Vogt Michael, Ermert Helmut
Institute of High Frequency Engineering, Department of Electrical Engineering and Information Technology, Ruhr-University, 44780 Bochum, Germany.
IEEE Trans Ultrason Ferroelectr Freq Control. 2005 Mar;52(3):375-85. doi: 10.1109/tuffc.2005.1417260.
The elastic properties of skin are of great interest in dermatology because they are affected by many pathological conditions. In this paper, a technique for in vivo mechanical strain imaging of the skin based on high-frequency ultrasound (HFUS) is presented. Elastic skin properties are assessed applying suction to the skin surface with a stepwise increased vacuum and estimating the resulting displacements in a spatially resolved manner. Acquired radio frequency (RF) echo signals and their envelope are analyzed for this purpose. A computer-controlled vacuum system with a digital pressure control loop was developed for precise and reproducible deformation. In a first processing step, the skin surface is segmented. Local axial strains inside the skin are estimated from axial displacements, which are estimated from consecutive echo signal frames analyzing the phase of the complex cross correlation function of analytical echo signals. Furthermore, speckle tracking is applied to estimate axial and lateral displacements and to quantify axial and lateral strains. The correlation coefficient of windowed echo signals compensated for displacements are used as a measure to validate the estimated strains, which is essential to accomplish reliable in vivo measurements. Phantom experiments were performed to validate the proposed technique. Results of in vivo measurements are presented, showing the potential for mechanical strain imaging in the skin in vivo.
皮肤的弹性特性在皮肤病学中备受关注,因为它们会受到多种病理状况的影响。本文介绍了一种基于高频超声(HFUS)的皮肤体内机械应变成像技术。通过以逐步增加的真空度对皮肤表面施加吸力,并以空间分辨的方式估计由此产生的位移,来评估皮肤的弹性特性。为此,对采集到的射频(RF)回波信号及其包络进行分析。开发了一种带有数字压力控制回路的计算机控制真空系统,以实现精确且可重复的变形。在第一个处理步骤中,对皮肤表面进行分割。从轴向位移估计皮肤内部的局部轴向应变,轴向位移则通过分析解析回波信号的复互相关函数的相位,从连续的回波信号帧中估计得出。此外,应用散斑跟踪来估计轴向和横向位移,并量化轴向和横向应变。对经位移补偿的加窗回波信号的相关系数用作验证估计应变的度量,这对于完成可靠的体内测量至关重要。进行了体模实验以验证所提出的技术。展示了体内测量结果,表明了皮肤体内机械应变成像的潜力。