JOSÉ FERNANDO ZVIETCOVICH ZEGARRA

JOSÉ FERNANDO ZVIETCOVICH ZEGARRA

JOSÉ FERNANDO ZVIETCOVICH ZEGARRA

Doctor en Filosofía (PhD) en Ingeniería Eléctrica, Universidad de Rochester

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Magíster en Procesamiento de Señales e Imágenes Digitales (PONTIFICIA UNIVERSIDAD CATOLICA DEL PERU)

Ingeniero Electrónico
DOCENTE ORDINARIO - ASOCIADO
Docente a tiempo completo (DTC)
Departamento Académico de Ingeniería - Sección Bioingeniería

Publicaciones

Se encontraron 63 publicaciones

McAuley, R.; Nolan, A.; Curatolo, A.; Alexandrov, S.; ZVIETCOVICH, J. F.; Varea-Bejar, A.; Marcos, S.; Leahy, M.; Birkenfeld, J.(2022). Co-axial acoustic-based optical coherence vibrometry probe for the quantification of resonance frequency modes in ocular tissue. Scientific Reports. Volumen: 12. (pp. 18834). Recuperado de: https://www.nature.com/articles/s41598-022-21978-8
ZVIETCOVICH, J. F.; Nair, A.; Singh, M.; Aglyamov, S.; Twa, M.; Larin, K.(2022). In vivo assessment of corneal biomechanics under a localized cross-linking treatment using confocal air-coupled optical coherence elastography. Biomedical Optics Express. Volumen: 13. (pp. 2644 - 2654). Recuperado de: https://opg.optica.org/boe/fulltext.cfm?uri=boe-13-5-2644&id=471048
Singh, M.; ZVIETCOVICH, J. F.; Larin, K.(2022). Introduction to optical coherence elastography: tutorial. ournal of the Optical Society of America A. Volumen: 39. (pp. 418 - 430). Recuperado de: https://opg.optica.org/josaa/fulltext.cfm?uri=josaa-39-3-418&id=469739
Nair, A.; Ambekar, Y.; Zevallos-Delgado, C.; Mekonnen, T.; Sun, M.; ZVIETCOVICH, J. F.; Singh, M.; Aglyamov, S.; Koch, M.; Scarcelli, G.; Espana, E.; Larin, K.(2022). Multiple Optical Elastography Techniques Reveal the Regulation of Corneal Stiffness by Collagen XII. Investigative Ophthalmology & Visual Science. Volumen: 63. (pp. 1 - 24). Recuperado de: https://iovs.arvojournals.org/article.aspx?articleid=2783860
ZVIETCOVICH, J. F.(2022). Viscoelastic Characterization of in vivo Human Dermis Using High-Frequency Ultrasonic Crawling Wave Elastography. IEEE Access. Volumen: 10. (pp. 40571 - 40578). Recuperado de: https://ieeexplore.ieee.org/abstract/document/9755141
SAAVEDRA, A. C.; ARROYO, J. J.; FLORES, G. A.; ZVIETCOVICH, J. F.; CASTAÑEDA, B.; LAVARELLO, R. J.(2022). Viscoelastic characterization of in vivo human dermis using high-frequency ultrasonic crawling wave elastography. IEEE Access. Volumen: 10. (pp. 40571 - 40578). Recuperado de: https://ieeexplore.ieee.org/abstract/document/9755141
SAAVEDRA, A. C.; ARROYO, J. J.; FLORES, G. A.; ZVIETCOVICH, J. F.; CASTAÑEDA, B.; LAVARELLO, R. J.(2022). Viscoelastic characterization of in vivo human dermis using high-frequency ultrasonic crawling wave elastography. IEEE Access. Volumen: 10. (pp. 40571 - 40578). Recuperado de: https://ieeexplore.ieee.org/document/9755141
FLORES, G. A.; ORMACHEA, J.; ROMERO, S. E.; ZVIETCOVICH, J. F.; Parker, K. J.; CASTAÑEDA, B.(2020). Experimental study to evaluate the generation of reverberant shear wave fields (R-SWF) in homogenous media. En 2020 International Ultrasonics Symposium. IEEE Xplore. Recuperado de: 10.1109/IUS46767.2020.9251338