Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/90906
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Title: A novel bespoke hypertrophic scar treatment : actualizing hybrid pressure and silicone therapies with 3D printing and scanning
Authors: Chow, L 
Yick, KL 
Sun, Y 
Leung, MSH 
Kwan, MY 
Ng, SP 
Yu, A 
Yip, J 
Chan, YF
Issue Date: 2021
Source: International journal of bioprinting, 2021, v. 7, no. 1, 327, p. 123-134
Abstract: The treatment of hypertrophic scars (HSs) is considered to be the most challenging task in wound rehabilitation. Conventional silicone sheet therapy has a positive effect on the healing process of HSs. However, the dimensions of the silicone sheet are typically larger than those of the HS itself which may negatively impact the healthy skin that surrounds the HS. Furthermore, the debonding and displacement of the silicone sheet from the skin are critical problems that affect treatment compliance. Herein, we propose a bespoke HS treatment design that integrates pressure sleeve with a silicone sheet and use of silicone gel using a workflow of three-dimensional (3D) printing, 3D scanning and computer-aided design, and manufacturing software. A finite element analysis (FEA) is used to optimize the control of the pressure distribution and investigate the effects of the silicone elastomer. The result shows that the silicone elastomer increases the amount of exerted pressure on the HS and minimizes unnecessary pressure to other parts of the wrist. Based on this treatment design, a silicone elastomer that perfectly conforms to an HS is printed and attached onto a customized pressure sleeve. Most importantly, unlimited scar treating gel can be applied as the means to optimize treatment of HSs while the silicone sheet is firmly affixed and secured by the pressure sleeve.
Keywords: 3D-printing
3D-scanning
Finite element analysis
Hypertrophic scars
Surgical scars
Publisher: WHIOCE
Journal: International journal of bioprinting 
ISSN: 2424-7723
EISSN: 2424-8002
DOI: 10.18063/ijb.v7i1.327
Rights: © 2021 Chow, et al. This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International License (http://creativecommons.org/licenses/by-nc/4.0/), permitting all non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
The following publication Chow L, Yick KL, Sun Y, Leung MSH, Kwan MY, Ng SP, Yu A, Yip J, Chan YF. A Novel Bespoke Hypertrophic Scar Treatment: Actualizing Hybrid Pressure and Silicone Therapies with 3D Printing and Scanning. Int J Bioprint. 2021 Jan 25;7(1):327 is available at https://doi.org/10.18063/ijb.v7i1.327.
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