Pillai Ajith R, Gangadharan Anil, Kumar Satheesh, Shah Anwar
Department of Orthodontics and Dentofacial Orthopaedics, Azeezia College of Dental Sciences and Research, Kollam, Kerala, India.
J Pharm Bioallied Sci. 2014 Jul;6(Suppl 1):S150-5. doi: 10.4103/0975-7406.137429.
The purpose of this study is to evaluate the frictional resistance generated by conventional stainless steel, radiance ceramic bracket, self-ligating and composite brackets using a 0.019 × 0.025 stainless steel straight length wires in a 022 slot and to select brackets based on their frictional characteristic.
In order to conduct this study, four different types of bracket system were selected of the mclaughlin-bennet-trevesi (MBT) discipline. They are Group 1 - stainless steel, Group 2 - composite bracket Group 3 - (American Orthodontics) radiance ceramic bracket Group 4 - self-ligating bracket (SLB) (Empower). In this study, five maxillary brackets of an arch of each type were used. All brackets are 0.022 × 0.028 in preadjusted edgewise appliance which simulates the dental arch. Five brackets were bonded to a stainless steel bar of dimension 150 mm × 25 mm × 3 mm. The bracket-arch wire units were submitted to mechanical test with an Instron universal testing machine 3365. A testing apparatus or holding jig was designed to hold the bracket during the mechanical test. Each sample was pulled at a speed of 6 mm for 1 min. Descriptive statistical information including mean and standard deviation of maximum friction force was calculated for each bracket wire combination.
The SLB has the least friction among the four groups. The ceramic bracket showed the highest friction followed by stainless steel bracket, composite bracket, and SLB.
本研究旨在使用0.019×0.025英寸的不锈钢直丝在022槽中评估传统不锈钢托槽、光辉陶瓷托槽、自锁托槽和复合托槽产生的摩擦力,并根据其摩擦特性选择托槽。
为进行本研究,选择了麦克劳克林-贝内特-特雷维西(MBT)矫治体系的四种不同类型的托槽系统。它们分别是:第1组 - 不锈钢托槽;第2组 - 复合托槽;第3组 - (美国正畸公司)光辉陶瓷托槽;第4组 - 自锁托槽(Empower)。本研究中,每种类型的牙弓使用了五个上颌托槽。所有托槽均为预调直丝弓矫治器中的0.022×0.028英寸规格,模拟牙弓。将五个托槽粘结到尺寸为150 mm×25 mm×3 mm的不锈钢棒上。使用英斯特朗3365万能试验机对托槽-弓丝组件进行力学测试。设计了一种测试装置或固定夹具,在力学测试过程中固定托槽。每个样本以6 mm的速度拉伸1分钟。计算每种托槽-弓丝组合的最大摩擦力的描述性统计信息,包括均值和标准差。
自锁托槽在四组中摩擦力最小。陶瓷托槽摩擦力最大,其次是不锈钢托槽、复合托槽和自锁托槽。