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High-Resolution Ultrasound Imaging of Human Skin In Vivo by Using Three-Dimensional Ultrasound Microscopy

机译:通过使用三维超声显微镜对人体皮肤的高分辨率超声成像。

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摘要

Observing the morphology of human skin is important in the diagnosis of skin cancer and inflammation and in the assessment of skin aging. High-frequency ultrasound imaging provides high spatial resolution of the deep layers of the skin, which cannot be visualized by optical methods. The objectives of the present study were to develop a three-dimensional (3-D) ultrasound microscope and to observe the morphology of normal human skin in vivo. A concave polyvinylidene fluoride transducer with a central frequency of 120 MHz was excited using an electric pulse generated by semiconductor switching. The transducer was scanned two-dimensionally by using two linear motors on the region-of-interest and the ultrasonic reflection was digitized with 2-GHz sampling. Consecutive B-mode images perpendicular to the skin surface were reconstructed to generate multiplanar reconstructed images and 3-D volume-rendering images clearly showing microstructures such as sebaceous glands and hair follicles. The 3-D ultrasound microscope could be used to successfully image the morphology of human skin noninvasively and may provide important information on skin structure.
机译:观察人类皮肤的形态对于诊断皮肤癌和炎症以及评估皮肤衰老很重要。高频超声成像可提供皮肤深层的高空间分辨率,这是光学方法无法实现的。本研究的目的是开发三维(3-D)超声显微镜,并在体内观察正常人皮肤的形态。使用由半导体开关产生的电脉冲来激发中心频率为120 MHz的凹形聚偏二氟乙烯换能器。通过在感兴趣区域上使用两个线性电动机对换能器进行二维扫描,并通过2 GHz采样将超声反射数字化。重建垂直于皮肤表面的连续B模式图像,以生成多平面重建图像和3-D体积渲染图像,清楚地显示了皮脂腺和毛囊等微结构。 3-D超声显微镜可用于成功地无创地对人类皮肤的形态成像,并可提供有关皮肤结构的重要信息。

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