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热等静压处理的羟基磷灰石涂层钛在骨中的结合能力:力学和组织学研究。

Bonding capacity in bone of HIP-processed HA-coated titanium: mechanical and histological investigations.

作者信息

Wie H, Herø H, Solheim T, Kleven E, Rørvik A M, Haanaes H R

机构信息

Department of Prosthetic Dentistry and Stomatognathic Physiology, Dental Faculty, University of Oslo, Norway.

出版信息

J Biomed Mater Res. 1995 Nov;29(11):1443-9. doi: 10.1002/jbm.820291116.

Abstract

The main problems using plasma-sprayed hydroxyapatite (HA) as a coating material on metallic implants are its porosity, low fatigue strength, and weak adherence to the metallic substrate. To overcome these problems a new technique using hot isostatic pressing (HIP) has been developed for producing HA-coated titanium (Ti) implants. Specimens produced at a maximum temperature of 850 degrees C and a maximum pressure of 720 bar displayed a dense, glassy, 25-microns thick coating with small amounts of porosity and a mean surface roughness of 0.7 microns, as compared with 1.6 microns for sandblasted Ti. Twenty conical HA-coated (720 and 100 bar pressure) and 10 noncoated Ti implants were inserted through the cortex of the lower margin of the mandibles of sheep and allowed to heal for 60 days. Push-out tests for implants processed at 720 bar pressure showed substantially higher bone/implant bonding values than for sandblasted Ti implants. Histological studies indicated a direct contact and probably chemical bonding between bone tissue and the HA coatings. The area of contact was almost 3 times as large as for the Ti implants. The adherence of the 100-bar coating to the Ti surface was inferior to the 720-bar coating, as shown by the loosening of the coatings in several areas.

摘要

将等离子喷涂羟基磷灰石(HA)用作金属植入物的涂层材料时,主要问题在于其孔隙率、低疲劳强度以及与金属基底的附着力较弱。为克服这些问题,已开发出一种使用热等静压(HIP)的新技术来生产HA涂层钛(Ti)植入物。在最高温度850摄氏度和最高压力720巴的条件下生产的试样,呈现出致密、玻璃状、厚度为25微米的涂层,孔隙率较小,平均表面粗糙度为0.7微米,相比之下,喷砂处理的Ti的平均表面粗糙度为1.6微米。将20个锥形HA涂层(压力为720和100巴)和10个未涂层的Ti植入物插入绵羊下颌骨下缘的皮质中,并使其愈合60天。对在720巴压力下处理的植入物进行的推出试验表明,其骨/植入物结合值明显高于喷砂处理的Ti植入物。组织学研究表明,骨组织与HA涂层之间存在直接接触,可能还有化学键合。接触面积几乎是Ti植入物的3倍。如在几个区域涂层出现松动所示,100巴涂层与Ti表面的附着力不如720巴涂层。

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