首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Rapid orthodontic tooth movement into newly distracted bone after mandibular distraction osteogenesis in a canine model.
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Rapid orthodontic tooth movement into newly distracted bone after mandibular distraction osteogenesis in a canine model.

机译:在犬模型中,下颌牵张成骨后,正畸牙齿快速移动到新撑开的骨头中。

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Orthodontic tooth movement through recently distracted fibrous bone tissue has not been investigated previously. We hypothesized that a tooth can be moved into the fibrous new bone created by the distraction process at a rapid rate. Four mature beagle dogs were used in this study. An edentulous space was created in 2 weeks by using a bone-borne intraoral distraction device on each side of the mandibular body between the third and fourth premolars. Calibrated elastic threads with 50 g of orthodontic force were applied to move the fourth premolar into the edentulous space for 5 weeks. On one side, the tooth was moved simultaneously with distraction; and on the opposite side, it was initiated immediately after the cessation of distraction. The fourth premolars were moved 1.2 mm per week. The results indicated that the best time to initiate tooth movement was immediately after the end of distraction. With this approach, most of the periodontal support was preserved after orthodontic tooth movement. In contrast, moderate to severe alveolar bone loss was noted in the fourth premolars moved simultaneously with distraction. This is one of the first experimental studies to demonstrate successful rapid orthodontic tooth movement into an edentulous space newly created by distraction osteogenesis. Clinical implications of these results may be applied to relieve severe dental crowding and to correct sagittal or transverse dental arch discrepancies.
机译:牙齿正畸运动通过最近分散的纤维骨组织的运动尚未进行过研究。我们假设牙齿可以快速进入由分散过程产生的纤维状新骨中。在这项研究中使用了四只成熟的比格犬。在两周内,通过在第三和第四前磨牙之间的下颌体的每一侧使用骨载口腔内牵引装置,创造了一个无牙的空间。施加具有50 g正畸力的校准弹性线,将第四个前磨牙移入无牙隙5周。一侧,牙齿在分散的同时移动;相反,它在分心之后立即开始。每周移动第四颗前磨牙1.2毫米。结果表明,启动牙齿运动的最佳时间是在分散注意力后立即开始。通过这种方法,在牙齿正畸运动之后,大部分的牙周支持得以保留。相反,在分散注意力的同时移动的第四个磨牙中,注意到中度至重度的牙槽骨丢失。这是最早的实验研究之一,它证明了成功的正畸牙齿快速移动到由分散成骨作用新产生的无牙隙中。这些结果的临床意义可用于缓解严重的牙齿拥挤并纠正矢状或横向牙弓差异。

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