首页> 外文期刊>Journal of Structural Biology >Tooth movements are guided by specific contact areas between the tooth root and the jaw bone: A dynamic 3D microCT study of the rat molar
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Tooth movements are guided by specific contact areas between the tooth root and the jaw bone: A dynamic 3D microCT study of the rat molar

机译:牙齿的运动受牙根和颌骨之间特定的接触区域的引导:大鼠磨牙的动态3D microCT研究

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摘要

Teeth sustain high loads over a lifetime and yet intact tooth failure is rare. The different structures of the tooth, jaw bone and the intervening soft periodontal ligament enable the tooth to endure repeated loading during mastication. Although mechanical and functional properties of the different components are thoroughly investigated, the manner in which the whole tooth functions under load is still enigmatic. A custom-made loading system inside a microCT scanner was used to directly visualize the root movements in relation to the jaw bone as the rat molar tooth was loaded. At low loads no contact was observed between the root surface and the bone, whereas at higher loads three specific contact areas between the root surface and the jaw bone were observed. These contact areas restrict tooth movement in the buccal-lingual direction, but enable the tooth to rock in a "seesaw" like manner in the distal-mesial direction. The contact areas appear to play a role in determining tooth motion and in turn define the manner in which the whole tooth moves when loaded. These observations are important for understanding basic structure-function relations of the tooth-PDL-bone system, and have direct implications for better understanding pathological and therapeutic processes in orthodontics, periodontics and jaw bone regeneration
机译:牙齿在一生中承受着高负荷,但是完整的牙齿衰竭很少见。牙齿,颌骨和中间的软性牙周膜的不同结构使牙齿在咀嚼过程中能够承受反复的载荷。尽管已彻底研究了不同组件的机械和功能特性,但整个牙齿在负载下的运行方式仍然是个谜。使用microCT扫描仪内部的定制加载系统直接观察加载了大鼠磨牙的牙根相对于颌骨的运动。在低载荷下,未观察到根表面与骨骼之间的接触,而在高载荷下,观察到了根表面与颌骨之间的三个特定接触区域。这些接触区域限制了牙齿在颊舌方向上的运动,但是使牙齿能够像“跷跷板”一样在远端-内侧方向上摇摆。接触区域似乎在确定牙齿运动方面起着作用,并依次定义了整个牙齿在加载时的运动方式。这些观察对于理解牙齿-PDL-骨系统的基本结构-功能关系很重要,对更好地了解正畸,牙周病和颌骨再生的病理学和治疗过程具有直接意义。

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