Investigation on Visibility of Drilled Hole in Laser Micro-drilling of Multi-layered Artificial Skin

Y. Okamoto, Kiichi Asako, N. Maeda, A. Okada, S. Minagi, Qiuyue Pan, Keiji Jin, G. Nishigawa
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引用次数: 2

Abstract

A multi-layered artificial skin is mainly consisted of three layers of silicone elastomer, print paper, and resin plate. Sealing of facial defects with the multi-layered artificial skin causes perspired water from the surface of missing parts, which results in insanitary conditions to the skin surface. Therefore, the laser micro-drilling using nanosecond and picosecond pulsed laser was investigated to provide the breathability for multi-layered artificial skin without human eye’s recognition of drilled holes, which can satisfy both the breathability and aesthetic problems. The visibility of drilled hole was affected by the pitch distance of drilled holes, and its visibility decreased with increasing the pitch distance. A small color difference measured using a colorimeter led to the low visibility, and laser micro-drilling with small color difference is effective to obtain the breathable multi-layered artificial skin with low visibility of drilled holes, which can improve the breathability for the multi-layered artificial skin.
激光微钻多层人造皮肤钻孔可见性的研究
多层人造皮肤主要由有机硅弹性体、印刷纸、树脂板三层材料组成。多层人工皮肤对面部缺损的密封,会使缺失部位表面排汗,导致皮肤表面不卫生。为此,研究利用纳秒和皮秒脉冲激光进行激光微钻孔,为多层人造皮肤提供不需要人眼识别的透气性,同时满足透气性和美观性问题。钻孔能见度受钻孔距的影响,随钻孔距的增大而降低。色差小导致能见度低,色差小的激光微钻孔可有效获得钻孔能见度低的透气性多层人工皮肤,提高了多层人工皮肤的透气性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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