[Changes of the periodontal vascular network, periodontal fiber and alveolar bone incident to tooth extrusion].

F Kawato
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Abstract

During the application of orthodontic force to a tooth, the surrounding tissues undergo changes of bone resorption and apposition, thereby resulting in tooth movement. The purpose of this study was to investigate the interrelationship between alveolar bone changes and the periodontal vascular network caused by extrusive orthodontic force using a scanning electron microscopy. Extrusive orthodontic force was applied to the mandibular 2nd and 3rd premolars of adult dogs. At the completion of the loading process, the inferior alveolar arteries were injected with a low viscosity MMA resin (Mercox). The following results were obtained. 1) At 3 days post-extrusion, various types of vascular network showing a loop pattern were seen along the direction of the tooth movement. 2) At 7 days post-extrusion, various types of vascular network with a hairpin loop pattern along the direction of the tooth movement were observed. Histologically, the fibers of periodontal ligament were stretched in the direction of the extrusion, Vascular hairpin loop formations were observed within the fibers of periodontal ligament. Bone apposition was not observed on the surface of alveolar bone. 3) At 14 days post-extrusion, a much more extensive and developed hairpin loop pattern occurred. Furthermore, new bone apposition was seen on the alveolar bone beneath under the hairpin loops. The periodontal ligament space was retained in the same width, even after bony apposition. 4) At 21 days post-extrusion, the tooth side microvascular network showed abundant low hairpin loops which anastomosed each other, and new spinous bony apposition was observed right below the periodontal vascular network. 5) At 30 days post-extrusion, the periodontal vascular network showed a almost normal appearance, with the rearrangement of vascular network. The surface of the spinous bony apposition became flat. The appositional bone had a lower degree of calcification than the alveolar bone in control group. 6) At 60 days post-extrusion, the periodontal vascular network completed the rearrangement of vasculature.

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牙挤压对牙周血管网、牙周纤维和牙槽骨的影响。
在对牙齿施加正畸力的过程中,牙齿周围组织发生骨吸收和排列的变化,从而导致牙齿移动。本研究的目的是利用扫描电子显微镜研究牙槽骨变化与牙周血管网络的相互关系。对成年犬下颌骨第2和第3前臼齿施加挤压正畸力。加载过程完成后,向下肺泡动脉注射低粘度MMA树脂(Mercox)。得到了以下结果:1)挤压后3 d,沿牙的运动方向可见各种类型的维管网,呈环状。2)挤压后第7天,观察到沿牙齿运动方向形成各种类型的发夹环状血管网。组织学上,牙周韧带纤维沿挤压方向拉伸,牙周韧带纤维内可见血管发夹环的形成。牙槽骨表面未见骨附着。3)挤压后第14天,出现了更为广泛和发达的发夹环。此外,在发夹环下的牙槽骨上可见新的骨对位。牙周韧带间隙保持在相同的宽度,即使骨对置。4)挤压后21 d,牙侧微血管网出现大量相互吻合的低发夹环,牙周血管网正下方出现新的棘骨增生。5)挤压后30 d牙周血管网基本恢复正常,血管网重新排列。棘骨突起的表面变平。对照组牙槽骨的钙化程度低于牙槽骨。6)挤压后60 d,牙周血管网完成了血管系统的重排。
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