Tiếng Việt

Ireland's first biological Brillouin microscope at Trinity College Dublin

467
2025-07-14 11:06:42
Xem bản dịch

A project at Trinity College Dublin is now hosting Ireland's first BioBrillouin microscope instrument, applying Brillouin spectroscopy to life sciences and medicine.
This should in particular enhance the College's research into cellular and tissue mechanics for the study of inflammation, cancer, and developmental biology.

Brillouin microscopy offers a route to optical investigation of a biological sample's mechanical and viscoelastic properties, via the phenomenon termed Brillouin light scattering (BLS).

 



Tissue analysis at Trinity College Dublin


This occurs when photons traveling through matter interact with phonons, compressive waves created in the same matter by external stimulus or compression - effectively a change in density caused by an acoustic wave.

Brillouin spectroscopy has already been put to use probing cell dynamics and testing the mechanical properties of tumors, yielding data about cells' physical properties than can be hard to obtain otherwise.

The ability to map and quantify the compressibility, viscoelasticity and the detailed mechanics of materials and biological tissues non-invasively enables researchers to assess the mechanical properties of live systems without interfering with them, monitoring a system and how it changes over time.

Working alongside instrument vendors CellSense Technologies, the Dublin project hopes to expand the application of BLS to a wider range of biological systems, exploiting how cellular and tissue mechanics can be potent regulators of cell disease, dysfunction and regeneration.

Clinical translation in ophthalmology

To that end the team at the Trinity Centre for Biomedical Engineering has also contributed to a new consensus report on Brillouin light scattering microscopy applied to biological materials, published in Nature Photonics.

The report is intended to improve the comparability of BLS studies by providing reporting recommendations for the measured parameters and detailing common artifacts. Given that most BLS studies of biological matter are still at proof-of-concept stages and use different, often self-built, spectrometers, a consensus statement is particularly timely to ensure unified advancement, noted the authors.

"Regardless of the field's trajectory, it is currently in a serendipitous position," noted the report. "While BLS is still in its infancy in regard to clinical translation, one area where it has transitioned to clinical applications is that of ophthalmology. Here it is used to identify the severity of pathologies such as keratoconus associated with spatial changes in corneal biomechanics."

The Trinity College Dublin team predicts that studying the mechanical properties of live systems will enable leaps forward in the understanding of how inflammation and cancer develop.

"However, it’s also important to understand its use is not limited to biomedical research and related applications," commented Michael Monaghan from the School of Engineering at Trinity. "It will help scientists push boundaries in fields such as materials science, ICT, energy storage, pharmaceuticals, and medical devices and diagnostics."

Source: optics.org

Đề xuất liên quan
  • STL's new 160 micron fiber optic can meet emerging network and pipeline capacity requirements

    STL unveiled its new 160 micron fiber optic for the first time at the 2023 India Mobile Conference Trade Show.The company claims that its 160 micron fiber optic was conceptualized and developed at its Center of Excellence in Maharashtra, India, and its cable capacity is three times that of traditional 250 micron fiber optic. STL Company.After the launch of 160 micron fiber at the 2023 India Mobile...

    2023-11-01
    Xem bản dịch
  • Scientists achieve extremely short laser pulses with a peak power of 6 terawatts

    RIKEN's two physicists have achieved extremely short laser pulses with a peak power of 6 terawatts (6 trillion watts) - roughly equivalent to the power generated by 6000 nuclear power plants. This achievement will contribute to the further development of attosecond lasers, for which three researchers were awarded the Nobel Prize in Physics in 2023. This study was published in the journal Nature Ph...

    2024-04-22
    Xem bản dịch
  • Polarization polariton topology pointing towards a new type of laser

    Semi light, partially matter quasi particles, known as excitons polaritons, can easily bypass obstacles and condense into a single coherent state - both of which are characteristics of topological insulators. Researchers from the United States and China have developed a new technology to manufacture microcavities from chloride based halide perovskites. They expect this work to lead to a new type o...

    2024-05-30
    Xem bản dịch
  • American scientists use light technology to control hypersonic jet engines

    According to the website "interesting engineering" on July 29th, a new study funded by the National Aeronautics and Space Administration (NASA) has revealed for the first time that the airflow in supersonic combustion jet engines can be controlled through optical sensors. This study was conducted by researchers from the School of Engineering and Applied Sciences at the University of Virginia.When ...

    2024-07-31
    Xem bản dịch
  • New Meltio robot unit provides large-scale line laser DED

    Meltio is an expert in the field of cost-effective linear laser metal deposition additive manufacturing technology (directed energy deposition, DED) and has launched the new Meltio Robot Cell, a turnkey metal additive manufacturing solution equipped with industrial robotic arms and the recently launched slicing software Meltio Space.The new hardware aligns with the vision of this Spanish company t...

    2023-09-22
    Xem bản dịch