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In vivo skin elastography with high-definition optical videos.

机译:具有高清光学视频的体内皮肤弹性成像。

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BACKGROUND/AIMS: Continuous measurements of biomechanical properties of skin provide potentially valuable information to dermatologists for both clinical diagnosis and quantitative assessment of therapy. This paper presents an experimental study on in vivo imaging of skin elastic properties using high-definition optical videos. The objective is to (i) investigate whether skin property abnormalities can be detected in the computed strain elastograms, (ii) quantify property abnormalities with a Relative Strain Index (RSI), so that an objective rating system can be established, (iii) determine whether certain skin diseases are more amenable to optical elastography and (iv) identify factors that may have an adverse impact on the quality of strain elastograms. METHODS: There are three steps in optical skin elastography: (i) skin deformations are recorded in a video sequence using a high-definition camcorder, (ii) a dense motion field between two adjacent video frames is obtained using a robust optical flow algorithm, with which a cumulative motion field between two frames of a larger interval is derived and (iii) a strain elastogram is computed by applying two weighted gradient filters to the cumulative motion data. RESULTS: Experiments were carried out using videos of 25 patients. In the three cases presented in this article (hypertrophic lichen planus, seborrheic keratosis and psoriasis vulgaris), abnormal tissues associated with the skin diseases were successfully identified in the elastograms. There exists a good correspondence between the shape of property abnormalities and the area of diseased skin. The computed RSI gives a quantitative measure of the magnitude of property abnormalities that is consistent with the skin stiffness observed on clinical examinations. CONCLUSIONS: Optical elastography is a promising imaging modality that is capable of capturing disease-induced property changes. Its main advantage is that an elastogram presents a continuous description of the spatial variation of skin properties on the pixel level that would otherwise be impossible with other sensors. Its value will be further enhanced when used with a point-wise measuring device such as a cutometer that yields absolute elasticity values.
机译:背景/目的:皮肤生物力学特性的连续测量为皮肤科医生提供了潜在有价值的信息,可用于临床诊断和治疗定量评估。本文介绍了使用高清光学视频对皮肤弹性特性进行体内成像的实验研究。目的是(i)研究是否可以在计算出的应变弹性图上检测到皮肤特性异常;(ii)使用相对应变指数(RSI)量化特性异常,从而可以建立客观的评分系统;(iii)确定某些皮肤疾病是否更适合光学弹性成像,以及(iv)确定可能对应变弹性成像质量产生不利影响的因素。方法:光学皮肤弹性成像包括三个步骤:(i)使用高清便携式摄像机在视频序列中记录皮肤变形,(ii)使用鲁棒的光流算法获得两个相邻视频帧之间的密集运动场,利用该方法,可以得出较大间隔的两个帧之间的累积运动场,并且(iii)通过将两个加权梯度滤波器应用于累积运动数据来计算应变弹性图。结果:使用25名患者的视频进行了实验。在本文介绍的三种情况下(肥大性扁平苔藓,脂溢性角化病和寻常型牛皮癣),在弹性成像中成功识别出与皮肤疾病相关的异常组织。在性质异常的形状和患病的皮肤区域之间存在良好的对应关系。计算得出的相对强弱指数(RSI)可以定量评估性质异常的程度,该异常程度与在临床检查中观察到的皮肤僵硬程度一致。结论:光学弹性成像是一种有前途的成像方式,能够捕获疾病引起的特性变化。它的主要优点是,弹性图可以连续描述皮肤属性在像素级别上的空间变化,而其他传感器则无法做到这一点。当与逐点测量设备(如Cutometer)一起使用时,其值将进一步提高,该设备会产生绝对的弹性值。

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