首页> 美国卫生研究院文献>Bioengineering >New Evaluation Procedure for Multi-Dimensional Mechanical Strains and Tangent Moduli of Breast Implants: IDEAL IMPLANT® Structured Breast Implant Compared to Silicone Gel Implants
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New Evaluation Procedure for Multi-Dimensional Mechanical Strains and Tangent Moduli of Breast Implants: IDEAL IMPLANT® Structured Breast Implant Compared to Silicone Gel Implants

机译:乳房植入物的多维机械应变和切线模量的新评估程序:与硅胶植入物相比IDEALIMPLANT®结构化的乳房植入物

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摘要

The IDEAL IMPLANT® Structured Breast Implant is a dual lumen saline-filled implant with capsular contracture and deflation/rupture rates much lower than single-lumen silicone gel-filled implants. To better understand the implant’s mechanical properties and to provide a potential explanation for these eight-year clinical results, a novel approach to compressive load testing was employed. Multi-dimensional strains and tangent moduli, metrics describing the shape stability of the total implant, were derived from the experimental load and platen spacing data. The IDEAL IMPLANT was found to have projection, diametric, and areal strains that were generally less than silicone gel implants, and tangent moduli that were generally greater than silicone gel implants. Despite having a relatively inviscid saline fill, the IDEAL IMPLANT was found to be more shape stable compared to gel implants, which implies potentially less interaction with the capsule wall when the implant is subjected to compressive loads. Under compressive loads, the shape stability of a higher cross-link density, cohesive gel implant was unexpectedly found to be similar to or the same as a gel implant. In localized diametric compression testing, the IDEAL IMPLANT was found to have a palpability similar to a gel implant, but softer than a cohesive gel implant.
机译:IDEAL IMPLANT ®结构化乳房植入物是一种双腔盐水填充植入物,其囊膜挛缩和放气/破裂率远低于单腔硅胶填充凝胶植入物。为了更好地了解植入物的机械性能并为这八年的临床结果提供可能的解释,采用了一种新颖的压缩载荷测试方法。多维应变和切线模量(描述整个植入物的形状稳定性的度量)是从实验载荷和压板间距数据中得出的。发现IDEAL IMPLANT具有通常小于硅胶植入物的投影,直径和面积应变,以及通常大于硅胶植入物的切线模量。尽管有相对不粘稠的盐水填充,但与凝胶植入物相比,IDEAL IMPLANT被发现具有更好的形状稳定性,这意味着当植入物承受压缩载荷时,与胶囊壁的相互作用可能更少。在压缩载荷下,意外地发现较高交联密度的内聚凝胶植入物的形状稳定性与凝胶植入物相似或相同。在局部直径压缩测试中,发现IDEAL IMPLANT具有类似于凝胶植入物的可触知性,但比粘性凝胶植入物柔软。

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