Choo HyeRan, Ahn HyoWon
Department of Surgery, Division of Plastic and Reconstructive Surgery, Neonatal and Pediatric Craniofacial Airway Orthodontics, Stanford University School of Medicine, Lucile Packard Children's Hospital Stanford, Palo Alto, CA, USA.
Department of Orthodontics, School of Dentistry, Kyung Hee University, Seoul, Korea.
Korean J Orthod. 2024 Jan 25;54(1):69-73. doi: 10.4041/kjod23.163. Epub 2024 Jan 8.
Since its inception in Europe in the 1950s, alveolar molding treatment for neonates with complete cleft lip and palate has undergone significant evolution in both design and application methodology, demonstrating effectiveness in normalizing the alveolar cleft and nasal shape. However, excessively wide alveolar clefts accompanied by disproportionately wide total maxillary arch pose significant challenges when utilizing conventional alveolar molding methods involving cyclical adding and grinding of acrylic on molding plates. The current report introduces a novel alveolar molding method named Biocreative Alveolar Molding Plate Treatment (BioAMP), which can normalize the maxillary alveolar cleft and arch shape without laborious conventional acrylic procedures. BioAMP sets the target arch form and provides unrestricted space for natural growth of the maxillary alveolar bones while systematically reducing the total maxillary arch width in precise increments. Two exemplary cases are presented as proof-of-concept, showcasing the clinical innovation of BioAMP.
自20世纪50年代在欧洲首次应用以来,针对完全性唇腭裂新生儿的牙槽突塑形治疗在设计和应用方法上都经历了重大演变,已证明在使牙槽裂和鼻形正常化方面具有有效性。然而,当使用涉及在塑形板上周期性添加和打磨丙烯酸的传统牙槽突塑形方法时,伴有上颌全弓比例失调的过宽牙槽裂会带来重大挑战。本报告介绍了一种名为生物创新牙槽突塑形板治疗(BioAMP)的新型牙槽突塑形方法,该方法无需繁琐的传统丙烯酸操作即可使上颌牙槽裂和牙弓形状正常化。BioAMP设定目标牙弓形态,并为上颌牙槽骨的自然生长提供无限制的空间,同时以精确的增量系统地减小上颌全弓宽度。本文展示了两个概念验证的示例性病例,以展示BioAMP的临床创新性。