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A microscopy scanning system for clinical chromosome diagnostics.

机译:用于临床染色体诊断的显微镜扫描系统。

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摘要

An important part of the diagnosis and treatment of leukemia is the visual examination of the patient's chromosomes. Chomosomal changes serve as indicators of the nature and severity of the disease. Clinical genetics laboratories acquire images of metaphase chromosomes using a microscope and camera system, usually by manual search of the tissue slides. Manual techniques are labor intensive, slow and costly. A computer controlled scanning system can be an important tool for automating and expediting the chromosome analysis process. Commercial systems have been developed, but fall short of providing an automated (or even semi-automated) computer aided diagnosis technique. This dissertation describes the design and development of a prototype scanning system, and studies the impact of the scanning speed on the image quality, with an eye towards the development of a Computer Aided Diagnostic (CAD) system. The system consists of a laboratory grade microscope, a high-precision motorized stage, a video imaging system, and controlling software. An entire slide can be imaged and captured into a digital file for later review. Fast scan rates make a system more productive, which is essential for clinical practice, but motion blur can render the images unusable for post image processing and computer assisted diagnosis. Experimentally in this research, clinical chromosome images and resolution patterns were scanned under different objective lens magnifications ranges from 10X to 100X, at different scanning speed from 0mm/sec to 4mm/sec. These images were reviewed by observers. Significant motion blurs were observed at high magnification and scanning speed. The impact of scanning speed was also quantified by objective parameters such as modulation transfer functions (MTF). For example, with an objective lens power of 10X, the essential structure of a metaphase spread can still be visually detected with a scan speed of 4 mm/sec, whereas at that speed, the image under 60X and higher objective power is not recognized. Accordingly, an optimal design strategy for an efficient clinical system should balance optical magnification, scanning speed, as well as the frame rate of the camera.; During the course of this research, the following papers were authored or co-authored: (1) X. Wang, B. Zheng, M. Wood, S. Li, W. R. Chen, and H. Liu, "Development and Evaluation of Automated Systems for Detection and Classification of Banded Chromosome: Current Status and Future Perspectives", Journal of Physics D: Applied Physics, vol 38, 2005, pp 2536-2542. (2) X. Wang, S. Li, H. Liu, M. Wood, W. R. Chen, and B. Zheng, "Automated Identification of Analyzable Metaphase Chromosomes Depicted on Microscopic Digital Images", Journal of Biomedical Informatics, 2007. (Accepted for publication).
机译:白血病的诊断和治疗的重要部分是对患者染色体的目测检查。染色体变化可作为疾病性质和严重程度的指标。临床遗传学实验室通常使用人工搜索组织载玻片,使用显微镜和相机系统获取中期染色体的图像。手动技术劳动强度大,速度慢且成本高。计算机控制的扫描系统可能是自动化和加速染色体分析过程的重要工具。已经开发了商业系统,但是未能提供自动化(甚至半自动化)的计算机辅助诊断技术。本文介绍了原型扫描系统的设计与开发,并研究了扫描速度对图像质量的影响,并着眼于计算机辅助诊断系统的开发。该系统包括实验室级显微镜,高精度电动载物台,视频成像系统和控制软件。可以将整个幻灯片成像并捕获到数字文件中,以供以后查看。快速的扫描速度使系统生产率更高,这对于临床实践至关重要,但是运动模糊会使图像无法用于后期图像处理和计算机辅助诊断。在这项研究中,通过实验,在10倍至100倍的不同物镜放大倍率和0毫米/秒至4毫米/秒的不同扫描速度下扫描了临床染色体图像和分辨率模式。这些图像由观察者进行了审查。在高放大倍率和扫描速度下观察到明显的运动模糊。扫描速度的影响也可以通过客观参数(例如调制传递函数(MTF))进行量化。例如,在物镜放大倍数为10倍的情况下,仍可以以4毫米/秒的扫描速度从视觉上检测到中期扩散的基本结构,而在该速度下,无法识别60倍及更高的物镜倍数下的图像。因此,有效临床系统的最佳设计策略应在光学放大倍率,扫描速度以及相机的帧频之间取得平衡。在本研究过程中,以下论文是合着或合着的:(1)X. Wang,B. Zheng,M. Wood,S. Li,WR WR and Liu。H.,“自动化的发展与评估”带状染色体的检测和分类系统:现状和未来展望”,物理学杂志D:应用物理学,第38卷,2005年,第2536-2542页。 (2)X. Wang,S。Li,H。Liu,M。Wood,WR WR Chen和B. Zheng,“在显微数字图像上自动鉴定可分析的中期染色体”,《生物医学信息学》,2007年。(已接受出版)。

著录项

  • 作者

    Wood, Marc Conan.;

  • 作者单位

    The University of Oklahoma.$bSchool of Electrical and Computer Engineering.;

  • 授予单位 The University of Oklahoma.$bSchool of Electrical and Computer Engineering.;
  • 学科 Engineering Biomedical.; Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:39:18

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