Led Light Source

An LED light source is a semiconductor device that converts electrical energy into visible or near-infrared light, providing a compact and controllable tool for scientific experiments. When current passes through the diode, electrons and holes recombine at a p-n junction and release photons, while the semiconductor composition determines the emitted wavelength and drive conditions control intensity. In neuroscience, LEDs can deliver precisely timed light to illuminate samples, stimulate light-sensitive neural systems, or activate genetically encoded optogenetic tools. Their rapid switching, low heat output, and compatibility with fiber optics support studies of neural circuits, sensory processing, and behavior.

Led Light Source - Related Videos

Research

JoVE Journal - Engineering
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Flame Experiments at the Advanced Light Source: New Insights into Soot Formation Processes

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Cited by 4 •

2014

Gas sampling from laboratory-scale flames with online analysis of all species by mass spectrometry is a powerful method to investigate the complex mixture of chemical compounds occurring during combustion processes. Coupled with tunable soft ionization via synchrotron-generated vacuum-ultraviolet radiation, this technique provides isomer-resolved information and potentially fragment-free mass spectra.

Research

JoVE Journal - Biochemistry
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Sample Preparation and Transfer Protocol for In-Vacuum Long-Wavelength Crystallography on Beamline I23 at Diamond Light Source

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Cited by 2 •

2021

Here, we present a protocol for cryogenic sample preparation and transfer of crystals into the vacuum endstation on beamline I23 at Diamond Light Source, for long-wavelength macromolecular X-ray crystallography experiments.

Research

JoVE Journal - Biochemistry
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Fixed Target Serial Data Collection at Diamond Light Source

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Cited by 22 •

2021

We present a comprehensive guide to fixed target sample preparation, data collection, and data processing for serial synchrotron crystallography at Diamond beamline I24.

Research

JoVE Journal - Bioengineering

Investigation of a Blue Light LED Device to Suppress Wound Pathogens Using a Collagen-Based Synthetic Skin Model

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2026

A 405 nm blue light LED device demonstrates antimicrobial efficacy against a broad range of wound pathogens when evaluated on a collagen-based synthetic skin model. This simplified in vitro approach offers a reproducible and ethically viable alternative for early-phase evaluation of light-based antimicrobial therapies.

Research

JoVE Journal - Chemistry
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Achieving Efficient Fragment Screening at XChem Facility at Diamond Light Source

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Cited by 78 •

2021

This paper describes the complete XChem process for crystal-based fragment screening, starting from applying for access and all subsequent steps to data dissemination.

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