Poulton Nicole J
Bigelow Laboratory for Ocean Sciences, 60 Bigelow Drive, East Boothbay, ME, USA.
Methods Mol Biol. 2016;1389:237-47. doi: 10.1007/978-1-4939-3302-0_17.
The ability to enumerate, classify, and determine biomass of phytoplankton from environmental samples is essential for determining ecosystem function and their role in the aquatic community and microbial food web. Traditional micro-phytoplankton quantification methods using microscopic techniques require preservation and are slow, tedious and very laborious. The availability of more automated imaging microscopy platforms has revolutionized the way particles and cells are detected within their natural environment. The ability to examine cells unaltered and without preservation is key to providing more accurate cell concentration estimates and overall phytoplankton biomass. The FlowCam(®) is an imaging cytometry tool that was originally developed for use in aquatic sciences and provides a more rapid and unbiased method for enumerating and classifying phytoplankton within diverse aquatic environments.
从环境样本中对浮游植物进行计数、分类并确定其生物量的能力,对于确定生态系统功能及其在水生群落和微生物食物网中的作用至关重要。使用显微镜技术的传统微型浮游植物定量方法需要进行保存,且速度慢、操作繁琐、极为费力。更多自动化成像显微镜平台的出现,彻底改变了在自然环境中检测颗粒和细胞的方式。能够在不改变和不保存细胞的情况下进行检查,是提供更准确的细胞浓度估计值和总体浮游植物生物量的关键。FlowCam(®)是一种成像细胞仪工具,最初是为水生科学领域开发的,它为在不同水生环境中对浮游植物进行计数和分类提供了一种更快速、更公正的方法。