Peeters J C, Dubelaar G B, Ringelberg J, Visser J W
Tidal Waters Division, Rijkswaterstaat, The Hague, The Netherlands.
Cytometry. 1989 Sep;10(5):522-8. doi: 10.1002/cyto.990100507.
The design criteria for a flow cytometer (FCM) for the analysis of field samples of phytoplankton are described. The criteria are based on the occurrence of a wide variety of particle sizes in field samples, normally at low concentrations. The instrument should be able to analyse cells and colonies from 0.5 to 500 microns diameter and of over 2,000 microns length. A minimum flow rate of 4 microliters.s-1 was calculated from natural plankton concentrations. Commercially available FCMs are not suited to measure this range of sizes at this rate. Further limitations of standard FCMs are uneven illumination or incomplete processing of long signals. In addition, long filamentous colonies can break into small fragments caused by too high acceleration in the standard flow cuvette. Recognition of these limitations is of importance for the flow cytometry of phytoplankton. The new design was developed to avoid these limitations. A dynamic range 5 to 6 decades could be accomplished by a combination of logarithmic amplifiers, a slit-shaped focal spot, and a pulse integration system that can process long pulses. Multilaser capability to identify different phytoplankton species, a low fluid shear cuvette, and a trigger gate-extension for inhomogeneously fluorescent algal filaments were included in the design.
描述了用于分析浮游植物野外样本的流式细胞仪(FCM)的设计标准。这些标准基于野外样本中通常低浓度下存在的多种粒径。该仪器应能够分析直径为0.5至500微米以及长度超过2000微米的细胞和菌落。根据天然浮游生物浓度计算出的最小流速为4微升·秒⁻¹。市售的流式细胞仪不适合以该流速测量此粒径范围。标准流式细胞仪的进一步局限性在于照明不均匀或长信号处理不完全。此外,在标准流动比色皿中,过高的加速度会导致长丝状菌落破碎成小碎片。认识到这些局限性对于浮游植物的流式细胞术很重要。开发新设计是为了避免这些局限性。通过对数放大器、狭缝形焦点和能够处理长脉冲的脉冲积分系统的组合,可以实现5至6个数量级的动态范围。设计中包括用于识别不同浮游植物物种的多激光功能、低流体剪切比色皿以及用于不均匀荧光藻丝的触发门扩展。