Author:
Pruidze Paata,Chayleva Elena,Weninger Wolfgang J.,Elsayad Kareem
Abstract
Brillouin light scattering (BLS) spectroscopy is a label-free method of measuring the GHz-frequency viscoelastic properties. The measured longitudinal modulus is acutely sensitive to the degree of hydration, crosslinking, and temperature, which can be indicative of tissue health. As such, performingin situmeasurements on humans is particularly desirable for exploring potential clinical translation, however, is not possible with existing designs which are coupled to bench-top microscopes. Here we introduce a robust fiber coupled hand-held BLS probe and demonstrate its reliability for measuring excised human tissue. We verify its accuracy using confocal BLS microscopy and further show that it is possible to distinguish veins, arteries, nerves and muscles based on their BLS-measured viscoelasticity. This provides a necessary first step towardsin situclinical BLS viscoelasticity studies of human tissue.
Subject
Atomic and Molecular Physics, and Optics
Cited by
5 articles.
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