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Wear Performance of Calcium Carbonate-Containing Knee Spacers

机译:含碳酸钙的膝关节垫片的磨损性能

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摘要

Articulating spacers should be wear-resistant and load-bearing to avoid prolonged immobilization of the patient and to reduce morbidity. However, due to the articulation of both components, a release of cement wear particles is to be expected. The aim of this study was to investigate the wear performance of a new spacer cement that contains calcium carbonate as a radio-opaque substance, in comparison to an established barium sulphate-containing spacer material, and also to characterize the amount, morphology, and size distributions of the released cement particles in detail. Force-controlled simulation was carried out on an AMTI knee simulator. The test parameters were in accordance with the standard ISO 14243-1 with a 50% reduced axial force. Tests were run for 500,000 cycles at a frequency of 1 Hz. For wear analysis, photographic documentation of the wear scars, gravimetric wear measurements and wear particle analysis were performed. The barium sulphate spacer material showed a total articular wear of 375.53 ± 161.22 mg. For the calcium carbonate-containing cement, reduced articular wear of 136.32 ± 37.58 mg was determined. Isolated cement wear particles of the barium sulphate-containing cement had a diameter of 0.429 ± 0.224 μm and were significantly larger compared to the calcium carbonate-containing cement (0.380 ± 0.216 μm, p = 0.02). The calcium carbonate-containing cement showed better wear performance in terms of gravimetric wear and particle release. Thus, calcium carbonate seems to be a promising material as a radio-opaque substrate in cement spacers.
机译:铰接垫片应具有耐磨性和承重能力,以免患者长时间固定并减少发病率。然而,由于两个部件的铰接,预计会释放出水泥磨损颗粒。这项研究的目的是研究一种新的隔离水泥的磨损性能,该水泥与一种已建立的含硫酸钡的隔离材料相比,含有碳酸钙作为不透射线的物质,并且还表征了其数量,形态和尺寸释放的水泥颗粒的详细分布。在AMTI膝部模拟器上进行了力控制的模拟。测试参数符合标准ISO 14243-1,轴向力降低了50%。测试以1 Hz的频率运行了500,000个循环。对于磨损分析,进行了磨损痕迹的照相记录,重量磨损测量和磨损颗粒分析。硫酸钡隔离材料的总关节磨损为375.53±161.22 mg。对于含碳酸钙的水泥,确定的关节磨损降低为136.32±37.58 mg。含硫酸钡的水泥的孤立的水泥磨损颗粒的直径为0.429±0.224μm,并且与含碳酸钙的水泥(0.380±0.216μm,p = 0.02)相比明显更大。就重量磨损和颗粒释放而言,含碳酸钙的水泥表现出更好的磨损性能。因此,碳酸钙似乎是有前途的材料,作为水泥垫片中不透射线的基材。

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