Cavender Michael S, Waters Christopher
Department of Endodontics, School of Dentistry, West Virginia University, 1080A Health Sciences Center North, Morgantown, WV 26506, USA.
Department of Dental Research, School of Dentistry, West Virginia University, 106a Health Sciences Addition, PO Box 9448, Morgantown, WV 26506, USA.
Int J Dent. 2023 Aug 17;2023:7195512. doi: 10.1155/2023/7195512. eCollection 2023.
There are many reasons to maintain apical patency during routine endodontic treatment. Thousands of canals are treated utilizing a patency file every year all around the world. The effect patency has on the apical anatomy of the root has been controversial for generations.
This ex vivo descriptive study was created to show the effect patency files actually have on the apical root canal anatomy using visually detailed SEM images supported by dental radiographs.
Three extracted maxillary anterior teeth that represent the multitude of canals in vivo were instrumented utilizing patency files. Two of the three maxillary anterior teeth were instrumented with hand files, the other maxillary anterior tooth with a .06 taper rotary file. The teeth were then scanned with an electron microscope to view the effect that the instruments had on the apical canal anatomy. A fourth tooth, a maxillary second molar, was shaped with an .06 taper rotary file and cone fitted. This tooth was radiographed with a gutta percha cone fitted to reveal the position of the narrowest constriction after patency was achieved.
The patency files, both hand files and rotary, were shown not to adversely affect the apical canal anatomy. Additionally, the SEM's revealed a precise demarcation of cementum to dentin which was at the root surface after patency was achieved.
The patent use of greater tapered rotary files provides a clear demarcation of the CDJ which allows a precise acquisition of the narrowest constriction of the canal with the use of an electronic apex locator for establishing the ideal working length and precision placement of a gutta percha cone.
在常规牙髓治疗过程中,保持根尖通畅有诸多原因。全世界每年都有成千上万的根管使用通畅锉进行治疗。数代人以来,通畅对牙根根尖解剖结构的影响一直存在争议。
本体外描述性研究旨在利用牙科X光片辅助的视觉上详细的扫描电子显微镜(SEM)图像,展示通畅锉对根尖根管解剖结构的实际影响。
选取三颗拔除的上颌前牙,代表体内多种根管情况,使用通畅锉进行预备。三颗上颌前牙中的两颗用手动锉进行预备,另一颗用0.06锥度的旋转锉进行预备。然后用电子显微镜扫描这些牙齿,以观察器械对根尖根管解剖结构的影响。第四颗牙,即上颌第二磨牙,用0.06锥度的旋转锉进行塑形并试尖。在达到通畅后,用适配牙胶尖对这颗牙进行X光拍摄,以显示最狭窄处的位置。
通畅锉,包括手动锉和旋转锉,均未对根尖根管解剖结构产生不利影响。此外,扫描电子显微镜显示,在达到通畅后,牙骨质与牙本质在牙根表面有精确的分界。
使用更大锥度旋转锉进行通畅操作可清晰界定牙骨质牙本质界(CDJ),从而在使用电子根尖定位仪确定理想工作长度并精确放置牙胶尖时,能精确获取根管的最狭窄处。