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Depth-resolved dual-beamlet vibrometry based on Fourier domain low coherence interferometry.


ABSTRACT: We present an optical vibrometer based on delay-encoded, dual-beamlet phase-sensitive Fourier domain interferometric system to provide depth-resolved subnanometer scale vibration information from scattering biological specimens. System characterization, calibration, and preliminary vibrometry with biological specimens were performed. The proposed system has the potential to provide both amplitude and direction of vibration of tissue microstructures on a single two-dimensional plane.

SUBMITTER: Subhash HM 

PROVIDER: S-EPMC3584824 | biostudies-other | 2013 Mar

REPOSITORIES: biostudies-other

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Depth-resolved dual-beamlet vibrometry based on Fourier domain low coherence interferometry.

Subhash Hrebesh M HM   Choudhury Niloy N   Chen Fangyi F   Wang Ruikang K RK   Jacques Steven L SL   Nuttall Alfred L AL  

Journal of biomedical optics 20130301 3


We present an optical vibrometer based on delay-encoded, dual-beamlet phase-sensitive Fourier domain interferometric system to provide depth-resolved subnanometer scale vibration information from scattering biological specimens. System characterization, calibration, and preliminary vibrometry with biological specimens were performed. The proposed system has the potential to provide both amplitude and direction of vibration of tissue microstructures on a single two-dimensional plane. ...[more]

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