2018FigshareOpen access

Pinna synthetic mold for otoplasty techniques application

Mariah Guieiro Alves dos Reis, Ricardo Guimarães Marim, Luís Ricardo Martinhão Souto

Open full text 0 citations

Abstract

Abstract Introduction The ear deformity Tanzer type V, also known as prominent ears, is the most common genetic defect of the pinna. The surgery designed for its correction is known as otoplasty. This esthetic surgery can be performed using different techniques, which requires great skill of its operator. Objective The purpose of this work is the development of a new tool for otoplasty techniques training, aimed on the possibility to minimize errors during the otoplasty. Methods Synthetic molds of the external ear from patients with Tanzer type V deformity were made, using silicone material and rayon. Results The main procedures of otoplasty could be performed in the molds made of silicone and rayon with a good esthetic result. Conclusion The elaborated molds had identical size and shape of a human ear and could be positioned in the same shape of the patient ears. Thus, the synthetic molds were presented as promising simulation tools for the training and surgical enhancement of otoplasty, especially for doctors beginners.

About this research paper

What this paper is about

Abstract Introduction The ear deformity Tanzer type V, also known as prominent ears, is the most common genetic defect of the pinna. The surgery designed for its correction is known as otoplasty. This esthetic surgery can be performed using different techniques, which requires great skill of its operator. Objective The purpose of this work is the development of a new tool for otoplasty techniques training, aimed on the possibility to minimize errors during the otoplasty. Methods Synthetic molds of the external ear from patients with Tanzer type V deformity were made, using silicone material and rayon. Results The main procedures of otoplasty could be performed in the molds made of silicone and rayon with a good esthetic result. Conclusion The elaborated molds had identical size and shape of a human ear and could be positioned in the same shape of the patient ears. Thus, the synthetic molds were presented as promising simulation tools for the training and surgical enhancement of otoplasty, especially for doctors beginners.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract Introduction The ear deformity Tanzer type V, also known as prominent ears, is the most common genetic defect of the pinna. The surgery designed for its correction is known as otoplasty. This esthetic surgery can be performed using different techniques, which requires great skill of its operator. Objective The purpose of this work is the development of a new tool for otoplasty techniques training, aimed on the possibility to minimize errors during the otoplasty. Methods Synthetic molds of the external ear from patients with Tanzer type V deformity were made, using silicone material and rayon. Results The main procedures of otoplasty could be performed in the molds made of silicone and rayon with a good esthetic result. Conclusion The elaborated molds had identical size and shape of a human ear and could be positioned in the same shape of the patient ears. Thus, the synthetic molds were presented as promising simulation tools for the training and surgical enhancement of otoplasty, especially for doctors beginners.

Key concepts: Pinna, Otoplasty, Auricle, Mold, Biology, Anatomy, Botany

Related papers

Back to paper searchBrowse research topicsOriginal source
Pinna synthetic mold for otoplasty techniques application — Research Paper | ScholarLens