Quantitative second-harmonic generation imaging of tissue damage from environmental-scanning electron microscopy

Woowon Lee, Kimani C Toussaint

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

We quantitatively evaluate changes of collagenous tissue due to beam exposure in an environmental-scanning electron microscope. Quantitative second-harmonic generation microscopy is used to image and assess selected regions before and after exposure.

Original languageEnglish (US)
Title of host publicationFrontiers in Optics, FIO 2018
PublisherOSA - The Optical Society
VolumePart F114-FIO 2018
ISBN (Electronic)9781557528209
DOIs
StatePublished - Jan 1 2018
EventFrontiers in Optics, FIO 2018 - Washington, DC, United States
Duration: Sep 16 2018Sep 20 2018

Other

OtherFrontiers in Optics, FIO 2018
CountryUnited States
CityWashington, DC
Period9/16/189/20/18

Fingerprint

Harmonic generation
Microscopic examination
Electron microscopes
Tissue
Scanning
Imaging techniques
Scanning electron microscopy

ASJC Scopus subject areas

  • Electronic, Optical and Magnetic Materials
  • Mechanics of Materials

Cite this

Quantitative second-harmonic generation imaging of tissue damage from environmental-scanning electron microscopy. / Lee, Woowon; Toussaint, Kimani C.

Frontiers in Optics, FIO 2018. Vol. Part F114-FIO 2018 OSA - The Optical Society, 2018.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Lee, W & Toussaint, KC 2018, Quantitative second-harmonic generation imaging of tissue damage from environmental-scanning electron microscopy. in Frontiers in Optics, FIO 2018. vol. Part F114-FIO 2018, OSA - The Optical Society, Frontiers in Optics, FIO 2018, Washington, DC, United States, 9/16/18. https://doi.org/10.1364/FIO.2018.JTu2A.119
Lee, Woowon ; Toussaint, Kimani C. / Quantitative second-harmonic generation imaging of tissue damage from environmental-scanning electron microscopy. Frontiers in Optics, FIO 2018. Vol. Part F114-FIO 2018 OSA - The Optical Society, 2018.
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