Comparative Study on the Effects of Conventional and Skeletal Anchorage Supported Face Mask Applications on Dentofacial Structures Following the Alt-RAMEC Protocol
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 发起方
- 入组人数
- 40
- 试验地点
- 2
- 主要终点
- Change in SNA Angle
研究概览
简要总结
This study investigated two different methods of maxillary protraction in growing patients with skeletal Class III malocclusion characterized by maxillary deficiency. All participants underwent the Alternate Rapid Maxillary Expansion and Constriction (Alt-RAMEC) protocol to mobilize the circummaxillary sutures. Following this, maxillary protraction was performed using either skeletal anchorage with miniscrews placed in the zygomatic buttress region or a conventional tooth-borne rapid maxillary expansion appliance. Cephalometric radiographs were taken before treatment, after the Alt-RAMEC protocol, and after completion of face mask therapy to evaluate skeletal and dentoalveolar changes. The study aimed to determine whether skeletal anchorage provides greater maxillary advancement and reduced dental side effects compared to conventional tooth-borne anchorage.
详细描述
Skeletal Class III malocclusion with maxillary deficiency can negatively affect facial profile, occlusal function, and craniofacial growth. Early orthopedic intervention may help redirect growth and improve skeletal relationships. The Alternate Rapid Maxillary Expansion and Constriction (Alt-RAMEC) protocol has been introduced to enhance maxillary protraction by promoting greater disarticulation of the circummaxillary sutures.
In this prospective study, participants were randomly assigned to one of two treatment groups. Both groups used the same sequence of Alt-RAMEC activation over approximately seven weeks. In the skeletal anchorage group, miniscrews (2×11 mm) were placed in the zygomatic buttress region to directly apply orthopedic forces to the maxilla. In the conventional group, protraction forces were applied from hooks on a tooth-borne maxillary expansion appliance. In both groups, face mask therapy was performed with approximately 400 g of bilateral force applied at a 30-degree angle to the occlusal plane, worn 18-20 hours per day until a positive overjet was achieved.
Standardized lateral cephalometric radiographs were obtained at three time points: before treatment, after completion of the Alt-RAMEC protocol, and after completion of face mask therapy. Skeletal and dentoalveolar measurements were used to assess treatment effects. Primary outcomes focused on the forward movement of the maxilla, while secondary outcomes evaluated maxillary incisor inclination, molar position, mandibular rotations, and overjet correction.
This study aimed to clarify whether skeletal anchorage results in greater skeletal maxillary advancement and reduced dental compensation compared with conventional tooth-borne anchorage during facemask therapy in growing Class III patients.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Parallel
- 主要目的
- Treatment
- 盲法
- None
盲法说明
Treatment providers and participants could not be masked due to the nature of orthodontic appliances.
入排标准
- 年龄范围
- 7 Years 至 13 Years(Child)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Age between 7 and 13 years.
- •Skeletal Class III malocclusion with maxillary retrognathia (ANB < 0°).
- •Normal or increased vertical growth pattern (SN-GoGn < 39°).
- •Retrusive nasomaxillary region and/or upper lip.
- •Good oral hygiene.
- •No contraindication for orthodontic treatment.
- •Written informed consent obtained from parents/guardians.
排除标准
- •Systemic diseases or conditions affecting bone metabolism.
- •Craniofacial syndromes or congenital anomalies.
- •Functional Class III due to habitual occlusal interference.
- •Previous orthodontic or orthopedic treatment.
- •Severe mandibular prognathism without maxillary involvement.
结局指标
主要结局
Change in SNA Angle
时间窗: From baseline to 10 months
The SNA angle measures the sagittal position of the maxilla relative to the cranial base. An increase in this value indicates forward movement of the maxilla. The change in SNA (in degrees) will be compared within each group and between treatment groups.
次要结局
- Change in A-Point to Vertical Reference Distance (A-Tvert.)(From baseline to 10 months)
研究者
Murat Kaan Erdem
PhD, DDS
Ankara University
