A broad range
of applications!

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Life Sciences

Research

Label-free, noncontact mapping of micromechanical properties in living cells and tissues.

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Pharmaceuticals

Drug development

Accelerated new drug development by non-invasive assessment of drug efficacy in the volume of living cells.

Production

Ensures quality by monitoring relevant physical properties such as crystallinity and viscosity in drug substances.

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Medical Diagnostics

Chronic disease diagnosis
Enables early detection of chronic diseases by analyzing cellular and tissue mechanics.
Diseases progress monit
Enables early detection of chronic diseases by analyzing cellular and tissue mechanics.
Industrial-production-lines

Industrial production lines

Production monitoring
Ensures repeatability and quality through in-line inspections of products micromechanical properties.
Quality assessment

Verifies final product standards by ensuring texture and stiffness requirements are met.

Appendix

Medical Diagnostics

Brillouin spectroscopy offers a revolutionary approach to non-invasively assess tissue and cellular biomechanics.

Its ability to differentiate between healthy and pathological relies on unique mechanical contrast.

This paves the way to new possibilities for early disease detection, including cancer, keratoconus, and atherosclerosis.

Life Sciences

All-optical Brillouin spectroscopy provides a non-destructive and label-free assessment of the mechanical properties of biological samples at the microscopic scale in 3D.

It enables researchers to study cellular viscoelastic properties in vivo, which is crucial for understanding processes like cell differentiation and migration, tissue development, and how cells respond to physical forces and their environment

Material Sciences

The intrinsic viscoelastic properties of materials are critical for various industrial applications, including manufacturing, construction, food packaging, cosmetics, and beyond.

Brillouin spectroscopy provides a transformative, non-contact, and all-optical solution for probing these properties with unprecedented precision.

It enables the development of new materials, enhances process automation and ensures product consistency.