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http://dx.doi.org/10.14775/ksmpe.2017.16.6.095

Biocompatible Material Design Minimizing Hypertrophic Injury and Treatment Effects using a Mini-pig  

Kim, Yong-Hwan (Graduate school of convergence science, Pusan National University)
Kim, Jong-Woo (HWASEUNG EXWILL Co.,Ltd.)
Jin, Seong-Hun (Department of chemical engineering, Inha University)
Kim, I-Su (Su-Bio Co.,Ltd.)
Kang, Myung-Chang (Graduate school of convergence science, Pusan National University)
Publication Information
Journal of the Korean Society of Manufacturing Process Engineers / v.16, no.6, 2017 , pp. 95-100 More about this Journal
Abstract
Recently, biomedical-grade texture material gauze has often been used to treat wounds. At this time, it is difficult to remove scratches and pushed gauze; if you remove it with force, the tissue may separate and bleeding may occur again. In this study, we studied a method to apply medical-grade silicone material. Similar to the research result that hypertrophic wounds reduce the thickness of scar marks. Through mini-pig experiments, we evaluated the effects on scar treatment. The test results showed that the silicone cover layer applied to the wound site had a sealing effect on the wound area, skin temperature, and histopathological examination. In conclusion, gel treatment utilizing a biocompatible substance had the effect of minimizing hypertrophic scars.
Keywords
Hypertrophic Injury; Biocompatible Materials; Silicone; Vitamin E; Mini-pig;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
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