Laser Application

Laser application refers to the use of coherent, amplified light to control, measure, or modify biological materials and engineered systems. By selecting the wavelength, intensity, and pulse duration, researchers can focus energy on a target to produce photothermal, photochemical, or mechanical effects while limiting exposure to surrounding regions. In bioengineering, lasers support high-resolution microscopy, tissue processing, microfabrication, cell manipulation, and light-based therapies. These capabilities enable precise analysis of biological structures, construction of biomaterials and microdevices, and development of minimally invasive approaches for diagnosis, treatment, and regenerative medicine.

Laser Application - Related Videos

Research

JoVE Journal - Engineering

Fabrication of Polymer Microspheres for Optical Resonator and Laser Applications

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Cited by 3 •

2017

Protocols for the synthesis of microspheres from polymers, the manipulation of microspheres, and micro-photoluminescence measurements are presented.

Fabrication and Application of Rose Bengal-chitosan Films in Laser Tissue Repair

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Cited by 23 •

2012

Sutures are usually needed to repair tissue during surgical procedures. However, their application can be problematic as they are invasive and may damage tissue. The fabrication and application methods of a novel tissue adhesive are here reported. This adhesive film is laser-activated and does not require the use of sutures.

Research

JoVE Journal - Engineering
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Measuring Spray Droplet Size from Agricultural Nozzles Using Laser Diffraction

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Cited by 30 •

2016

We present protocols to be used in the measurement of spray droplet size from agricultural nozzles used in both aerial and ground based agrochemical applications. These methods presented were developed to provide consistent and repeatable droplet size data both inter- and intra-laboratory, when using laser diffraction systems.

Laser Microdissection for Species-Agnostic Single-Tissue Applications

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Cited by 5 •

2022

A protocol is described that uses laser microdissection to isolate individual nematode tissues for RNA-sequencing. The protocol does not require species-specific genetic toolkits, allowing gene expression profiles to be compared between different species at the level of single-tissue samples.

Application of Laser Micro-irradiation for Examination of Single and Double Strand Break Repair in Mammalian Cells

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Cited by 30 •

2017

Confocal fluorescence microscopy and laser micro-irradiation offer tools for inducing DNA damage and monitoring the response of DNA repair proteins in selected sub-nuclear areas. This technique has significantly advanced our knowledge of damage detection, signaling, and recruitment. This manuscript demonstrates these technologies to examine single and double strand break repair.

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