中国激光, 2017, 44 (4): 0407001, 网络出版: 2017-04-10   

离体生物组织激光焊接特性实验研究

Laser Welding Characteristics of Biological Tissues in vitro
作者单位
南京理工大学材料科学与工程学院, 江苏 南京 210094
引用该论文

黄俊, 李聪, 王克鸿, 李乐乐. 离体生物组织激光焊接特性实验研究[J]. 中国激光, 2017, 44(4): 0407001.

Huang Jun, Li Cong, Wang Kehong, Li Lele. Laser Welding Characteristics of Biological Tissues in vitro[J]. Chinese Journal of Lasers, 2017, 44(4): 0407001.

参考文献

[1] Nourbakhsh M S, Khosroshahi M E. An in-vitro investigation of skin tissue soldering using gold nanoshells and diode laser[J]. Lasers in Medical Science, 2011, 26(1): 49-55.

[2] Wang S, Zhao J, Lui H, et al. Monte Carlo simulation of near infrared autofluorescence measurements of in vivo skin[J]. Journal of Photochemistry & Photobiology B, 2011, 105(3): 183-189.

[3] 潘振华, 李迎新, 王 兴, 等. 3种剂量弱激光对大鼠皮肤创伤愈合的影响[J]. 中国激光, 2010, 37(2): 599-604.

    Pan Zhenhua, Li Yingxin, Wang Xing, et al. Effects of low-level laser therapy on cutaneous wound healings with three doses[J]. Chinese J Lasers, 2010, 37(2): 599-604.

[4] 胡黎明, 刘 云, 芦志华, 等. 将980 nm/1064 nm双波长半导体激光皮肤焊接[J]. 中国激光, 2011, 38(4): 0404001.

    Hu Liming, Liu Yun, Lu Zhihua, et al. Skin welding with a combination of 980 nm and 1064 nm lasers[J]. Chinese J Lasers, 2011, 38(4): 0404001.

[5] Dadpay M, Sharifian Z, Bayat M, et al. Effects of pulsed infrared low level-laser irradiation on open skin wound healing of healthy and streptozotocin-induced diabetic rats by biomechanical evaluation[J]. Journal of Photochemistry & Photobiology B, 2012, 111(11): 1-8.

[6] Alfano R R, Sriramoju V. Method for pocosecond and femtosecond laser tissue welding: US8974444B2[P]. 2015-03-10.

[7] Babak N, Thomas E, Murphy, et al. Simulation of laser propagation through a three-layer human skin model in the spectral range from 1000 to 1900 nm[J]. Journal of Biomedical Optics, 2014, 19(7): 075003.

[8] Guan K W, Jiang Y Q, Sun C S, et al. A two-layer model of laser interaction with skin: A photothermal effect analysis[J]. Optics & Laser Technology, 2011, 43(3): 425-429.

[9] Rebecca V, Noojin G D, Harbert C A, et al. Porcine skin damage thresholds for 0.6 to 9.5 cm beam diameters from 1070-nm continuous-wave infrared laser radiation[J]. Journal of Biomedical Optics, 2014, 19(3): 35007-35009.

[10] Rossi F, Matteini P, Esposito G, et al. In vivo experimental study on laser welded ICG-loaded chitosan patches for vessel repair[C]. SPIE, 2011, 7883: 78833M.

[11] Tabakogˇlu H O, Topalogu N M. The effect of irradiance level in 980-nm diode laser skin welding[J]. Photomedicine & Laser Surgery, 2010, 28(4): 453-458.

[12] Halder R H, Katz A, Savage H, et al. Laser skin welding using water absorption and heat management[C]. SPIE, 2005, 5686: 253-255.

[13] 卢天健, 徐 峰. 皮肤的力学性能概述[J]. 力学进展, 2008, 38(4): 393-426.

    Lu Tianjian, Xu Feng. Mechanical properties of skin: A review[J]. Advances in Mechanics, 2008, 38(4): 393-426.

黄俊, 李聪, 王克鸿, 李乐乐. 离体生物组织激光焊接特性实验研究[J]. 中国激光, 2017, 44(4): 0407001. Huang Jun, Li Cong, Wang Kehong, Li Lele. Laser Welding Characteristics of Biological Tissues in vitro[J]. Chinese Journal of Lasers, 2017, 44(4): 0407001.

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