[兔下颌骨强化陶瓷植入愈合过程的实验研究]。

Shika gakuho. Dental science reports Pub Date : 1990-04-01
S Nakajima
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引用次数: 0

摘要

在五种不同的木块(HAP, HAP;透辉石,透辉石,HAP。钙长石和钙长石)是一种用于兔下颌骨种植体的材料。采用病理组织学、扫描电镜(SEM)和透射电镜(TEM)观察各骨块内表面的变化,观察新骨与骨块的结合情况,观察各骨块周围新骨的形成及成熟过程。1. 使用HAP 48周后,仍未见大量吸收阻滞。透辉石阻滞,HAP的β - tcp被分解,并与HAP结合。钙长石块体,其内表面破碎或溶解。透辉石仅在内表面被分解,但仅限于富硅区。2. HAP块是长期创建的,并且与HAP一起。钙长岩和钙长岩块体,其内表面有断裂的趋势。相比之下,透辉石和hap透辉石均未见裂化。3.术后2周,直接造骨,用HAP和HAP附着在透辉石上。透辉石,在它的一部分可以看到这种骨的形成,在剩下的部分,纤维形成了。偶然发生。钙长石和钙长石似乎没有新骨附着在直接块上。4. 术后4周,透辉石块被完整的新骨包围并稳定。我花了12个多星期才找到HAP, HAP。透辉石,运气。钙长石和钙长石阻碍了新骨中的骨素。5. 由透辉石块中出现的HAP晶体和新骨中的磷灰石晶体形成的晶格是连续的,并沿一个方向排列。6. 从上述研究结果可以看出,透花石具有机械强度强的特点,由于早期沿块体表面形成新骨,种植后很快就稳定在骨内,是本研究中所有块体中最适合作为种植体的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Experimental studies of healing process on reinforcement ceramic implantation in rabbit mandible].

The following results were obtained from the experiment on the five different blocks (HAP, HAP.diopside, diopside, HAP.anorthite and anorthite) which were created as a material of dental implant for in rabbit mandible. Implantation was done on those five blocks under the same condition using pathologic histology, SEM and TEM to see and examine about the changes in the inner surface of each block, the joint condition of new bone and the block, and new bone created around each block and follow its maturing procedure. 1. Much resorption was not seen HAP block even after 48 weeks, with HAP.diopside block, beta-TCP of HAP was resolved, and with HAP.anorthite block, its inner surface was either broken or resolved. Diopside was resolved only in the inner surface, but it was limited only in the Si-rich area. 2. HAP block was created in the long term, and with HAP.anorthite and anorthite block, their inner surface tended to brake apart. In comparison, neither cracking on parting was seen with diopside and HAP.diopside. 3. In two weeks after operation, direct bone was created and attached to diopside with HAP and HAP.diopside, this kind of bone formation was seen in the part of it, and in the rest of the part, the fiber was created. HAP.anorthite and anorthite did not seem to have new bone attached to the direct block. 4. By 4 weeks after the operation, diopside block was surrounded and stabilized by the completed new bone. It took more than 12 weeks for HAP, HAP.diopside, HAP.anorthite and anorthite block to have osteon in the new bone. 5. Crystal lattice created by HAP crystal which appeared in the diopside block, and apatite crystal in the new bone is continuous and arranged in one direction. 6. From above mentioned study results, we can say that diopside is mechanically strong, and because of new bone created along the block surface at an early stage, it is stabilized in the bone soon after the implantation and is the most suitable as a material of dental implant in all the blocks used in this study case.

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