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Design characteristics primary stability and risk of fracture of orthodontic mini-implants: Pilot scan electron microscope and mechanical studies

机译:正畸微型植入物的设计特征初步稳定性和骨折风险:中试扫描电子显微镜和力学研究

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摘要

Objectives: Orthodontic mini-implants (OMIs) are increasingly used in orthodontics but can fail for various reasons. This study investigates the effects of OMI design characteristics on the mechanical properties in artificial bone. Material and Methods: Twelve self-drilling OMIs (2 small, 6 medium, 4 large) from 8 manufacturers were tested for their primary stability in simulated medium-high cancellous bone and the risk to fracture in high-density methacrylate blocks. For the assessments of the maximum insertion torque (IT) and torsional fracture (TF) 5 of each OMI were used and for the pull-out strength (POS) 10. The OMIs were inserted with a torque screwdriver (12 sec/360°) until the bottom at 8 mm depth was reached. OMI designs were analyzed with a scan electron microscope (SEM). Results: SEM images revealed a great variation in product refinement. In the whole sample, a cylindrical OMI shape was associated with higher POS (p<0.001) but lower IT (p=0.002) values. The outer and inner OMI diameters were design characteristics well correlated with POS, IT and TF values (ranging from 0.601 to 0.961). Greater thread depth was related to greater POS values (r= 0.628), although OMIs with similar POS values may have different IT values. Thread depth and pitch had some impact on POS. TF depended mainly on the OMI inner (r= 0.961) and outer diameters (r=0.892). A thread depth to outer diameter ratio close to 40% increased TF risk. Conclusions: Although at the same insertion depth the OMI outer and inner diameters are the most important factors for primary stability, other OMI design characteristics (cylindrical vs. conical, thread design) may significantly affect primary stability and torsional fracture. This needs to be considered when selecting the appropriate OMI for the desired orthodontic procedures. > Key words:Orthodontic mini-implants, primary stability, insertion torque, pullout strength, torsional fracture.
机译:目标:正畸微型植入物(OMI)越来越多地用于正畸,但由于各种原因而可能失败。这项研究调查了OMI设计特征对人造骨力学性能的影响。材料和方法:测试了来自8个制造商的12个自钻OMI(2个小,6个中,4个大)在模拟中-高松质骨中的主要稳定性以及在高密度甲基丙烯酸酯嵌段中破裂的风险。为了评估每个OMI的最大插入扭矩(IT)和扭转断裂(TF),使用5,并评估其拔出强度(POS)10。使用扭矩起子(12 sec / 360°)插入OMI。直到到达8毫米深度的底部。 OMI设计通过扫描电子显微镜(SEM)进行分析。结果:SEM图像显示出产品的细微变化。在整个样本中,圆柱OMI形状与较高的POS(p <0.001)但较低的IT(p = 0.002)值相关。 OMI的内部和外部直径是与POS,IT和TF值(从0.601到0.961)相关的设计特征。尽管具有相似POS值的OMI可能具有不同的IT值,但更大的线程深度与更大的POS值有关(r = 0.628)。螺纹深度和螺距对POS有一定影响。 TF主要取决于OMI的内径(r = 0.961)和外径(r = 0.892)。螺纹深度与外径之比接近40%会增加TF风险。结论:尽管在相同的插入深度下,OMI的外径和内径是保持主稳定性的最重要因素,但其他OMI设计特征(圆柱与圆锥,螺纹设计)可能会显着影响主稳定性和扭转断裂。在为所需的正畸程序选择合适的OMI时需要考虑这一点。 >关键词:正畸微型植入物,初步稳定性,插入扭矩,拔出强度,扭转断裂。

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