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无线共振频率分析设备探测到的与种植体稳定性相关因素的影响。

Influence of factors related to implant stability detected by wireless resonance frequency analysis device.

机构信息

Department of Oral and Maxillofacial Surgery, Division of Cervico-Gnathostmatology, Programs for Applied Biomedicine, Graduate School of Biomedical Sciences, Hiroshima University, Hiroshima, Japan.

出版信息

J Oral Rehabil. 2010 Feb;37(2):131-7. doi: 10.1111/j.1365-2842.2009.02032.x. Epub 2009 Nov 30.

Abstract

Resonance frequency analysis (RFA) was introduced as a method for measuring implant stability more than a decade ago. Implant stability quotient (ISQ) values obtained using a recently introduced wireless RFA device have made it possible to evaluate stability in a non-invasive technique; however, there are few studies of the factors that affect ISQ values determined using this device. The aim of the present study was to evaluate the association between ISQ values determined by wireless RFA and various factors related to dental implant stability using a pig cortical bone model. Dental implants (Replace) Select Tapered implants) with a length of 10 mm were placed into pig cortical bone samples, then, ISQ values were determined using wireless RFA under various conditions (probe orientation, diameter of implant, insertion torque and peri-implant bone loss). The results of this study showed that ISQ values were not affected by the direction of the probe from parallel to perpendicular to the long axis of the pig bone or to the smart peg. In addition, the diameter of the implant did not have a significant effect on the measured ISQ values. Statistically significant correlations were found between insertion torque and ISQ values (Spearman's test, P < 0.05), and lower ISQ values were observed for deeper peri-implant vertical defects (Mann-Whitney U-test, P < 0.05). A wireless RFA device appears to be useful for measuring implant stability within the limits of the present in vitro study.

摘要

共振频率分析(RFA)作为一种测量种植体稳定性的方法,在十多年前就已经出现。最近引入的无线 RFA 设备所获得的种植体稳定性指数(ISQ)值使得可以采用非侵入性技术来评估稳定性;然而,关于影响该设备确定的 ISQ 值的因素的研究很少。本研究的目的是使用猪皮质骨模型评估无线 RFA 确定的 ISQ 值与与种植体稳定性相关的各种因素之间的关系。将长度为 10mm 的牙科植入物(Replace 选择锥形植入物)放置到猪皮质骨样本中,然后在各种条件下(探头方向、植入物直径、插入扭矩和种植体周围骨损失)使用无线 RFA 确定 ISQ 值。本研究的结果表明,探头方向从平行于猪骨的长轴到垂直于长轴或智能桩的方向不会影响 ISQ 值。此外,植入物的直径对测量的 ISQ 值没有显著影响。插入扭矩与 ISQ 值之间存在显著的相关性(Spearman 检验,P<0.05),并且在较深的种植体周围垂直缺损时观察到较低的 ISQ 值(Mann-Whitney U 检验,P<0.05)。在本体外研究的范围内,无线 RFA 设备似乎可用于测量种植体稳定性。

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