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通过增材制造为接受乳房切除术的女性生产低成本、个性化的外部硅酮乳房假体:一项初步研究。

Development of low-cost and personalized external silicone breast prosthesis produced by additive manufacturing for women who have undergone mastectomy: A pilot study.

机构信息

Laboratory of Applied Biomechanics, Sport Sciences Department, State University of Londrina, Rod. Celso Garcia Cid, Km 380, Londrina, Brazil.

Department of Design, State University of Londrina, Rod. Celso Garcia Cid, Km 380, Londrina, Brazil.

出版信息

Clin Biomech (Bristol). 2023 Dec;110:106123. doi: 10.1016/j.clinbiomech.2023.106123. Epub 2023 Oct 13.

Abstract

BACKGROUND

The aim of this study was to develop a low-cost and personalized method for external breast prosthesis production.

METHODS

The projected light method was used for the acquisition of the 3D geometry of the left breast of a healthy 29-year-old woman, 69 kg and 1.69 m. The 3D modeling software Blender was used to make the prosthesis model and mold with adjustments to the model's mesh, such as smoothing, assigning thickness, and creating the walls of the prosthesis mold. Two counter-molds were created. The pieces were manufactured on the 3D printer Stella Lite 3 using polylactic acid filament. Finally, the silicone was pigmented, and the mold was filled.

FINDINGS

Prototype 1 of the prosthesis was produced using a mold without a counter-mold, which resulted in a prosthesis of 495 g, considered heavy compared to traditional prostheses for the same breast size. To solve this issue, a counter-mold with pins was used to produce prototype 2 with a mass of 393 g, 20.6% lighter than prototype 1. Prototype 3 was made with a central-volume counter-mold and presented a mass of 355 g, a reduction of 28.3% compared to prototype 1. The definitive breast prosthesis was made with the pin counter-mold with a different silicone. It has nipple and areola pigmentation and a mass of 294 g, 25.2% lighter than prototype 2.

INTERPRETATION

The results suggest that the projected light method and additive manufacturing are potential tools for developing external breast prostheses, which may improve the health conditions and quality of life of mastectomized women.

摘要

背景

本研究旨在开发一种低成本、个性化的外部乳房假体生产方法。

方法

采用投影光法获取一位健康 29 岁女性左乳房的三维几何形状,该女性体重 69 公斤,身高 1.69 米。使用 3D 建模软件 Blender 制作假体模型和模具,并对模型的网格进行调整,例如平滑处理、分配厚度和创建假体模具的壁。创建了两个反模具。使用 polylactic acid 灯丝在 3D 打印机 Stella Lite 3 上制造这些部件。最后,对硅树脂进行着色,并填充模具。

发现

使用没有反模具的模具生产出了假体 1 号原型,其重量为 495 克,与相同乳房尺寸的传统假体相比,重量较重。为了解决这个问题,使用带有销钉的反模具生产出了原型 2,重量为 393 克,比原型 1 轻 20.6%。使用中央体积反模具制作了原型 3,重量为 355 克,比原型 1 减少了 28.3%。最终的乳房假体使用带有不同硅树脂的销钉反模具制成。它具有乳头和乳晕着色,重量为 294 克,比原型 2 轻 25.2%。

解释

结果表明,投影光法和增材制造可能是开发外部乳房假体的潜在工具,这可能会改善乳房切除女性的健康状况和生活质量。

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