Tuzcu Ecenur, Kurnaz Safa
Department of Endodontics, Faculty of Dentistry, Kutahya Health Sciences University, Kutahya, Türkiye.
Eur J Oral Sci. 2025 Aug;133(4):e70020. doi: 10.1111/eos.70020. Epub 2025 Jun 4.
This study aimed to evaluate the precision and reliability of the integrated electronic apex locator in determining various root perforation diameters and to examine the impact of instrumentation kinematics on perforation site detection. One hundred extracted single-root mandibular premolars were artificially perforated at five distinct diameters (0.25-1.25 mm), located 5 mm above the root apex. The teeth were then divided into 10 groups based on perforation size and kinematic subgroup (rotary, reciprocation; n = 10/subgroup). Actual distances to the perforation site (actual length) were measured under a dental operating microscope. Electronic distances (electronic length) were determined using an endodontic motor with an integrated electronic apex locator using rotary or reciprocating instrumentation kinematics during root canal treatment. To quantify the actual length to the electronic length discrepancies, individual tooth measurements were compared. The integrated electronic apex locator failed to identify perforations ≤ 0.50 mm in diameter. Electronic length measurements were similarly accurate for 1.00 and 1.25 mm perforations but more precise than for 0.75 mm perforations. Instrumentation kinematics did not affect the electronic length measurement accuracy. Integrated electronic apex locators failed to detect small perforations during root canal treatment. The perforation diameter influenced the detection accuracy of integrated electronic apex locators, whereas kinematics had no effect.
本研究旨在评估集成电子根尖定位仪在确定不同直径的根管穿孔时的精度和可靠性,并研究器械操作运动学对穿孔部位检测的影响。选取100颗拔除的单根下颌前磨牙,在根尖上方5mm处人为制备5种不同直径(0.25 - 1.25mm)的穿孔。然后根据穿孔大小和运动学亚组(旋转、往复运动;每组n = 10)将牙齿分为10组。在牙科手术显微镜下测量到穿孔部位的实际距离(实际长度)。在根管治疗过程中,使用带有集成电子根尖定位仪的牙髓动力系统,采用旋转或往复运动器械操作方式确定电子距离(电子长度)。为了量化实际长度与电子长度的差异,对每颗牙齿进行测量并比较。集成电子根尖定位仪无法识别直径≤0.50mm的穿孔。对于直径为1.00和1.25mm的穿孔,电子长度测量同样准确,但比0.75mm穿孔的测量更精确。器械操作运动学不影响电子长度测量的准确性。在根管治疗过程中,集成电子根尖定位仪无法检测到小穿孔。穿孔直径影响集成电子根尖定位仪的检测准确性,而运动学则无影响。