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模块化髋臼组件非关节表面产生的聚乙烯和金属碎屑。

Polyethylene and metal debris generated by non-articulating surfaces of modular acetabular components.

作者信息

Huk O L, Bansal M, Betts F, Rimnac C M, Lieberman J R, Huo M H, Salvati E A

机构信息

Hospital for Special Surgery, New York, NY 10021.

出版信息

J Bone Joint Surg Br. 1994 Jul;76(4):568-74.

PMID:8027142
Abstract

We report a prospective study of the liner-metal interfaces of modular uncemented acetabular components as sources of debris. We collected the pseudomembrane from the screw-cup junction and the empty screw holes of the metal backing of 19 acetabula after an average implantation of 22 months. Associated osteolytic lesions were separately collected in two cases. The back surfaces of the liners and the screws were examined for damage, and some liners were scanned by electron microscopy. The tissues were studied histologically and by atomic absorption spectrophotometry to measure titanium content. The pseudomembrane from the screw-cup junction contained polyethylene debris in seven specimens and metal debris in ten. The material from empty screw holes was necrotic tissue or dense fibroconnective tissue with a proliferative histiocytic infiltrate and foreign-body giant-cell reaction. It contained polyethylene debris in 14 cases and metal in five. The two acetabular osteolytic lesions also showed a foreign-body giant-cell reaction to particulate debris. The average titanium levels in pseudomembranes from the screw-cup junction and the empty screw holes were 959 micrograms/g (48 to 11,900) and 74 micrograms/g (0.72 to 331) respectively. The tissue from the two lytic lesions showed average titanium levels of 139 and 147 micrograms/g respectively. The back surfaces of the PE liners showed surface deformation, burnishing, and embedded metal debris. All 30 retrieved screws demonstrated fretting at the base of the head and on the proximal shaft. Non-articular modular junctions create new interfaces for the generation of particulate debris, which may cause granulomatous reaction.

摘要

我们报告了一项关于模块化非骨水泥髋臼组件的衬垫 - 金属界面作为碎片来源的前瞻性研究。在平均植入22个月后,我们从19个髋臼的螺钉 - 髋臼杯连接处以及金属背衬的空螺钉孔中收集了假膜。在两例中分别收集了相关的骨质溶解病变组织。检查衬垫和螺钉的背面是否有损伤,部分衬垫进行了电子显微镜扫描。对组织进行组织学研究并通过原子吸收分光光度法测量钛含量。来自螺钉 - 髋臼杯连接处的假膜在7个标本中含有聚乙烯碎片,在10个标本中含有金属碎片。来自空螺钉孔的物质为坏死组织或致密的纤维结缔组织,伴有增生性组织细胞浸润和异物巨细胞反应。其中14例含有聚乙烯碎片,5例含有金属碎片。这两个髋臼骨质溶解病变也显示出对颗粒碎片的异物巨细胞反应。来自螺钉 - 髋臼杯连接处和空螺钉孔的假膜中钛的平均含量分别为959微克/克(48至11,900)和74微克/克(0.72至331)。这两个溶骨病变组织中的钛平均含量分别为139和147微克/克。聚乙烯衬垫的背面显示出表面变形、抛光以及嵌入的金属碎片。所有30枚取出的螺钉在头部基部和近端轴上均显示出微动磨损。非关节模块化连接处为颗粒碎片的产生创造了新的界面,这可能会引起肉芽肿反应。

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