Paper
1 August 2017 Quasistatic in-depth local strain relaxation/creep rate mapping using phase-sensitive optical coherence tomography
Lev A. Matveev, Dmitry A. Karashtin, Aleksandr A. Sovetsky, Ekaterina V. Gubarkova, Marina A. Sirotkina, Alexander L. Matveyev, Dmitry V. Shabanov, Grigory V. Gelikonov, Valentin M. Gelikonov, Irina N. Druzhkova, Natalia D. Gladkova, Alex Vitkin, Elena V. Zagaynova, Vladimir Yu. Zaitsev
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Abstract
OCT-based local strain relaxation/creep evaluation is an emerging tool for tissue viscoelasticity characterization. We present a tool for 2D visualization of local strain relaxation and creep time/rate inside the tissue.
© (2017) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Lev A. Matveev, Dmitry A. Karashtin, Aleksandr A. Sovetsky, Ekaterina V. Gubarkova, Marina A. Sirotkina, Alexander L. Matveyev, Dmitry V. Shabanov, Grigory V. Gelikonov, Valentin M. Gelikonov, Irina N. Druzhkova, Natalia D. Gladkova, Alex Vitkin, Elena V. Zagaynova, and Vladimir Yu. Zaitsev "Quasistatic in-depth local strain relaxation/creep rate mapping using phase-sensitive optical coherence tomography", Proc. SPIE 10416, Optical Coherence Imaging Techniques and Imaging in Scattering Media II, 104160P (1 August 2017); https://doi.org/10.1117/12.2284467
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KEYWORDS
Optical coherence tomography

Tissues

Elastography

Liver

Strain analysis

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