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使用微型计算机断层扫描对大鼠牙周韧带在功能和牙齿移动过程中的延时观察。

Time-lapse observation of rat periodontal ligament during function and tooth movement, using microcomputed tomography.

作者信息

Nakamura Yoshiki, Noda Koji, Shimoda Shinji, Oikawa Takashi, Arai Chihiro, Nomura Yoshiaki, Kawasaki Kenzo

机构信息

Department of Orthodontics, Tsurumi University School of Dental Medicine, Yokohama, Japan.

出版信息

Eur J Orthod. 2008 Jun;30(3):320-6. doi: 10.1093/ejo/cjm133. Epub 2008 Mar 26.

Abstract

The aim of this study was to observe the time-lapse changes in the rat periodontal ligament (PDL) during function and tooth movement. Under Nembutal anaesthesia, time-lapse changes in the thickness of the PDL of the first molars were investigated in five 12-week-old adolescent rats with microcomputed tomography. Three-dimensional (3D) images were reconstructed from the data. Histological observation was also performed, using undecalcified frozen sections of the maxillary first molar area. The PDL appeared as a radiolucent furrow on the 3D images. A slight change in the thickness of the PDL was observed 1 hour after initiation of orthodontic force loading, which became significant after 6 hours, with the appearance of pressure-tension zones during the tooth movement. These changes were more significant 3 days after orthodontic loading. Histological observation of the lingual cervical PDL (pressure zone) in nine 12- to 13-week-old rats demonstrated that the periodontal space had become narrow and the cellular elements appeared to be densely packed in the narrowed PDL 6 hours after orthodontic loading. Degeneration of tissues appeared 3 days after loading. Observation of the buccal cervical PDL (tension zone) demonstrated that the PDL was extended 6 hours after orthodontic force loading, and the extension continued for up to 3 days. Alkaline phosphatase activity was distributed in the PDL, except for the degenerating tissues in the pressure zone 3 days after loading. The results suggest that the periodontal reaction was initiated within 6 hours after orthodontic force loading, which was related to the structural changes of the PDL. The changes probably induced an early response in individual cells of the PDL.

摘要

本研究的目的是观察大鼠牙周膜(PDL)在功能和牙齿移动过程中的实时变化。在戊巴比妥麻醉下,使用微型计算机断层扫描对5只12周龄的青春期大鼠第一磨牙的牙周膜厚度进行实时变化研究。从数据中重建三维(3D)图像。还使用上颌第一磨牙区域的未脱钙冰冻切片进行组织学观察。在3D图像上,牙周膜表现为一条射线可透过的沟。正畸力加载开始1小时后,观察到牙周膜厚度有轻微变化,6小时后变得显著,牙齿移动过程中出现压力-张力区。正畸加载3天后,这些变化更为明显。对9只12至13周龄大鼠舌侧颈部牙周膜(压力区)的组织学观察表明,正畸加载6小时后,牙周间隙变窄,细胞成分在变窄的牙周膜中似乎密集堆积。加载3天后出现组织退变。对颊侧颈部牙周膜(张力区)的观察表明,正畸力加载6小时后牙周膜伸展,伸展持续长达3天。碱性磷酸酶活性分布在牙周膜中,加载3天后压力区退变组织除外。结果表明,正畸力加载后6小时内开始出现牙周反应,这与牙周膜的结构变化有关。这些变化可能在牙周膜的单个细胞中引发早期反应。

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