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  4. Prediction of heat-induced collagen shrinkage by use of second harmonic generation microscopy
 
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Prediction of heat-induced collagen shrinkage by use of second harmonic generation microscopy

Journal
Journal of biomedical optics
Journal Volume
11
Journal Issue
3
Date Issued
2006
Author(s)
SUNG-JAN LIN  
Lo, Wen
Tan, Hsin-Yuan
Chan, Jung-Yi
Chen, Wei-Liang
Wang, Shiou-Han
Sun, Yen
WEI-CHOU LIN  
Chen, Jau-Shiuh
Hsu, Chih-Jung
Tjiu, Jeng-Wei
Yu, Hsin-Su
Jee, Shiou-Hwa
Dong, Chen-Yuan
DOI
10.1117/1.2209959
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/636766
URL
https://api.elsevier.com/content/abstract/scopus_id/33748445740
Abstract
Collagen shrinkage associated with denaturation from thermal treatment has a number of important clinical applications. However, individualized treatment is hindered by the lack of reliable noninvasive methods to monitor the process of collagen denaturation. We investigate the serial changes of collagen denaturation from thermal treatment of rat tail tendons at 58 degrees C by use of second harmonic generation (SHG) microscopy. We find that rat tail tendon shrinks progressively from 0 to 9 min of thermal treatment, and remains unchanged in length upon further thermal treatment. The SHG intensity also decreases from 0 to 9 min of thermal treatment and becomes barely detectable from further thermal treatment. Collagen shrinkage and the SHG intensity are well correlated in a linear model. In addition, SHG imaging reveals a tiger-tail-like pattern of collagen denaturation. The bands of denatured collagen progressively widen from increased thermal treatment and completely replace the adjacent bands of normal collagen after 9 min of thermal treatment. Our results show that collagen denaturation in rat tail tendon from thermal treatment is inhomogeneous, and that SHG intensity can be used to predict the degree of thermally induced collagen shrinkage. With additional development, this approach has the potential to be used in biomedical applications.
Subjects
Collagen | Denaturation | Second harmonic generation | Shrinkage | Thermal
Type
journal article

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