Bernisha R P, Mishra Gyanda, Pradeep Raj G, Chitra Prasad
Department of Orthodontics and Dentofacial Orthopaedics, Army College of Dental Sciences, Secunderabad, Telangana, 500087, India.
J Oral Biol Craniofac Res. 2024 Jan-Feb;14(1):98-106. doi: 10.1016/j.jobcr.2024.01.003. Epub 2024 Jan 15.
This study investigated torque expression in maxillary incisors using two passive self-ligating bracket types (Damon Q and Pitts 21) placed at different heights using the Finite element method.
Two passive self-ligating brackets, Damon Q (Ormco, USA) and Pitts 21 (OC Orthodontics, USA) were 3D modeled using micro-computed tomography. Damon Q (0.022ˮ x 0.028″ slot size) and Pitts 21 (0.021ˮ x 0.021″ slot size) brackets were placed on a maxillary central incisor at predetermined vertical heights. Arch wires of size 0.019ˮ x 0.025″ stainless steel (Damon Q) and 0.020ˮ x 0.020" Titanium Molybdenum (Pitts 21) were placed in the bracket slots.
Pitts 21 brackets showed higher torquing moments at all bonding heights as compared to Damon Q brackets. The minimum torquing moment was 9.03Nmm at 5 mm for Damon Q and the maximum torquing moment was 14.92Nmm for Pitts 21 at a bracket bonding height of 8 mm. Total deformation for Pitts 21 at a height of 5 mm from the incisal edge was 0.61 × 10mm as compared to that of Damon Q which was 0.41 × 10mm. Lowest Von Mises stress values were at 27.07 MPa in Damon Q brackets at a bracket height of 5 mm from the incisal edge. Highest Von Mises stress values were 36.80 MPa for Pitts 21 brackets at a bracket height of 8 mm from the incisal edge.
Pitts 21 brackets exhibited superior torquing characteristics compared to Damon Q. Total deformation in Pitts 21 was higher than Damon Q at all tested bracket bonding heights.
本研究采用有限元方法,调查了使用两种不同高度放置的被动自锁托槽(Damon Q和Pitts 21)时上颌切牙的扭矩表达情况。
使用微型计算机断层扫描对两种被动自锁托槽——Damon Q(美国奥美科公司)和Pitts 21(美国OC正畸公司)进行三维建模。将Damon Q(槽沟尺寸0.022英寸×0.028英寸)和Pitts 21(槽沟尺寸0.021英寸×0.021英寸)托槽放置在上颌中切牙的预定垂直高度处。将尺寸为0.019英寸×0.025英寸的不锈钢弓丝(用于Damon Q)和0.020英寸×0.020英寸的钛钼弓丝(用于Pitts 21)放入托槽槽沟中。
与Damon Q托槽相比,Pitts 21托槽在所有粘结高度下均表现出更高的扭矩。Damon Q在粘结高度为5mm时的最小扭矩为9.03Nmm,Pitts 21在粘结高度为8mm时的最大扭矩为14.92Nmm。与Damon Q(0.41×10mm)相比,Pitts 21在距切缘5mm高度处的总变形为0.61×10mm。Damon Q托槽在距切缘5mm的托槽高度处的最低冯·米塞斯应力值为27.07MPa。Pitts 21托槽在距切缘8mm的托槽高度处的最高冯·米塞斯应力值为36.80MPa。
与Damon Q相比,Pitts 21托槽表现出更优异的扭矩特性。在所有测试的托槽粘结高度下,Pitts 21的总变形均高于Damon Q。