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A linear viscoelastic model to understand skin mechanical behaviour and for cosmetic formulation design

机译:粘面粘弹性模型,了解皮肤力学行为和化妆品配方设计

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Objectives Skin is arguably one of the most important organs that plays an active role in our everyday biological functions after brain. Owing to the wide range of applications in medicine, cosmetics industry and more recently robotics, skin research has gained tremendous attention with respect to its mechanical behaviour. Various macro modelling approaches are available for modelling skin's mechanical behaviour. The objective of this paper is to study skin's mechanical property change with age and demonstrate anti-ageing effects of cosmetic formulations from skin mechanical property change perspective. Methods In this study, skin's mechanical behaviour was modelled using a 1D linear viscoelastic phenomenological model and the model was validated using two sets of experimentally observed skin data (strain, stress relaxation and cyclical loading). The model was further modified to study the effect of the presence of a thin layer of cosmetic polymer and to demonstrate anti-ageing effects of the cosmetic polymer from the perspective of change in the mechanical behaviour of skin with cosmetic layer. Results The estimated values of skin mechanical properties from the model agree with those in literature. The extracted model features show good correlation with skin age (viscosity and time constant). The results from our model indicate that the cosmetic polymers enhance the mechanical properties of skin significantly. Conclusions This work will find its applications in designing and testing anti-ageing formulations. This model can be used to filter various combinations of cosmetic formulations by knowing the mechanical response of polymer on skin, thereby accelerating the product development.
机译:目的皮肤可以说是最重要的机构之一,在大脑之后在日常生物学功能中发挥积极作用。由于医药,化妆品行业和最近的机器人的广泛应用,皮肤研究对其机械行为产生了巨大的关注。各种宏观建模方法可用于造型皮肤的机械行为。本文的目的是研究皮肤的机械性能随着年龄的增长,并表明来自皮肤机械性能变化视角的化妆品配方的抗衰老作用。方法在本研究中,使用1D线性粘弹性现象学模型进行建模皮肤的力学行为,使用两组实验观察皮肤数据(应变,应力松弛和周期性负载)进行验证。进一步修饰该模型以研究薄层化妆品聚合物的效果,并从用化妆品层的皮肤力学行为的变化的角度来证明化妆品聚合物的抗衰老作用。结果模型与文学中的皮肤机械性能的估计值达成。提取的模型特征显示出与皮肤时龄(粘度和时间常数)的良好相关性。我们模型的结果表明化妆品显着提高了皮肤的机械性能。结论这项工作将在设计和测试抗衰老配方中找到其应用。该模型可用于通过了解皮肤上的聚合物的机械响应来过滤化妆品配方的各种组合,从而加速产品开发。

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