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Accuracy of dental implant placement via dynamic navigation or the freehand method: A split‐mouth randomized controlled clinical trial

机译:通过动态导航或写意方法牙科植入物放置的准确性:分裂随机化对照临床试验

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Abstract Objectives The aim of this split‐mouth randomized controlled clinical trial was to compare the deviations of planned and placed implants placed by the assistance of a micron tracker‐based dynamic navigation device or freehand methods. Material and methods A thermoplastic fiducial marker was adapted on the anterior teeth, and cone‐beam computerized tomography was used for imaging. A minimum of one implant was planned for each side of the posterior maxilla, and the dynamic navigation device or freehand method was randomly used for surgical insertion. Deviations were measured by matching the planning data with a final CBCT image. Linear deviations (mm) between the planned and placed implants were the primary outcome. The results were analysed by generalized linear mixed models ( p ??.05). (NCT03471208). Results A total of 92 implants were placed to 32 volunteers, and 86 implants were included in the final analysis. For the linear deviations, mean of differences (Δ) was 0.72mm (Standard deviation ( SD ): 0.26); (95% Confidence interval (CI): 0.39–1.02) in the shoulder of the implants ( p ??.001) and 0.69mm ( SD : 0.36); (95% CI: 0.19–1.19) in the tip of the implants ( p ??.001). For the angular deviations, Δ was 5.33° ( SD : 1.63); (95% CI: 7.17–3.48); ( p ??.001). Conclusions The navigation technique can be used to transfer virtual implant planning to the patient's jaw with increased accuracy.
机译:摘要目的这一分裂口随机化对照临床试验的目的是比较通过微米跟踪器的动态导航装置或手法方法的辅助来比较计划和放置的植入物的偏差。材料和方法在前齿上适应热塑性基准标记,并且锥形电脑层析造影用于成像。为后颌骨的每一侧计划至少一个植入物,并且动态导航装置或手法方法随机用于手术插入。通过将规划数据与最终CBCT图像匹配来测量偏差。计划和放置植入物之间的线性偏差(mm)是主要结果。通过广义的线性混合模型分析结果(p?& 05)。 (NCT03471208)。结果总共92种植入物置于32个志愿者,并在最终分析中包含86种植入物。对于线性偏差,差异(δ)的平均值为0.72mm(标准偏差(SD):0.26); (植入物的肩部(p≤00)和0.69mm(SD:0.36)中的95%置信区间(CI):0.39-1.02); (95%CI:0.19-1.19)在植入物的尖端(P?& 001)。对于角度偏差,δ为5.33°(SD:1.63); (95%CI:7.17-3.48); (p?& 001)。结论导航技术可用于将虚拟植入物规划转移到患者的下巴,提高精度。

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