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首页> 外文期刊>BMC Oral Health >Technical note on introducing a digital workflow for newborns with craniofacial anomalies based on intraoral scans - part I: 3D printed and milled palatal stimulation plate for trisomy 21
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Technical note on introducing a digital workflow for newborns with craniofacial anomalies based on intraoral scans - part I: 3D printed and milled palatal stimulation plate for trisomy 21

机译:基于口腔扫描的颅面异常引入新生儿数字工作流程的技术说明 - 第I部分:三术2D的印刷和研磨腭刺激板

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Advanced digital workflows in orthodontics and dentistry often require a combination of different software solutions to create patient appliances, which may be a complex and time-consuming process. The main objective of this technical note is to discuss treatment of craniofacial anomalies using digital technologies. We present a fully digital, linear workflow for manufacturing palatal plates for infants with craniofacial anomalies based on intraoral scanning. Switching to intraoral scanning in infant care is advantageous as taking conventional impressions carries the risk of impression material aspiration and/or infections caused by material remaining in the oronasal cavity. The fully digital linear workflow presented in this technical note can be used to design and manufacture palatal plates for cleft palate patients as well as infants with functional disorders. We describe the workflow implemented in an infant with trisomy 21. The maxilla was registered using a digital scanner and a stimulation plate was created using dental CAD software and an individual impression tray module on a virtual model. Plates were manufactured using both additive and subtractive methods. Methacrylate based light curing resin and Poly-Ether-Ether-Ketone were the materials used. The palatal area was successfully scanned to create a virtual model. The plates fitted well onto the palatal area. Manual post-processing was necessary to optimize a functional ridge along the vestibular fold and remove support structures from the additively manufactured plate as well as the milled plate produced from a blank. The additively manufactured plate fitted better than the milled one. Implementing a fully digital linear workflow into clinical routine for treatment of neonates and infants with craniofacial disorders is feasible. The software solution presented here is suitable for this purpose and does not require additional software for the design. This is the key advantage of this workflow, which makes digital treatment accessible to all clinicians who want to deal with digital technology. Whether additive or subtractive manufacturing is preferred depends on the appliance material of choice and influences the fit of the appliance.
机译:正畸和牙科的高级数字工作流程通常需要不同的软件解决方案组合来创建患者设备,这可能是一种复杂且耗时的过程。本技术说明的主要目标是讨论使用数字技术讨论颅面异常的治疗。我们为基于口内扫描的颅面异常制造婴儿的腭平板提供了全数字的线性工作流程。在婴儿护理中切换到口腔扫描是有利的,因为服用常规印象携带由留在口腔中剩余的材料引起的印模吸入和/或感染的风险。本技术说明中提供的全数字线性工作流可用于为腭裂患者以及具有功能性疾病的婴儿设计和制造腭平板。我们描述了在具有三兆粒21中实现的工作流程。使用数字扫描仪登记麦克麻,并使用牙科CAD软件和虚拟模型上的单个印模托盘模块创建刺激板。使用添加剂和减去方法制造板。基于甲基丙烯酸酯的光固化树脂和聚醚 - 醚 - 酮是所用的材料。腭区域已成功扫描以创建虚拟模型。板材井井有条。手动后处理是必要的,以优化沿前庭折叠的功能脊,并从加坯制造的板上除去支撑结构,以及由坯料制成的铣削板。加薄的制造板比磨碎的板更好。实施完全数字线性工作流入临床常规,以治疗新生儿和患有颅面疾病的婴儿是可行的。此处提供的软件解决方案适用于此目的,不需要额外的设计软件。这是该工作流程的关键优势,这使得所有想要处理数字技术的临床医生都可以获得数字处理。是否优选添加剂或减排制造取决于所选择的器具材料并影响器具的拟合。

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