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单个海洋浮游生物的大小和折射率:一种流式细胞术方法

Size and refractive index of individual marine participates: a flow cytometric approach.

作者信息

Ackleson S G, Spinrad R W

出版信息

Appl Opt. 1988 Apr 1;27(7):1270-7. doi: 10.1364/AO.27.001270.

Abstract

Flow cytometric measurements of light scatter, near-forward light scatter (theta = 1.5-19 degrees ) and side scatter (theta = 73-107 degrees ), from individual marine particles is modeled using Mie theory. Particles are assumed to be homogeneous and nearly spherical in shape. Uniform polystyrene microspheres and oil suspensions are used to estimate model accuracy. Within the particle diameter range of 1-32 microm, the mean error for near-forward scatter and side scatter is 16.9% and 30.1%. respectively. The model is used to estimate size and refractive index of several nannoplankton species and the results are compared with microscopic measurements of cell size and published values of phytoplankton refractive index. Within the refractive-index range of 1.01-1.1, the model may be inverted to yield refractive index with an absolute error of between 0.01 and 0.003. Measurements of particle size distributions in clear ocean water indicate this range accounts for 99% of all nannoplankton and 39% of all particles within the size range from 1 to 10 microm.

摘要

利用米氏理论对单个海洋颗粒的光散射进行流式细胞仪测量,测量参数包括近前向光散射(θ = 1.5 - 19度)和侧向光散射(θ = 73 - 107度)。假设颗粒形状均匀且近似球形。使用均匀的聚苯乙烯微球和油悬浮液来评估模型的准确性。在1 - 32微米的粒径范围内,近前向散射和侧向散射的平均误差分别为16.9%和30.1%。该模型用于估计几种小型浮游生物的大小和折射率,并将结果与细胞大小的显微镜测量值以及浮游植物折射率的已发表值进行比较。在1.01 - 1.1的折射率范围内,该模型可以反演得出折射率,绝对误差在0.01至0.003之间。对清澈海水中颗粒大小分布的测量表明,这个范围占1至10微米大小范围内所有小型浮游生物的99%以及所有颗粒的39%。

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