Suppr超能文献

具有内部结构的小颗粒的光散射和荧光。

Light scattering and fluorescence by small particles having internal structure.

作者信息

Kerker M, Chew H, McNulty P J, Kratohvil J P, Cooke D D, Sculley M, Lee M P

出版信息

J Histochem Cytochem. 1979 Jan;27(1):250-63. doi: 10.1177/27.1.438501.

Abstract

We consider two related, yet distinct queries: 1. How does the internal morphology of a small particle affect the elastic light scattering signals? We have devised an algorithm, presently accurate for particles comparable only to small biological spheres (diameter less than 1 micron), which suggests that light scattering is sensitive to internal morphology only in the backward directions. Accordingly, observations should be obtained in these directions when probing for internal morphology. 2. How are fluorescent signals affected when the active molecules are variously distributed within small particles? One cannot assume that the fluorescent signals are simply proportional to the number of active molecules contained in the particle because there may also be a dependence upon the geometrical and optical properties of the particle and upon the particular spatial distribution of these molecules within the particle. Indeed, even the measured emission spectrum may be affected by such morphological features. Here, too, these calculations are mainly restricted to small particles (diameter less than 1 micron) in which the fluorescent molecules are isotropic and immobile. Under these conditions the effects are quite dramatic. These effects should be considered in quantitative procedures which utilize fluorescence for determining the concentration of specific molecules in small particles such as biological cells. They may provide a clue for discriminating among cells which differ morphologically or in which the spatial distribution of the fluorescent moiety differs. These effects may be minimized by utilizing a light source which is polarized perpendicularly to the scattering plane.

摘要

我们考虑两个相关但又不同的问题

  1. 小颗粒的内部形态如何影响弹性光散射信号?我们设计了一种算法,目前仅对与小生物球体相当的颗粒(直径小于1微米)准确,该算法表明光散射仅在向后方向对内部形态敏感。因此,在探测内部形态时应在这些方向上进行观测。2. 当活性分子在小颗粒内以不同方式分布时,荧光信号会受到怎样的影响?不能假定荧光信号与颗粒中所含活性分子的数量简单成正比,因为这可能还取决于颗粒的几何和光学性质以及这些分子在颗粒内的特定空间分布。实际上,即使测得的发射光谱也可能受此类形态特征影响。同样,这些计算主要限于荧光分子各向同性且固定不动的小颗粒(直径小于1微米)。在这些条件下,影响相当显著。在利用荧光测定小颗粒(如生物细胞)中特定分子浓度的定量程序中应考虑这些影响。它们可能为区分形态不同或荧光部分空间分布不同的细胞提供线索。通过使用垂直于散射平面偏振的光源,这些影响可能会最小化。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验