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Growing skin: Tissue expansion in pediatric forehead reconstruction

机译:皮肤生长:小儿前额重建中的组织扩张

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Tissue expansion is a common surgical procedure to grow extra skin through controlled mechanical overstretch. It creates skin that matches the color, texture, and thickness of the surrounding tissue, while minimizing scars and risk of rejection. Despite intense research in tissue expansion and skin growth, there is a clear knowledge gap between heuristic observation and mechanistic understanding of the key phenomena that drive the growth process. Here, we show that a continuum mechanics approach, embedded in a custom- designed finite element model, informed by medical imaging, provides valuable insight into the biomechanics of skin growth. In particular, we model skin growth using the concept of an incompatible growth configuration. We characterize its evolution in time using a second-order growth tensor parameterized in terms of a scalar-valued internal variable, the in-plane area growth. When stretched beyond the physiological level, new skin is created, and the in-plane area growth increases. For the first time, we simulate tissue expansion on a patient-specific geometricmodel, and predict stress, strain, and area gain at three expanded locations in a pediatric skull: in the scalp, in the forehead, and in the cheek. Our results may help the surgeon to prevent tissue over-stretch and make informed decisions about expander geometry, size, placement, and inflation. We anticipate our study to open newavenues in reconstructive surgery and enhance treatment for patients with birth defects, burn injuries, or breast tumor removal.
机译:组织扩张是通过受控的机械过度拉伸来生长多余皮肤的常见外科手术程序。它可以创造出与周围组织的颜色,质地和厚度相匹配的皮肤,同时最大程度地减少疤痕和排斥的风险。尽管在组织扩展和皮肤生长方面进行了大量研究,但是启发式观察与对驱动生长过程的关键现象的机械理解之间存在明显的知识鸿沟。在这里,我们表明,在医学成像的指导下,嵌入到定制设计的有限元模型中的连续力学方法可以为皮肤生长的生物力学提供有价值的见解。特别是,我们使用不兼容的生长配置概念来对皮肤生长进行建模。我们使用根据标量值内部变量(面内面积增长)参数化的二阶增长张量来表征其随时间的演变。当延伸超过生理水平时,会产生新的皮肤,并且平面内区域的生长会增加。首次,我们在特定于患者的几何模型上模拟组织扩张,并预测了小儿颅骨三个扩展位置(头皮,前额和脸颊)的应力,应变和面积增加。我们的结果可能有助于外科医生防止组织过度拉伸,并就扩张器的几何形状,尺寸,位置和膨胀做出明智的决定。我们预计我们的研究将为重建手术开辟新的途径,并为患有先天缺陷,烧伤或乳腺肿瘤切除的患者加强治疗。

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