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使用骨锚定系统压低犬磨牙后牙髓的形态学和血流动力学分析

Morphologic and hemodynamic analysis of dental pulp in dogs after molar intrusion with the skeletal anchorage system.

作者信息

Konno Yuichi, Daimaruya Takayoshi, Iikubo Masahiro, Kanzaki Reiko, Takahashi Ichiro, Sugawara Junji, Sasano Takashi

机构信息

Division of Orthodontics and Dentofacial Orthopedics, Department of Oral Health and Development Sciences, Graduate School of Dentistry, Tohoku University, Sendai, Japan.

出版信息

Am J Orthod Dentofacial Orthop. 2007 Aug;132(2):199-207. doi: 10.1016/j.ajodo.2005.07.029.

Abstract

INTRODUCTION

We have successfully treated skeletal open bite by intruding posterior teeth with the skeletal anchorage system. Our aim in this study was to morphologically and hemodynamically evaluate the changes in pulp tissues when molars are radically intruded.

METHODS

The mandibular fourth premolars of 9 adult beagle dogs were divided into 3 groups: a sham operated group (n = 6, 3 dogs), 4-month intrusion group (n = 6, 3 dogs), and a further 4-month retention group (n = 6, 3 dogs). We evaluated the morphological changes of the pulp and dentin-the amount of vacuolar degeneration in the odontoblast layer, the predentin width and nervous continuity in the pulp tissue, and the pulpal blood-flow response evoked by electrical stimulation in the dental pulp.

RESULTS

Extreme molar intrusion with the skeletal anchorage system caused slight degenerative changes in the pulp tissue, followed by recovery after the orthodontic force was released. Circulatory system and nervous functions were basically maintained during the intrusion, although a certain level of downregulation was observed. These morphologic and functional regressive changes in the pulp tissue after molar intrusion improved during the retention period.

CONCLUSIONS

Histologic changes and changes in pulpal blood flow and function are reversible, even during radical intrusion of molars.

摘要

引言

我们已通过使用骨骼锚固系统压低后牙成功治疗了骨性开牙合。本研究的目的是从形态学和血液动力学方面评估磨牙被大幅度压低时牙髓组织的变化。

方法

将9只成年比格犬的下颌第四前磨牙分为3组:假手术组(n = 6,3只犬)、4个月压低组(n = 6,3只犬)和再4个月保持组(n = 6,3只犬)。我们评估了牙髓和牙本质的形态学变化——成牙本质细胞层的空泡变性量、前期牙本质宽度以及牙髓组织中的神经连续性,以及牙髓电刺激诱发的牙髓血流反应。

结果

使用骨骼锚固系统大幅度压低磨牙会导致牙髓组织出现轻微退行性变化,在正畸力释放后会恢复。压低过程中循环系统和神经功能基本维持,尽管观察到一定程度的下调。磨牙压低后牙髓组织的这些形态学和功能退行性变化在保持期有所改善。

结论

即使在磨牙大幅度压低期间,组织学变化以及牙髓血流和功能的变化也是可逆的。

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