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Systematic Approach to Study of Thinly and Thickly Sectioned Melanoma Tissues with Scanning Acoustic Microscopy

机译:扫描声学显微镜研究薄层和厚层黑色素瘤组织的系统方法

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The present study is to investigate the feasibility of applying in-vivo acoustic microscopy to the analysis of cancerous tissue. The study was implemented with mechanical scanning reflection acoustic microscope (SAM) by the following procedures. First, we ultrasonically visualized thick sections of normal and tumor tissues to determine the lowest transducer frequency required for cellular imaging. We used skin for normal tissue and the tumor was a malignant melanoma. Thin sections of the tissue were also studied with the optical and high-frequency-ultrasonic imaging for pathological evaluation. Secondly, we ultrasonically visualized subsurface cellular details of thin tissue specimens with different modes (i.e., pulse and tone-burst wave modes) to obtain the highest quality ultrasonic images. The objective is to select the best mode for the future design of a future SAM for in-vivo examination. Thirdly, we developed a mathematical modeling technique based on an angular spectrum approach for improving image processing and comparing numerical to experimental results.
机译:本研究旨在探讨应用体内声学显微镜分析癌组织的可行性。该研究是通过以下步骤用机械扫描反射声显微镜(SAM)进行的。首先,我们对正常和肿瘤组织的厚切片进行超声可视化,以确定细胞成像所需的最低换能器频率。我们将皮肤用于正常组织,肿瘤是恶性黑色素瘤。还利用光学和高频超声成像研究了组织的薄切片,以进行病理评估。其次,我们以超声方式可视化具有不同模式(即脉冲和音爆波模式)的薄组织样本的地下细胞细节,以获得最高质量的超声图像。目的是为将来的体内检查用SAM的未来设计选择最佳模式。第三,我们开发了一种基于角谱方法的数学建模技术,以改善图像处理并将数值与实验结果进行比较。

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