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  4. Imaging tissue engineering scaffolds using multiphoton microscopy
 
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Imaging tissue engineering scaffolds using multiphoton microscopy

Journal
Microscopy Research and Technique
Journal Volume
71
Journal Issue
2
Pages
140-145
Date Issued
2008
Author(s)
Sun Y.
Tan H.-Y.
SUNG-JAN LIN  
HSUAN-SHU LEE  
Lin T.-Y.
Jee S.-H.
TAI-HORNG YOUNG  
Lo W.
Chen W.-L.
CHEN-YUAN DONG  
DOI
10.1002/jemt.20537
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-39449120129&doi=10.1002%2fjemt.20537&partnerID=40&md5=c9d8744accd0ada5326676f727da83c8
https://scholars.lib.ntu.edu.tw/handle/123456789/620742
Abstract
In this study, we combined two-photon autofluorescence and second harmonic generation imaging to investigate the three-dimensional microstructure and nonlinear optical properties of tissue engineering scaffolds. We focused on five different types of scaffold materials commonly used in tissue engineering, including: open-cell polylactic acid, polyglycolic acid, collagen composite scaffold, collagraft bone graft matrix strip, and nylon. By the use of multiphoton microscopy and a motorized stage, we obtained high resolution, spectrally resolved structural information of the scaffolds over large areas or in three-dimensions. Our results show that the nonlinear optical properties of the scaffolds will enable us to spectrally and morphologically distinguish the different types of scaffold materials investigated. We envision multiphoton microscopy to be a useful technique in tissue engineering applications in understanding the interplay between cultured cells and the scaffold materials. © 2007 Wiley-Liss, Inc.
Subjects
Autofluorescence; Multiphoton microscopy; Second harmonic generation; Tissue engineering scaffolds
Other Subjects
collagen; nylon; polyglycolic acid; polylactic acid; article; autofluorescence; bone graft; collagraft bone graft matrix strip; composite material; fluorescence microscopy; imaging system; multiphoton microscopy; nonlinear system; optics; priority journal; second harmonic generation imaging; structure analysis; three dimensional imaging; tissue engineering; Microscopy; Tissue Engineering; Tissue Scaffolds
Type
journal article

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