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首页> 外文期刊>Journal of Biomechanics >Skin anisotropy in vivo and initial natural stress effect: A quantitative study using high-frequency static elastography
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Skin anisotropy in vivo and initial natural stress effect: A quantitative study using high-frequency static elastography

机译:体内皮肤各向异性和初始自然应力效应:使用高频静态弹性成像的定量研究

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Background: Most studies on skin anisotropy are carried out in an "average" context, e.g. with an extension/compression test on the skin in vivo, the elastic modulus being estimated for the stretched zone overall. Furthermore, the natural tension of the skin is not taken into account either in the experimental protocols or in the models studied. In this study, a battery of elastographic tests was carried out to investigate forearm skin anisotropy quantitatively by measuring local through-thickness strain in the dermis by means of high frequency elastography. The biaxial tensile effect and influence of the natural forearm skin tension were also analyzed. Methods: The elastographic test was carried out using a combination of an extensiometer device and a real time ultrasound scanner. The extensiometer was used to apply a stress cycle, i.e. stretching, holding and release, on the internal face of the forearm in vivo. Parallel to the mechanical test, 2D real time ultrasound acquisitions were performed to track local displacements and to estimate local through-thickness strain using an elastographic algorithm. Local through-thickness strain kinetics were then extracted and used as a quantified indicator. We studied anisotropy in two stretching situations: stretching parallel and stretching perpendicular to Langer's lines. Elastographic tests were performed for two upper arm/forearm angles, i.e. outstretched and bent forearm, in order to check the natural skin tension effect. Results: The results showed the effectiveness of elastographic tests to describe and quantify the anisotropic behavior of the forearm skin in vivo. Elastographic results were distinctly different according to forearm positions: the anisotropic behavior was reversed from the bent forearm to the outstretched forearm. Conclusions: The local anisotropic behavior of the skin in vivo could be easily studied using the elastographic test. Nevertheless, the initial skin tension is an important parameter which strongly affects the mechanical behavior of the skin in vivo, in particular its anisotropic properties.
机译:背景技术:大多数关于皮肤各向异性的研究都是在“平均”背景下进行的,例如在体内对皮肤进行延伸/压缩测试时,可以估算整个拉伸区域的弹性模量。此外,在实验方案或所研究的模型中都没有考虑皮肤的自然张力。在这项研究中,进行了一系列的弹性成像测试,以通过高频弹性成像技术测量真皮中的局部贯穿厚度应变来定量研究前臂皮肤的各向异性。还分析了双轴拉伸作用和自然前臂皮肤张力的影响。方法:弹性成像测试是使用引伸计设备和实时超声扫描仪的组合进行的。引伸计用于在体内在前臂的内表面上施加应力循环,即拉伸,保持和释放。与机械测试平行,使用弹性成像算法执行2D实时超声采集,以跟踪局部位移并估算局部厚度方向的应变。然后提取局部厚度应变动力学,并用作定量指标。我们研究了两种拉伸情况下的各向异性:平行拉伸和垂直于Langer线的拉伸。对两个上臂/前臂角度(即前臂伸展和弯曲)进行弹性成像测试,以检查自然的皮肤张力效果。结果:结果表明,弹性成像测试可有效描述和量化体内前臂皮肤的各向异性行为。弹性成像结果根据前臂位置而明显不同:各向异性行为从弯曲的前臂反转为伸出的前臂。结论:利用弹性成像测试可以容易地研究体内皮肤的局部各向异性行为。然而,初始皮肤张力是重要的参数,其强烈影响体内皮肤的机械行为,特别是其各向异性性质。

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