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完整与破裂的聚植入假体乳房植入物的生物力学分析。

Biomechanical analysis of intact versus ruptured Poly Implant Prothèse breast implants.

作者信息

Ramião N G, Martins P S, Barroso M L, Santos D C, Fernandes A A

机构信息

INEGI, LAETA, Faculty of Engineering of the University of Porto, Campus da FEUP, Rua Dr. Roberto Frias, 400, 4200-465 Porto, Portugal.

Department of Plastic Surgery, Gaia Hospital Center, Vila Nova de Gaia, Portugal.

出版信息

Interface Focus. 2019 Aug 6;9(4):20180086. doi: 10.1098/rsfs.2018.0086. Epub 2019 Jun 14.

Abstract

Despite there being many studies that have evaluated breast implant rupture, there is no consensus about causes and incidence. Most studies lack a multifactorial analysis of what causes breast implants to rupture. To fill this gap, an experimental protocol was developed to compare ruptured and intact Poly Implant Prothèse (PIP) breast implants from the same woman. These conditions guarantee that the physical/biological variables are the same for each pair of ruptured and intact implants. A total of 1008 samples from 22 PIP explants (11 intact and 11 ruptured) and three control PIP implants were analysed. The mechanical properties (tensile strength) of the ruptured and intact implants were compared according to brand, lot, implantation time and demographic conditions. In general, statistically significant differences were found between the intact and ruptured PIP implants. Ruptured implants were thinner (0.73 ± 0.10 mm versus 0.91 ± 0.11 mm) and weaker (7.42 ± 2.65 MPa versus 9.59 ± 2.37 MPa) than intact implants. Intact and ruptured implants have shown distinct mechanical behaviours and variations in thickness. Our understanding is that these differences may be associated with the typical manufacturing process of breast implant shells. These results stress the importance of thorough control of the shell thickness. Given its relevance, shell thickness should be used as a quality control measure for homologation purposes. Thus, the homogeneity of the shell should be considered as a relevant parameter during the manufacturing process. This will translate into an improved quality of life for patients and will potentiate safer and longer lasting products.

摘要

尽管有许多研究评估了乳房植入物破裂情况,但对于其原因和发生率尚无共识。大多数研究缺乏对乳房植入物破裂原因的多因素分析。为填补这一空白,制定了一项实验方案,以比较来自同一女性的破裂和完整的宝俪(PIP)乳房植入物。这些条件保证了每对破裂和完整植入物的物理/生物学变量相同。对来自22个PIP取出物(11个完整的和11个破裂的)以及三个对照PIP植入物的总共1008个样本进行了分析。根据品牌、批次、植入时间和人口统计学条件比较了破裂和完整植入物的机械性能(拉伸强度)。总体而言,在完整和破裂的PIP植入物之间发现了具有统计学意义的差异。破裂的植入物比完整的植入物更薄(分别为0.73±0.10毫米和0.91±0.11毫米)且更脆弱(分别为7.42±2.65兆帕和9.59±2.37兆帕)。完整和破裂的植入物表现出不同的机械行为和厚度变化。我们的理解是,这些差异可能与乳房植入物外壳的典型制造过程有关。这些结果强调了全面控制外壳厚度的重要性。鉴于其相关性,外壳厚度应用作认证目的的质量控制措施。因此,在制造过程中应将外壳的均匀性视为一个相关参数。这将转化为患者生活质量的提高,并将增强产品的安全性和使用寿命。

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