Usability testing of a novel interlocking three-dimensional miniplate for mandibular angle fractures.

Q2 Medicine Archives of Craniofacial Surgery Pub Date : 2024-08-01 Epub Date: 2024-08-20 DOI:10.7181/acfs.2024.00290
Prasetyanugraheni Kreshanti, Aria Kekalih, Ahmad Jabir Rahyussalim, Sugeng Supriadi, Bambang Pontjo Priosoeryanto, Deni Noviana, Mendy Hatibie Oley, Chaula Luthfia Sukasah
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Abstract

Background: We developed a novel interlocking three-dimensional (3D) miniplate design with an adjustable configuration. As this device is new, surgeons must become familiar with its application. This study evaluated the usability and learning curves associated with the novel interlocking 3D miniplate for mandibular fracture fixation.

Methods: The study participants, nine plastic surgeons, were asked to apply an interlocking 3D miniplate and a standard miniplate to polyurethane mandible models. The participants had completed the Basic Craniomaxillofacial Osteosynthesis course during residency and had operated on craniomaxillofacial fractures within the past 5 years. They were instructed to place the interlocking 3D miniplate three times and the standard miniplate once. We assessed the time required for implant placement, the comfort level of the surgeons, and the biomechanical stability of the plates. Biomechanical testing was conducted by subjecting the mandible to forces ranging from 10 to 90 N and the displacement was measured.

Results: The results indicate increasing comfort with each attempt at placing the interlocking 3D miniplate, with a significant difference between the first and third attempts. Additionally, a reduction in application time was noted with repeated attempts, suggesting improved efficiency. Biomechanical tests showed comparable stability between the tested plates.

Conclusion: Multiple attempts at applying the interlocking 3D miniplate resulted in increased comfort and reduced application time. These findings indicate that, despite its novelty, the interlocking 3D miniplate is relatively straightforward to apply and has a short learning curve. However, surgeons must have specific qualifications to ensure proper training and minimize errors during placement.

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针对下颌角骨折的新型联锁三维小板的可用性测试。
背景:我们开发了一种可调节结构的新型互锁三维(3D)小钢板。由于该装置是新产品,外科医生必须熟悉其应用。本研究评估了用于下颌骨骨折固定的新型联锁三维小板的可用性和学习曲线:方法:九名整形外科医生被要求在聚氨酯下颌骨模型上应用联锁三维小钢板和标准小钢板。参与者在住院医师培训期间完成了颅颌面骨合成基础课程,并在过去5年内对颅颌面骨折进行过手术。我们指导他们植入互锁三维小钢板三次,标准小钢板一次。我们对植入所需的时间、外科医生的舒适度以及小钢板的生物力学稳定性进行了评估。生物力学测试是通过对下颌骨施加 10 到 90 N 的力并测量其位移来进行的:结果表明,每次尝试放置互锁三维迷你板都会增加舒适度,第一次和第三次尝试之间有显著差异。此外,随着多次尝试,使用时间也有所缩短,这表明效率有所提高。生物力学测试表明,所测试的小板稳定性相当:结论:多次尝试使用联锁 3D 迷你板可提高舒适度并缩短使用时间。这些研究结果表明,尽管互锁三维小板很新颖,但其应用相对简单,学习曲线较短。不过,外科医生必须具备特定的资质,以确保接受过适当的培训,并将置入过程中的失误降至最低。
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来源期刊
Archives of Craniofacial Surgery
Archives of Craniofacial Surgery Medicine-Otorhinolaryngology
CiteScore
2.90
自引率
0.00%
发文量
44
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