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1)  Wear debris
磨损颗粒
1.
Objective To observe and compare the expression of inducible nitric oxide synthase(iNOS) and peroxynitrite anion(ONOO~-)induced by alumina and ultra-high-mdeunlar-weight polyethylene wear particles and to investigate the mechanism of the periprosthetic osteolysis induced by wear debris during aseptic loosening.
目的研究和比较氧化铝陶瓷和高分子聚乙烯磨损颗粒在动物体内诱导型一氧化氮合酶(iNOS)和过氧亚硝基阴离子(ONOO-)表达的变化,探讨其在人工假体无菌性松动病理过程的意义。
2.
Object To observe the biological response to the wear debris from the total hip prosthesis of Magnesium Silicon Jade (MSJ) in vivo, to compare the capability of inducing osteolysis between the particles of MSJ and the particles of ultra-high molecular weight polyethylene (UHMWPE), and to explore the reasons of loosening of the prosthesis of MSJ.
目的观察镁硅玉人工髋关节的磨损颗粒在动物体内的生物反应,比较镁硅玉和高分子聚乙烯微粒诱导骨溶解的活性,探讨镁硅玉人工髋关节松动的原因。
3.
Osteolysis and loosening of artificial joints caused by polyethylene wear debris have prompted renewed interest in alternative bearing materials for hip prosthesis designs.
人工髋关节晚期失败的主要原因是高分子聚乙烯磨损颗粒引起的骨溶解导致假体松动。
2)  wear particles
磨损颗粒
1.
An in vivo study of the inhibitory effect of erythromycin on wear particles induced osteolysis;
红霉素抑制磨损颗粒诱发体内骨溶解的研究
2.
Isolation and analysis of wear particles from severe osteolytic tissue around acetabular implant;
假体周围骨溶解组织中磨损颗粒的提取与分析
3.
Effects of alendronate of different dose on the periprosthetical osteolysis induced by the wear particles;
不同剂量阿仑膦酸钠对磨损颗粒诱导假体周围骨溶解的影响
3)  wear particle
磨损颗粒
1.
Experimental study on a method of in vitro preparation and seperation for metallic prosthesis wear particles;
人工关节金属磨损颗粒体外制备分离方法的实验研究
2.
Effects of 3 kinds of wear particles on primary cultured human osteoblasts;
3种磨损颗粒对体外原代培养人成骨细胞的作用
4)  wear [英][weə(r)]  [美][wɛr]
颗粒磨损
1.
Numerical modelling of solid-liquid two-phase turbulent flow and wear;
固液两相湍流和颗粒磨损的数值模拟
5)  wear/particles
磨损/颗粒
6)  on-line large particals monitor
在线大颗粒磨损
补充资料:炭黑颗粒磨损量
分子式:
CAS号:

性质:用以表征造粒炭黑在运输过程中颗粒破碎和磨损的情况。将造粒炭黑放入规定筛子上部,经振筛后除去细粉量,再继续振筛,以测定颗粒破碎或磨损的量,其结果以质量百分数表示。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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