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牙科学生牙髓病学模拟模型的开发与评估

Development and Evaluation of an Endodontic Simulation Model for Dental Students.

作者信息

Wolgin Michael, Wiedemann Paul, Frank Wilhelm, Wrbas Karl-Thomas, Kielbassa Andrej M

机构信息

Dr. Wolgin is Assistant Professor, Centre for Operative Dentistry, Periodontology, and Endodontology, University of Dental Medicine and Oral Health, Danube Private University, Krems, Austria; Dr. Wiedemann is a postdoctoral student, Centre for Operative Dentistry, Periodontology, and Endodontology, University of Dental Medicine and Oral Health, Danube Private University, Krems, Austria; Dr. Frank is Professor, Centre for Preclinical Education, Department of Biostatistics, University of Dental Medicine and Oral Health, Danube Private University, Krems, Austria; Dr. Wrbas is Professor, Centre for Operative Dentistry, Periodontology, and Endodontology, University of Dental Medicine and Oral Health, Danube Private University, Krems, Austria, and Professor, Department of Operative Dentistry and Periodontology, Center for Dental Medicine, Medical Center University of Freiburg, Albert-Ludwigs-University, Freiburg, Germany; and Dr. Kielbassa is Dean, Professor, and Head, Centre for Operative Dentistry, Periodontology, and Endodontology, University of Dental Medicine and Oral Health, Danube Private University, Krems, Austria.

出版信息

J Dent Educ. 2015 Nov;79(11):1363-72.

Abstract

The aims of this study were to develop an endodontic simulation model able to implement the electronic method of working length determination (electronic apex locators, EALs) in a dental school, to evaluate the practicality of this tool for dental students, and to compare the accuracy of working length measurements achieved by the EAL and the radiographic method. A new simulation model was constructed by embedding extracted human teeth in a self-cured resin, along with a conductive medium. After radiographic and electronic working length determinations, root canal instrumentation was performed by students at a dental school in Austria according to the working lengths obtained from the EAL. Subsequently, root apices (n=44) were longitudinally sectioned using a diamond coated bur. Measurements of the distance between the anatomical root apex (ARA) and the apical constriction (AC) as well as between ARA and the ascertained apical point of endodontic instrumentation were performed using digital photography and a 3D computer-assisted design software. The distance between ARA and the radiologic (ARA-R) or electrometric (ARA-EL) readings of the apical point of endodontic instrumentation was compared with the actual distance ARA-AC. The accuracy of both methods was determined. The difference between the actual distance ARA-AC and the targeted radiological distance was statistically significant (p=0.0001), as was the measured distance between ARA-R and ARA-EL (p=0.016). The electronic method seems to be more precisely referring to the AC (R(2)=0.0198) than the radiographic method (R(2)=0.0019). These results suggest that the endodontic simulation model described in this study can be successfully used in preclinical dental education.

摘要

本研究的目的是开发一种牙髓病学模拟模型,该模型能够在牙科学校实施工作长度测定的电子方法(电子根尖定位仪,EAL),评估该工具对牙科学生的实用性,并比较EAL和放射照相法在工作长度测量方面的准确性。通过将拔除的人类牙齿与导电介质一起嵌入自凝树脂中,构建了一种新的模拟模型。在进行放射照相和电子工作长度测定后,奥地利一所牙科学校的学生根据从EAL获得的工作长度进行根管预备。随后,使用金刚石涂层车针将根尖(n = 44)纵向切开。使用数码摄影和三维计算机辅助设计软件测量解剖根尖(ARA)与根尖狭窄(AC)之间以及ARA与确定的根管预备根尖点之间的距离。将ARA与根管预备根尖点的放射学(ARA-R)或电测(ARA-EL)读数之间的距离与实际距离ARA-AC进行比较。确定了两种方法的准确性。实际距离ARA-AC与目标放射学距离之间的差异具有统计学意义(p = 0.0001),ARA-R与ARA-EL之间的测量距离差异也具有统计学意义(p = 0.016)。电子方法似乎比放射照相方法(R2 = 0.0019)更精确地指向AC(R2 = 0.0198)。这些结果表明,本研究中描述的牙髓病学模拟模型可成功用于牙科临床前教育。

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