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首页> 外文期刊>Clinical oral investigations >The use of high-resolution digital imaging technology for small diameter K-file length determination in endodontics.
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The use of high-resolution digital imaging technology for small diameter K-file length determination in endodontics.

机译:高分辨率数字成像技术在牙髓学中确定小直径K锉长度的用途。

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摘要

To assess the reliability of high resolution intra-oral photostimulable storage phosphor (PSP) and complementary metal-oxide semiconductor (CMOS) imaging systems for working length (WL) assessment of small K-files in narrow and curved root canals. Eleven narrow and curved canals from extracted molars were used as pre-test for sample-size calculation. Nineteen canals from four cadavers were used for endodontic length assessment in the final study. Small K-files (ISO size 6, 8, and 10) were introduced into the canals at prepared length. Digital intra-oral radiographs were obtained using high-resolution Vistascan PSP plates and Sigma M CMOS active pixel sensor with a DC X-ray tube at 70 kV, 7 mA, and 0.16 s. Both image series were assessed with and without use of a dedicated endodontic filter. Three observers measured WLs for comparison to the gold standards of a digital millimeter ruler. Multiple regression analysis of the dependent measurements revealed no significant influence of imaging sensor (PSP or CMOS, p = 0.34) and image processing (p = 0.97). For ISO file size, however, there was a significant difference (p = 0.08) at a level of 10%. Observers mostly underestimated lengths using PSP but overestimated them on CMOS. Almost all radiographic measurements (96-98%) were within 2-mm deviation, while 71% to 82% deviated within 1 mm. Dedicated filtering and sensor type did not influence the outcome of WL determination of small file sizes when using high-resolution imaging sensors. WL determination with ISO file 6 did show a significant difference compared to ISO 8 and 10 but mostly for deviations <1.5 mm.
机译:评估高分辨率口腔内光刺激性存储磷光体(PSP)和互补金属氧化物半导体(CMOS)成像系统的可靠性,以评估狭窄和弯曲的根管中小K型锉的工作长度(WL)。来自提取的磨牙的11条狭窄和弯曲的渠道被用作样本量计算的预测试。在最终研究中,使用了来自四个尸体的19条运河进行牙髓长度评估。将小的K型锉刀(ISO尺寸6、8和10)以预定的长度引入运河中。使用高分辨率的Vistascan PSP板和Sigma M CMOS有源像素传感器以及70 kV,7 mA和0.16 s的DC X射线管,可获得数字口内X光片。两种图像系列均在使用和不使用专用牙髓滤镜的情况下进行了评估。三名观察员测量了WL,以与数字毫米尺的黄金标准进行比较。相关测量的多元回归分析显示,成像传感器(PSP或CMOS,p = 0.34)和图像处理(p = 0.97)没有显着影响。但是,对于ISO文件大小,在10%的水平上存在显着差异(p = 0.08)。观察者大多低估了使用PSP的长度,但高估了CMOS上的长度。几乎所有射线照相测量值(96%至98%)均在2毫米范围内,而71%至82%的偏差在1毫米内。使用高分辨率成像传感器时,专用的过滤和传感器类型不会影响小文件大小的WL确定的结果。与ISO 8和10相比,使用ISO文件6进行的WL确定确实显示出显着差异,但是主要是针对<1.5 mm的偏差。

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