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Evaluating the Surface Topography of Pyrolytic Carbon Finger Prostheses through Measurement of Various Roughness Parameters

机译:通过测量各种粗糙度参数评估热解碳手指假体的表面形貌

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摘要

The articulating surfaces of four different sizes of unused pyrolytic carbon proximal interphalangeal prostheses (PIP) were evaluated though measuring several topographical parameters using a white light interferometer: average roughness (Sa); root mean-square roughness (Sq); skewness (Ssk); and kurtosis (Sku). The radii of the articulating surfaces were measured using a coordinate measuring machine, and were found to be: 2.5, 3.3, 4.2 and 4.7 mm for proximal, and 4.0, 5.1, 5.6 and 6.3 mm for medial components. ANOVA was used to assess the relationship between the component radii and each roughness parameter. Sa, Sq and Ssk correlated negatively with radius (p = 0.001, 0.001, 0.023), whilst Sku correlated positively with radius (p = 0.03). Ergo, the surfaces with the largest radii possessed the better topographical characteristics: low roughness, negative skewness, high kurtosis. Conversely, the surfaces with the smallest radii had poorer topographical characteristics.
机译:通过使用白光干涉仪测量几个形貌参数,评估了四种不同尺寸的未使用的热解碳近侧指间假体(PIP)的关节表面。均方根粗糙度(Sq);偏度(Ssk);和峰度(Sku)。铰接表面的半径使用三坐标测量机测量,发现:近端为2.5、3.3、4.2和4.7 mm,内侧组件为4.0、5.1、5.6和6.3 mm。使用方差分析评估组件半径与每个粗糙度参数之间的关系。 Sa,Sq和Ssk与半径呈负相关(p = 0.001、0.001、0.023),而Sku与半径呈正相关(p = 0.03)。因此,半径最大的表面具有更好的地形特征:低粗糙度,负偏度,峰度高。相反,半径最小的表面具有较差的地形特征。

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