Park Hwan-Hyung, Jung Suk-Hwan, Yoon Juil, Jee Kwang Koo, Han Jun Hyun, Baek Seung-Hak
Department of Orthodontics, School of Dentistry, Seoul National University, Seoul, Korea.
Department of Mechanical System Engineering, Hansung University, Seoul, Korea.
Korean J Orthod. 2019 Jul;49(4):214-221. doi: 10.4041/kjod.2019.49.4.214. Epub 2019 Jul 22.
To investigate the effects of reversing the coiling direction of nickeltitanium closed-coil springs (NiTi-CCSs) on the force-deflection characteristics.
The samples consisted of two commercially available conventional NiTi-CCS groups and two reverse-wound NiTi-CCS groups (Ormco-Conventional vs. Ormco-Reverse; GAC-Conventional vs. GAC-Reverse; n = 20 per group). The reverse-wound NiTi-CCSs were directly made from the corresponding conventional NiTi-CCSs by reversing the coiling direction. Tensile tests were performed for each group in a temperature-controlled acrylic chamber (37 ± 1℃). After measuring the force level, the range of the deactivation force plateau (DFP) and the amount of mechanical hysteresis (MH), statistical analyses were performed.
The Ormco-Reverse group exhibited a significant shift of the DFP end point toward the origin point (2.3 to 0.6 mm), an increase in the force level (1.2 to 1.3 N) and amount of MH (1.0 to 1.5 N) compared to the Ormco-Conventional group (all < 0.001), which indicated that force could be constantly maintained until the end of the deactivation curve. In contrast, the GAC-Reverse group exhibited a significant shift of the DFP-end point away from the origin point (0.2 to 3.3 mm), a decrease in the force level (1.1 to 0.9 N) and amount of MH (0.6 to 0.4 N) compared to the GAC-Conventional group (all < 0.001), which may hinder the maintenance of force until the end of the deactivation curve.
The two commercially available NiTi-CCS groups exhibited different patterns of change in the force-deflection characteristics when the coiling direction was reversed.
研究改变镍钛闭合曲弹簧(NiTi-CCS)的旋绕方向对其力-挠度特性的影响。
样本包括两个市售常规NiTi-CCS组和两个反向缠绕NiTi-CCS组(奥美科常规组与奥美科反向组;GAC常规组与GAC反向组;每组n = 20)。反向缠绕的NiTi-CCS是通过将相应常规NiTi-CCS的旋绕方向反转直接制成的。在温度控制的丙烯酸腔室(37±1℃)中对每组进行拉伸试验。测量力水平、失活力平台(DFP)范围和机械滞后(MH)量后,进行统计分析。
与奥美科常规组相比,奥美科反向组的DFP终点显著向原点偏移(从2.3至0.6 mm),力水平增加(从1.2至1.3 N),MH量增加(从1.0至1.5 N)(均P<0.001),这表明在失活曲线结束前力可一直维持。相比之下,与GAC常规组相比,GAC反向组的DFP终点显著远离原点(从0.2至3.3 mm),力水平降低(从1.1至0.9 N),MH量降低(从0.6至0.4 N)(均P<0.001),这可能会阻碍在失活曲线结束前力的维持。
当旋绕方向反转时,两个市售NiTi-CCS组在力-挠度特性上表现出不同的变化模式。