[Effects on repaired bone with hydroxyapatite by the changes of dynamics in the alveolar bone].

I Ishikawa, S Yamaguchi, H Masunaga, M Matsue, I Matsue
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Abstract

Hydroxyapatite (HAP) is regarded as a useful material for grafting in procedure aimed at bone replacement. The purpose of this investigation, as a basic experiment, was to demonstrate bone formation in the dental extraction sockets during orthodontic movement of the neighboring teeth in the initial wound healing phase, and to clarify effects of indirect forces through alveolar bone on repairing bone in extraction sockets. Secondary we examined changes in the bone formation in the sockets during the tooth movement which were plugged with HAP granules and compared with the repairing bone without HAP. For this study seven dogs were used and were scarificed according to a schedule yielding observation periods up to 6 weeks. The animals were injected continuously with tetracycline during the experimental period. Undecalcified mesio-distal specimens 65-100 microns of thickness were prepared at first for microradiogram and then subjected to fluorescence microscopy. The observations indicated that the bone formation seemed to be accelerated with HAP implantation, however the alveolar trabeculae around HAP were developed during the tooth movement less than the control. The tooth movement in implanted sites was faster than in the sites without HAP implantation. The decreased response on alveolar bone formation, incident to experimental tooth movement into extraction sockets, was found in the pressure area, mesial part of socketswall. It might be induced by excessive stress during the tooth movement, amplified by the change of bone repairing due to the HAP implantation.

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羟基磷灰石对牙槽骨动力学变化对修复骨的影响。
羟基磷灰石(HAP)在骨置换手术中被认为是一种有用的移植材料。本研究是一项基础实验,目的是观察邻近牙齿在伤口愈合初期正畸运动过程中拔牙槽骨的形成情况,并阐明通过牙槽骨的间接力对拔牙槽骨修复的影响。其次,我们观察了用羟基磷灰石颗粒封堵牙槽骨后牙槽骨形成的变化,并与不使用羟基磷灰石的修复骨进行了比较。在这项研究中,使用了7只狗,并根据观察期长达6周的时间表进行了牺牲。实验期间连续给动物注射四环素。先制备厚度为65 ~ 100微米的未钙化中远端标本,进行微射线照相,再进行荧光显微镜观察。结果表明,种植HAP后牙体骨形成加快,但HAP周围的牙槽小梁在牙体运动过程中发育较对照组慢。种植位置的牙齿运动速度比未种植位置快。在牙槽小腹内侧的压力区,实验牙移动到拔牙槽内对牙槽骨形成的反应减弱。这可能是由于牙齿在运动过程中受到过大的应力而引起的,而HAP种植导致的骨修复的改变则会使其放大。
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