Radiographic and histologic evaluation of intramedullary implants intended for biological fixation.

R E Luedemann, S D Cook
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引用次数: 4

Abstract

Three mechanisms of direct biological attachment of implants to bone were examined using femoral intramedullary implants. The implant systems studied were; low temperature isotropic (LTI) pyrolytic carbon, carbon coated porous Co-Cr-Mo alloy and 45S5 bioglass coated Co-Cr-Mo alloy. A detailed radiographic examination revealed that all three implant systems caused significant remodeling of the femurs resulting in an hour-glass appearance. The implants were also associated with a densification of cancellous bone proximal and distal to the ends of the implant. Histologically, all three implant systems exhibited a direct bone-implant bond at the majority of the interfaces. The LTI pyrolytic carbon implants were associated with a higher incidence of fibrous tissue encasement in the proximal cancellous bone region. Active bone remodeling was observed within the pores of the porous Co-Cr-Mo alloy implants even after 8 months in situ.

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用于生物固定的髓内植入物的放射学和组织学评价。
研究了股骨髓内植入物与骨直接生物附着的三种机制。所研究的种植体系统有;低温各向同性(LTI)热解碳、碳包覆多孔Co-Cr-Mo合金和45S5生物玻璃包覆Co-Cr-Mo合金。详细的x线检查显示,所有三种植入系统都引起股骨的显著重塑,导致沙漏外观。种植体还与种植体末端近端和远端松质骨致密化有关。组织学上,所有三种种植体系统在大多数界面上都表现出直接的骨-种植体结合。LTI热解碳植入物与近端松质骨区纤维组织包裹的发生率较高相关。即使在原位放置8个月后,在多孔Co-Cr-Mo合金植入物的孔内也观察到活跃的骨重塑。
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