Monk Aurelia S, Larabee Landon, Bacon Daniel R, Woodard Andrew, Kimple Adam J, DeMason Christine E
Department of Otolaryngology-Head and Neck Surgery University of North Carolina Chapel Hill North Carolina USA.
Department of Surgery The Ohio State University College of Medicine Columbus Ohio USA.
OTO Open. 2025 Jan 5;9(1):e70066. doi: 10.1002/oto2.70066. eCollection 2025 Jan-Mar.
Simulators allow junior otolaryngology residents to practice the delicate procedure of pressure equalization tube (PET) insertion. However, most simulators lack the ability to mimic the differing anatomic complexities between patients, such as variable external auditory canal (EAC) size. We developed a novel low-cost, medium-fidelity 3-dimensional-printed PET simulator with different EAC sizes to better reflect procedure complexity. Additionally, a variety of materials were tested to mimic the elastic modulus of the tympanic membrane, with "Press'n Seal" cling film being chosen for its cost-effectiveness and tactile similarity. Ten otolaryngologists performed PET insertion on both EAC sizes followed by a survey to assess face and content validity. Results indicated both high face and content validity, with most participants agreeing the simulator provided a realistic experience and would be useful for training. While our study has a small sample size, our PET simulator adds a unique and valuable addition to PET training.
模拟器可让初级耳鼻喉科住院医师练习插入压力平衡管(PET)这一精细操作。然而,大多数模拟器无法模拟患者之间不同的解剖复杂性,比如外耳道(EAC)大小各异。我们开发了一种新型低成本、中等保真度的三维打印PET模拟器,其具有不同的EAC尺寸,以更好地反映操作的复杂性。此外,还测试了多种材料以模拟鼓膜的弹性模量,最终选择了“Press'n Seal”保鲜膜,因其性价比高且触感相似。十名耳鼻喉科医生在两种EAC尺寸上进行了PET插入操作,随后进行了一项调查以评估表面效度和内容效度。结果表明表面效度和内容效度都很高,大多数参与者都认为该模拟器提供了逼真的体验,对培训很有用。虽然我们的研究样本量较小,但我们的PET模拟器为PET培训增添了独特而有价值的内容。