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Reproducibility of the PIROP ultrasonic biometer for gingival thickness measurements

机译:用于牙龈厚度测量的Pirop超声波生物计的再现性

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Objectives Gingival thickness (GT) has a great importance in periodontal flap design, gingival recession, and soft tissue esthetic. The aim of this study was to determine the reproducibility of PIROP ultrasonic biometer, which is specially designed for human GT measurements and to compare with the invasive transgingival probing technique. Materials and Methods GT was measured in 25 periodontally healthy volunteers both by PIROP and an endodontic spreader on the attached gingiva. Reproducibility was assessed by calculating standrad deviaton (SD) in five repeated measurements and Pearson correlation coefficient (r). Agreement between the two methods was evaluated based on Bland-Altman limits of agreement (LoA). Results No systemic bias in GT was observed between the two methods. The repeatability of the PIROP was better than the spreader method (SD = 0.14 mm vs 0.20 mm, P < 0.001). With five repetitions, the measurement error of the PIROP was halved. The correlation among the repeated observations were strong (r = 0.86) for the ultrasonic, weak (r = 0.34) for the invasive method. The LoA between the two methods was -0.58 to +0.75 mm. Conclusion PIROP is a reliable device for GT measurements, but it is recommended to repeat the measurement a few times to improve the precision in individual case. Clinical Significance PIROP ultrasonic biometer could be used in routine practice to reliably measure the GT in noninvasive way. After short learning curve the measurement can be done quickly and conveniently.
机译:目标牙龈厚度(GT)在牙周瓣设计,牙龈衰退和软组织美学中具有重要意义。本研究的目的是确定Pirop超声波生物仪的再现性,专门为人类GT测量设计,并与侵入式递送探测技术进行比较。材料和方法GT在25次牙周健康的志愿者中测量,潜在的Pirop和附着的牙龈上的牙髓伴侣。通过在五次重复测量和Pearson相关系数(R)中计算突出偏向(SD)来评估再现性。根据Bland-Altman的协议(LOA)评估两种方法之间的协议。结果两种方法之间观察到GT的全身偏差。 PIROP的可重复性优于吊具方法(SD = 0.14mm Vs 0.20 mm,P <0.001)。凭借五次重复,PIROP的测量误差减半。对于侵入性方法,重复观察结果之间的相关性强(R = 0.86),弱(r = 0.34)。两种方法之间的LOA为-0.58至+0.75毫米。结论PIROP是一种可靠的GT测量装置,但建议重复测量几次以改善单个情况的精度。临床意义Pirop超声波生物速度可用于常规实践中,以可靠地测量非侵入性方式的GT。在短时间学习曲线之后,测量可以快速方便地完成。

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