Henriksen Melvin, Miller Bruce, Newmark Judith, Al-Kofahi Yousef, Holden Elena
CompuCyte Corporation, Westwood, Massachusetts, USA.
Methods Cell Biol. 2011;102:161-205. doi: 10.1016/B978-0-12-374912-3.00007-9.
Imaging cytometry plays an increasingly important role in all fields of biological and medical sciences. It has evolved into a complex and powerful discipline amalgamating image acquisition technologies and quantitative digital image analysis. This chapter presents an overview of the complex and ever-developing landscape of imaging cytometry, highlighting the imaging and quantitative performance of a wide range of available instruments based on their methods of sample illumination and the detection technologies they employ. Each of these technologies has inherent advantages and shortcomings stemming from its design. It is therefore paramount to assess the appropriateness of all of the imaging cytometry options available to determine the optimal choice for specific types of studies. Laser scanning cytometry (LSC), the original imaging cytometry technology, is an attractive choice for analysis of both cellular and tissue specimens. Quantitative performance, flexibility, and the benefits of preserving native sample architecture and avoiding the introduction of artificial signals, particularly in cell-signaling studies and multicolor tissue analysis, are speeding the adoption of LSC and opening up new possibilities for developing sophisticated applications.
成像细胞术在生物和医学科学的各个领域发挥着越来越重要的作用。它已发展成为一门复杂而强大的学科,融合了图像采集技术和定量数字图像分析。本章概述了成像细胞术这一复杂且不断发展的领域,重点介绍了基于样本照明方法和所采用检测技术的各类现有仪器的成像和定量性能。这些技术中的每一种都因其设计存在固有的优点和缺点。因此,至关重要的是评估所有可用的成像细胞术选项的适用性,以确定针对特定类型研究的最佳选择。激光扫描细胞术(LSC)作为最初的成像细胞术技术,是分析细胞和组织标本的一个有吸引力的选择。其定量性能、灵活性以及保留天然样本结构和避免引入人工信号的优点,特别是在细胞信号研究和多色组织分析中,正在加速LSC的应用,并为开发复杂应用开辟新的可能性。