Single Cell Position Determination and Transformation from Static High-resolution Digital Image to Laser-microdissector Coordinate System Using Image Processing Techniques

M. Kucarov, A. Várkonyi-Kóczy, B. Molnár, M. Kozlovszky
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引用次数: 1

Abstract

Such laser microdissection design is discussed that requires no human interaction and yet capable of μm accuracy. The goal is to boost speed, accuracy, and smooth workflow between slide scanning and laser cutting of suspicious areas from tissue sample based on software evaluation of the digital slides. Fully automated, precise, robust solution has been developed using hybrid method that includes static matrix transformation for preliminary position calculation, computer vision, and image processing technique for real-time object detection and position adjustment. Software implementation also tested on microdissector equipment. Applying this methodology in clinical pathology could reduce the waiting lists, the overload of clinics, laboratory technicians.
单细胞位置确定及从静态高分辨率数字图像到激光显微解剖坐标系的图像处理技术
这种激光显微解剖设计不需要人工干预,但能够达到μm的精度。目标是提高速度,准确性和平滑的工作流程之间的幻灯片扫描和激光切割可疑区域的组织样本基于软件评估的数字幻灯片。采用混合方法,包括用于初步位置计算的静态矩阵变换、计算机视觉和用于实时目标检测和位置调整的图像处理技术,开发了全自动、精确、鲁棒的解决方案。软件实现也在微解剖设备上进行了测试。将这种方法应用于临床病理学可以减少候诊名单,减少诊所和实验室技术人员的超负荷工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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