beneath this contour represent the CT density of the bone remaining after surgical rasping. Contours were generated automatically at nine HU levels from 300 to 1100 and the mean distance between the transferred contour and each of the HU-generated contours was computed.The contour generated along the 600-HU pixels was closest to the inner cortical contour of the rasped femur and therefore 600 HU seem to be the CT density of the corticocancellous interface in the proximal part of cadaver femora. Generally, femoral bone with a CT density beyond 600 HU is not removable by conventional reamers. Thus, we recommend the 600 HU threshold as one of several criteria for the design of custom femoral implants from CT data.
机译:CT和先进的计算机辅助设计技术为设计定制的股骨柄提供了方法。我们的目的是确定皮质突触界面处的骨头的Hounsfield(HU)值,作为设计算法标准的一部分。我们从8具人体尸体股骨获得了横向CT图像。磨除股骨近端根管直至与致密的皮质骨接触。将股骨切成与CT图像的切片位置相对应的几个部分。在使用扫描仪获得解剖切片的计算机化图像之后,勾勒出内部皮质轮廓,并将其转移到相应的CT图像上。该轮廓下方的像素代表手术打磨后剩余的骨头的CT密度。在300到1100的9个HU级别上自动生成轮廓,并计算了转移轮廓与每个HU生成轮廓之间的平均距离。沿600 HU像素生成的轮廓最接近锯齿的内部皮质轮廓股骨,因此600 HU似乎是尸体股骨近端皮质突触界面的CT密度。通常,CT密度超过600 HU的股骨不能用传统的铰刀切除。因此,我们建议使用600 HU阈值作为根据CT数据设计定制股骨植入物的几个标准之一。
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