Luzzi Valeria, Fioravanti Miriam, Mitrano Lilia, Marasca Beatrice, Saccucci Matteo, Celli Mauro, Celli Luca, Vozza Iole, Ierardo Gaetano
Department of Oral and Maxillo-Facial Sciences, Sapienza University of Rome, U.O.C. Pediatric Dentistry Unit, 00161 Rome, Italy.
Department of Pediatrics, Sapienza University of Rome, 00161 Rome, Italy.
J Clin Med. 2024 Dec 26;14(1):55. doi: 10.3390/jcm14010055.
: The orthodontic management of pediatric patients with rare diseases, such as Ectodermal Dysplasia (ED) and Osteogenesis Imperfecta (OI), requires complex protocols due to dental anomalies in both the number and structure of teeth. These conditions necessitate a departure from traditional orthodontic approaches, as skeletal anchoring is often required because of these anomalies. A patient with ED, characterized by hypodontia and malformed teeth, presented with insufficient natural teeth for anchorage. This challenge was addressed using a Maxillary Skeletal Expander (MSE) with miniscrews. Cone-beam computed tomography (CBCT) and cephalometric radiographs were used to assess bone density, which guided the creation of a customized hybrid device. A second patient with OI, a condition causing fragile bones, had malformed teeth and a high risk of fractures. Skeletal anchoring with MSE and miniscrews was chosen to avoid damaging brittle bones. The fragile nature of the patient's bones required careful planning and close monitoring throughout the treatment process. Both patients were treated at the UOC of Pediatric Dentistry, Sapienza University of Rome, using MSE with miniscrews. Pre- and post-treatment imaging (CBCT and cephalometric radiographs) were used to evaluate bone quality and monitor progress. Skeletal anchoring successfully addressed the unique challenges in both cases, achieving outcomes comparable to those in unaffected patients. : despite limited bone volume, MSE successfully achieved maxillary arch expansion and improved occlusion. Post-treatment radiographs showed successful maxillary expansion and alignment without complications. This case series highlighted the effectiveness of MSE with miniscrews in treating patients with rare diseases. It advances orthodontic management by offering reliable solutions for complex cases involving dental anomalies and compromised bone structures.
对于患有罕见疾病的儿童患者,如外胚层发育不全(ED)和成骨不全(OI),由于牙齿数量和结构的牙列异常,正畸治疗需要复杂的方案。由于这些异常情况,这些病症需要背离传统的正畸方法,因为通常需要骨骼锚固。一名患有以牙齿发育不全和牙齿畸形为特征的ED患者,天然牙齿不足,无法提供锚固作用。使用带有微型螺钉的上颌骨扩弓器(MSE)解决了这一挑战。采用锥形束计算机断层扫描(CBCT)和头影测量X线片评估骨密度,这指导了定制混合装置的制作。另一名患有OI的患者,这种病症会导致骨骼脆弱,牙齿畸形且骨折风险高。选择使用MSE和微型螺钉进行骨骼锚固以避免损伤脆弱的骨骼。患者骨骼的脆弱性质要求在整个治疗过程中进行仔细规划和密切监测。两名患者均在罗马第一大学牙科学院儿童牙科门诊接受了使用带有微型螺钉的MSE治疗。治疗前和治疗后的影像学检查(CBCT和头影测量X线片)用于评估骨质并监测进展情况。骨骼锚固成功解决了两例患者的独特挑战,取得了与未受影响患者相当的治疗效果。尽管骨量有限,MSE仍成功实现了上颌牙弓扩展并改善了咬合关系。治疗后的X线片显示上颌成功扩展且排列整齐,无并发症。该病例系列突出了带有微型螺钉的MSE在治疗罕见疾病患者方面的有效性。它通过为涉及牙列异常和骨质结构受损的复杂病例提供可靠解决方案,推动了正畸治疗的发展。