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首页> 外文期刊>Biomedizinische Technik >RapidNAM: generative manufacturing approach of nasoalveolar molding devices for presurgical cleft lip and palate treatment
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RapidNAM: generative manufacturing approach of nasoalveolar molding devices for presurgical cleft lip and palate treatment

机译:RapidNAM:鼻槽成型设备的生产制造方法,用于手术前唇left裂治疗

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摘要

Nasoalveolar molding (NAM) is an accepted treatment strategy in presurgical cleft therapy. The major drawbacks of the treatment listed in the literature relate to the time of the treatment and the coordination of the required interdisciplinary team of therapists, parents, and patients. To overcome these limitations, we present the automated RapidNAM concept that facilitates the design and manufacturing process of NAM devices, and that allows the virtual modification and subsequent manufacture of the devices in advance, with a growth prediction factor adapted to the patient's natural growth. The RapidNAM concept involves (i) the prediction of three trajectories that envelope the fragmented alveolar segments with the goal to mimic a harmonic arch, (ii) the extrusion from the larger toward the smaller alveolar segment along the envelope curves toward the harmonic upper alveolar arch, and (iii) the generation of the NAM device with a ventilation hole, fixation pin, and fixation points for the nasal stents. A feasibility study for a vector-based approach was successfully conducted for unilateral and bilateral cleft lip and palate (CLP) patients. A comparison of the modified target models with the reference target models showed similar results. For further improvement, the number of landmarks used to modify the models was increased by a curve-based approach.
机译:鼻槽成形术(NAM)是术前裂隙治疗中公认的治疗策略。文献中列出的治疗的主要缺点涉及治疗时间以及所需的治疗师,父母和患者的跨学科团队的协调。为了克服这些限制,我们提出了自动RapidNAM概念,该概念有助于NAM设备的设计和制造过程,并允许预先进行虚拟修改和后续设备制造,并具有适合患者自然生长的生长预测因子。 RapidNAM概念涉及(i)预测包围碎裂的肺泡节段的三个轨迹,目的是模仿谐波拱形;(ii)从较大的到较小的肺泡节段沿着包络线向谐波上牙槽弓的挤压(iii)生成带有通气孔,固定销和鼻支架固定点的NAM设备。针对单侧和双侧唇left裂(CLP)患者成功进行了基于矢量的方法的可行性研究。修改后的目标模型与参考目标模型的比较显示了相似的结果。为了进一步改进,通过基于曲线的方法增加了用于修改模型的界标的数量。

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