Vignery A, Baron R
Anat Rec. 1980 Feb;196(2):191-200. doi: 10.1002/ar.1091960210.
Alveolar bone normally undergoes remodeling on one side of the socket and modeling on the opposite side as the tooth migrates at a rate of 6.7 micrometer per day. Periodontal ligament width, however, remains constant. Because of this very high turnover rate, this bone is a good model to study bone modeling and remodeling activities. This study was undertaken in order to measure the different cellular events occurring during tooth migration along the alveolar bone of the rat. The histomorphometric measurements performed on this model permitted us to calculate the duration of each phase of the remodeling cycle, i.e., resorption lasts about 1.5 days and reversal about 3.5 days. Since the duration of the forming phase is about 1 day (Guyomard and Baron, '74), the total duration of each remodeling cycle is about 6 days. This time is very short compared to 60--120 days in adult human trabecular bone. Additionally, in this model each osteoclast resorbs 2--4 times its own volume of bone per day. Based on this knowledge, it will be possible to measure accurately the effects of experimental conditions on bone cells and bone remodeling in this rat alveolar bone model.
随着牙齿以每天6.7微米的速度迁移,牙槽骨通常在牙槽窝的一侧进行重塑,而在另一侧进行塑形。然而,牙周膜宽度保持恒定。由于这种极高的更新率,这种骨是研究骨塑形和重塑活动的良好模型。本研究旨在测量大鼠牙齿沿牙槽骨迁移过程中发生的不同细胞事件。对该模型进行的组织形态计量学测量使我们能够计算重塑周期各阶段的持续时间,即吸收持续约1.5天,逆转持续约3.5天。由于形成阶段的持续时间约为1天(Guyomard和Baron,1974年),每个重塑周期的总持续时间约为6天。与成人松质骨的60 - 120天相比,这个时间非常短。此外,在这个模型中,每个破骨细胞每天吸收的骨量是其自身体积的2 - 4倍。基于这些知识,在这个大鼠牙槽骨模型中准确测量实验条件对骨细胞和骨重塑影响将成为可能。