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fluorescence White Papers
Multi-Bandpass Filters for Fluorescence
Learn how multi-bandpass filters combined with multiple LEDs can enable versatile and compact fluorescence instrumentation.
Laser Light Engine Output Stability
In this white paper, Dr. Iain Johnson, Lumencor’s Director of Technical Support, tests Lumencor’s laser-based CELESTA Light Engine for consistency, power, and stability using continuous wave illumination, pulsed illumination, and time-lapse imaging....
Spectral, Spatial and Temporal Optimization of Solid-State Light Engine Output
Specifications for illumination systems for biomedical imaging and industrial metrology generally converge on spectral, spatial and temporal light output characteristics. This article describes some of the ways in which solid-state Light Engines...
Is a DIY Microscope for You?
For some advanced microscopy and nanoscopy techniques it becomes necessary to modify existing instrumentation or build an instrument from scratch. This article helps readers determine whether a do-it-yourself (DIY) microscope is the appropriate...
A Comparison of Some of the Key Technologies and Characteristics in CCD and CMOS Sensors
To assist in choosing the right technology for an application, this paper covers: • Historical background • Architecture • Improvements • Binning • Fill factor • Full well depth and capacity • Dynamic range • Frontside and backside illumination •...
Fluorescence Microscopy Technique Provides New Views of Biological Processes
Introduction to the technique of MicroMirror TIRF (total internal reflection fluorescence) microscopy. The MicroMirror TIRF microscopy technique offers significant signal-to-noise ratio improvements compared to dichroic based TIRF microscopy when...
Camera-based Products - Benefits of an ISO13485:2016-Certified Supplier
What advantages does a supplier certified according to the medical device standard ISO 13485:2016 offer to a manufacturer of camera-based medical products? Our White Paper describes the requirements of this standard, presents various ways in which...
Modern CMOS Sensors and Their Use in Fluorescence-Based Applications
Dr. Felix Asche, Product Manager at Basler, outlines possibilities and application areas of modern CMOS sensor technology in medicine and science. System manufacturers whose devices are equipped with CCD sensors and who are therefore increasingly...
Working with your benchtop spectrometer at high and low sample cuvette temperatures
Spectroscopy labs are home to spectrometers of varying types: UV-Vis-NIR absorbance, fluorescence, and circular dichroism, for example, all sitting on benches at room temperature. When a scientist wants to measure spectral properties of a sample at...
Combining the MicroTime 200 with the Bruker BioScope Catalyst AFM for Multiparameter Cell Imaging
Combining atomic force microscopy (AFM) with single-molecule-sensitive fluorescence microscopy grants fascinating insights into the structure and interactions in cells. The AFM part reveals structural information of macromolecular complexes, while...
Promoted Content
Fluorescence Lifetime Imaging Application Simplified... With the pco.flim
The pco.flim whitepaper gives an introduction in fluorescence lifetime imaging, if it is done in the frequency domain, with all the required background information. It is thought to refresh the knowledge about photo luminescence and how lifetime...
Promoted by: PCO-TECH Inc.
Time-Lapse Imaging with Lamp and LED – Stability vs Repeatability
Advancements in LED technology today enable LEDs to provide a compelling alternative to lamps for fluorescence microscopy illumination and have become increasingly popular. This article discusses the differences in stability between Lamps and LEDs,...
(12 results found)
April 2024
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