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用于测量 530-600nm 波长范围内的时间分辨差光谱的 LED 阵列分光光度计。

LED array spectrophotometer for measurement of time resolved difference spectra in the 530-600 nm wavelength region.

机构信息

Lehrstuhl Botanik I, Universität Würzburg, Mittlerer Dallenbergweg 64, D-8700, Würzburg, FRG.

出版信息

Photosynth Res. 1990 Sep;25(3):317-27. doi: 10.1007/BF00033173.

Abstract

A new type of computer controlled spectrophotometer is described which is based on an array of independent, monochromatic pulsed light sources consisting of light emitting diodes (LED) equipped with narrow band interference filters. The LEDs are sequentially pulsed at a high repetition rate. The absorbance information at specific wavelengths is sampled in the μs-time range, using a computer-controlled, highly selective technique of synchronous amplification. A first prototype of this LED Array Spectrophotometer allows simultaneous recording of kinetic changes at 16 different wavelengths in the range from 530 to 600 nm, with a time resolution of 1 ms/point. Special features of the new type of spectrophotometer are: Weak integrated measuring light intensity, high signal/noise ratio even with scattering samples like intact leaves, active baseline adjustment by LED current regulation, computer control of system operation and data analysis. To deconvolute the complex absorbance changes in the cytochrome α-band region, 'standard spectra' of the major components are stored in computer memory and used for curve fitting of difference spectra and kinetic changes. As an example of application, the light-induced absorbance changes in a heat-pretreated spinach leaf are analysed. The system effectively separates specific absorbance changes of C550, cyt f, cyt b 559 and cyt b 563 from a large background of non-specific changes.

摘要

一种新型的计算机控制分光光度计,它基于一个由发光二极管(LED)组成的独立、单色脉冲光源阵列,这些 LED 配备了窄带干涉滤光片。LED 以高重复率顺序脉冲。使用计算机控制的、高度选择性的同步放大技术,在 μs 时间范围内对特定波长的吸光度信息进行采样。这种 LED 阵列分光光度计的第一个原型允许在 530 到 600nm 的范围内同时记录 16 个不同波长的动力学变化,时间分辨率为 1ms/点。这种新型分光光度计的特点是:弱积分测量光强度,即使是散射样品(如完整叶片)也具有高的信噪比,通过 LED 电流调节进行主动基线调整,系统操作和数据分析的计算机控制。为了解卷积细胞色素α带区域的复杂吸光度变化,主要成分的“标准光谱”存储在计算机内存中,并用于差光谱和动力学变化的曲线拟合。作为应用的一个例子,分析了热预处理菠菜叶的光诱导吸光度变化。该系统有效地将 C550、细胞色素 f、细胞色素 b559 和细胞色素 b563 的特定吸光度变化与大的非特异性变化背景区分开来。

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