Department of Pediatric Dentistry, Tufts University School of Dental Medicine, 1 Kneeland St., Boston, MA, 02111, USA.
Olin College of Engineering, 1000 Olin Way, Needham, MA, 02492, USA.
BMC Oral Health. 2022 Mar 2;22(1):49. doi: 10.1186/s12903-022-02087-4.
Pacifiers have been shown to affect maxillary growth related to the anatomic structure of the palate and forces placed upon it during sucking. This study compares and evaluates the mechanical behavior of pacifiers of different design and size (i.e., fit), identified by brand and size, positioned in age-specific palatal models with respect to both contact area and force when subjected to peristaltic tongue function and intraoral pressure related to non-nutritive sucking.
Nonlinear finite element analyses were used to simulate dynamic mechanical interaction between the pacifiers and palates. Time-varying, external pressure loads were applied which represent intraoral pressure arising from non-nutritive sucking and peristaltic behavior of the tongue. The silicone rubber pacifier bulb was represented using a hyperelastic material model.
Results from the finite element analyses include deformation, stress, strain, contact area, and contact force. Mechanical interaction was evaluated in terms of the spatial distribution of the contact area and force between the pacifier and the palate. The resulting palatal interaction profiles were quantitatively compared to assess how pacifier fit specifically affects the support provided to two areas of the palate, the palatal vault and the Tektal wall.
Pacifiers interact with the palate differently based on their fit (i.e., design and size) regardless of whether they are labeled conventional or orthodontic. Finite element analysis is an effective tool for evaluating how a pacifier's design affects functional mechanics and for providing guidance on biometric sizing.
奶嘴已被证明会影响与上颚解剖结构有关的上颌生长,并在吸吮时对上颚施加力。本研究比较和评估了不同设计和尺寸(即适配性)的奶嘴的机械性能,这些奶嘴通过品牌和尺寸来识别,并放置在上颚模型中,这些模型针对特定年龄段,考虑了吸吮时舌的蠕动功能和与非营养性吸吮相关的口腔内压力对接触面积和力的影响。
使用非线性有限元分析来模拟奶嘴和上颚之间的动态力学相互作用。施加随时间变化的外部压力负载,代表非营养性吸吮和舌蠕动行为引起的口腔内压力。硅橡胶奶嘴球使用超弹性材料模型表示。
有限元分析的结果包括变形、应力、应变、接触面积和接触力。通过奶嘴和上颚之间的接触面积和力的空间分布来评估机械相互作用。将得到的上颚相互作用轮廓进行定量比较,以评估奶嘴的适配性如何特别影响上颚的两个区域(穹顶和 Tektal 壁)的支撑。
无论奶嘴是否被标记为传统奶嘴或正畸奶嘴,其适配性(即设计和尺寸)都会导致奶嘴与上颚的相互作用不同。有限元分析是评估奶嘴设计如何影响功能力学并为生物计量尺寸提供指导的有效工具。