同时双波长数字全息显微镜作为分析角质棘瘤皮肤样本的工具

Natalith Palacios-Ortega, Maria Del Socorro Hernandez-Montes, Fernando Mendoza Santoyo, Mauricio Flores-Moreno, Manuel De la Torre Ibarra, Daniel Luis-Noriega, Pedro G. Méndez-Sashida
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摘要

角棘瘤(KA)皮肤肿瘤通常是由阳光照射引起的,可能是发展为更具侵袭性的肿瘤或皮肤癌之前的预警信号。研究KA细胞的形状及其三维渲染可视化是防止其向更高阶段的肿瘤细胞或皮肤癌发展的重要参数。通过数字全息显微镜可以获得KA细胞的形状;为此,实现了两个照明波长(532和638 nm)的设置,以呈现3.2 μ m的合成波长,避免了处理全息图的光学相位包裹,并增加了测量范围。为了恢复光相位,在每个波长同时记录两个离轴数字全息图。从处理后的全息图高度变化中,获得KA细胞的形状和长度以及角质层表皮层的相位图像。所取得的结果有助于区分健康细胞和恶性细胞。
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Simultaneous dual-wavelength digital holographic microscopy as a tool for the analysis of keratoacanthoma skin samples
Abstract A keratoacanthoma (KA) skin tumor is usually caused by sun exposure and may be an alert sign prior to the development of a more aggressive tumor or skin cancer. Studying the shape of the KA cells and their 3D rendering visualization are important parameters to prevent its evolution to higher stages of tumor cells or skin cancer. KA cells shape can be obtained through digital holographic microscopy; for that purpose, a setup with two illumination wavelengths (532 and 638 nm) is implemented to render a synthetic wavelength of 3.2 μ m that avoids wrapping the optical phase of the processed holograms and increases measurement range. To recover the optical phase, two off-axis digital holograms are simultaneously recorded at each wavelength. From the processed hologram height variations, the shape and length of KA cells, as well as the stratum corneum epidermal layer, are obtained as phase images. The results achieved aid to discriminate healthy from malignant cells.
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