Tweaking Fluorescence Scans: Guidelines to Recording Excitation and Emission Spectra

6 May 2015

Fluorescence measurements in general depend on various parameters which can all be optimized to achieve better results in terms of signal intensity and quality. This application note describes the relevant instrument parameters to acquire optimal fluorescence excitation and emission spectra on the Infinite M200 PRO and Infinite M1000 PRO.

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Microplate Readers / DetectorsMicroplate readers are used to automate the detection and analysis of labeled or label-free components in microplates during assays or live-cell monitoring. Microplate readers are generally distinguished by their mode of detection. Types include absorbance, luminescence, fluorescence intensity, fluorescence polarization, TRF / FRET and multimode microplate readers. Microplate readers deliver a high throughput of samples by reading multiple wells simultaneously, with the 96-well format the most commonly used. As a result, microplate readers are often used in the drug discovery, bioassays, research and pharmaceutical industries for screening applications. Microplate loading can also be automated, with robotic microplate stackers to increase throughput. Find the best microplate readers in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.FluorescenceThe emission of fluorescence occurs when a photon of energy is supplied to a fluorescent chemical compound by an external source, causing it to become excited. Fluorescence can be detected and measured for different purposes using microplate readers, fluorescence microscopes, fluorescence scanners, and flow cytometers.
Tweaking Fluorescence Scans: Guidelines to Recording Excitation and Emission Spectra