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下颌后牙区虚拟即刻种植术中舌侧骨板穿孔风险:一项计算机模拟研究。

Risk of lingual plate perforation for virtual immediate implant placement in the posterior mandible: A computer simulation study.

作者信息

Huang Ren-Yeong, Cochran David L, Cheng Wan-Chien, Lin Ming-Hung, Fan Wen-Hui, Sung Cheng-En, Mau Lian-Ping, Huang Po-Hsien, Shieh Yi-Shing

出版信息

J Am Dent Assoc. 2015 Oct;146(10):735-42. doi: 10.1016/j.adaj.2015.04.027.

Abstract

BACKGROUND

This study sought to determine which factors are correlated to a higher risk of lingual plate perforation (LPP) when placing a virtual implant in the area of the anticipated extraction site of the posterior mandible.

METHODS

Computed tomographic images of 300 patients (1,279 teeth) were analyzed in regard to the shape of the mandible (convergent, parallel, or undercut type), dimensional parameters of lingual concavity (angle, height, depth) and its relation to the inferior alveolar canal (zones A, B, C), distance from root apex to inferior alveolar canal, and probability of LPP. The odds ratio of variables was determined by multiple logistic regression modeling.

RESULTS

The overall probability of LPPs on virtual implant placement was 3.1%. This perforation was most commonly observed at the second molar and with a U-type ridge. After adjusting cofounders, a concave point located in zone A is 17.34 times more likely to have a LPP than one in zone C. The probability of LPPs was reduced by 34% for every 1-millimeter increase in distance from root apex to inferior alveolar canal on virtual implant placement of posterior mandible region.

CONCLUSIONS

Three-dimensional cone-beam computed tomographic imaging is essential for planning immediate implant placement in the anticipated extraction sites of the posterior mandible region as proved by anatomic findings that can only be understood from preoperative imaging analysis.

PRACTICAL IMPLICATIONS

Presurgical cross-sectional images can be analyzed to identify anatomic features relative to the lingual concavities in the posterior mandible region, which can help to avoid unpleasant complications, specifically when performing immediate implant procedures.

摘要

背景

本研究旨在确定在下颌后牙预期拔牙部位植入虚拟种植体时,哪些因素与舌侧骨板穿孔(LPP)的高风险相关。

方法

分析了300例患者(1279颗牙齿)的计算机断层扫描图像,内容包括下颌骨的形状(收敛型、平行型或倒凹型)、舌侧凹陷的尺寸参数(角度、高度、深度)及其与下牙槽神经管的关系(A区、B区、C区)、根尖至下牙槽神经管的距离以及LPP的概率。通过多因素逻辑回归模型确定变量的优势比。

结果

虚拟种植体植入时LPP的总体概率为3.1%。这种穿孔最常见于第二磨牙且发生在U型牙槽嵴。在调整混杂因素后,位于A区的凹陷点发生LPP的可能性比C区的凹陷点高17.34倍。在下颌后牙区虚拟种植体植入时,根尖至下牙槽神经管的距离每增加1毫米,LPP的概率降低34%。

结论

三维锥形束计算机断层扫描成像对于计划在下颌后牙预期拔牙部位即刻植入种植体至关重要,术前成像分析所揭示的解剖学发现证实了这一点,而这些发现只能通过术前成像分析来理解。

实际意义

术前横断面图像可用于分析下颌后牙区舌侧凹陷相关的解剖特征,这有助于避免不良并发症,尤其是在进行即刻种植手术时。

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