[实验性牙齿挤压中牙周韧带微血管形态的变化]。

K Kobayashi
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引用次数: 0

摘要

采用48只成年猫,观察牙周韧带血管形态在牙齿挤压作用下的一系列变化。右上犬齿已连续挤压(初始负荷40克)与一个开放的线圈弹簧。试验期分别为1、2、3、4、6周。在每个实验期间,利用丙烯酸塑料注射法(Taniguchi and Ohta, et al. 1952 and 1955)制备实验牙周围牙周韧带和牙槽骨微血管铸型,用于扫描电镜观察。并对实验牙的周围组织进行了连续切片。为了阐明齿的运动模式,测量了齿的受力和挤压距离。实验结果如下:1。实验牙在前两周内迅速挤出。后来速度逐渐下降。2. 新生血管首先在牙尖周围形成,然后在牙周韧带内广泛分布。两周后,根尖静脉网周围可见明显的小梁状骨形成。3.与牙齿的运动相比,牙齿挤压后的组织反应延迟。4. 虽然挤出牙根尖的组织反应与牙横向运动时的组织反应相似,但在组织变化的时间和毛细网络的形状上有细微的差异。组织变化的结果表明,光的力量是指挤压的牙齿。在正畸临床中,应限制施加力的作用范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Changes in the microvascular pattern of the periodontal ligament in an experimental tooth extrusion].

Forty eight adult cats were employed to investigate the serial changes of vascular patterns of the periodontal ligament on tooth extrusion. The right upper canines have been successively extruded (initial load 40 gr) with a open coil spring. The experimental periods were set on 1, 2, 3, 4 and 6 weeks respectively. On each experimental period, the microvascular casts of the periodontal ligament and alveolar bone around the experimental tooth were prepared for the scanning electron microscopy, utilizing the acrylic plastic injection method (Taniguchi and Ohta, et al. 1952 and 1955). And the serial sections of the surrounding tissues of the experimental tooth were made. In order to elucidate the mode of the tooth movement, the load of applied force and the distance of extrusion were measured. Results obtained were as follows: 1. The experimental tooth was extruded rapidly during first two weeks. The speed reduced gradually afterwards. 2. The new vascularization was seen around the apex first, then widely spread in the periodontal ligament. And the remarkable trabecula-shaped bone formation were observed around the venous networks of the root apex after two week period. 3. The tissue reactions after the tooth extrusion delayed in comparison with the movement of the tooth. 4. Although the tissue reactions of the root apex of the extruded tooth were originally similar to the one in the transverse tooth movement, slight differences were found in timing of the tissue change and shape of the capillary network. The findings of the tissue change showed that the light force was indicated in extrusion of the tooth. And the range of action of the force applied should be limited in orthodontic clinic.

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