• Opto-Electronic Engineering
  • Vol. 39, Issue 4, 121 (2012)
YANG Ji-chun1、*, LI Ying-xin1, LIU Tie-gen2, MA Wen-jiang1, MA Hui1, and ZHANG Hai-bo1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3969/j.issn.1003-501x.2012.04.021 Cite this Article
    YANG Ji-chun, LI Ying-xin, LIU Tie-gen, MA Wen-jiang, MA Hui, ZHANG Hai-bo. Effects of Low Intensity Laser Irradiation with Combination of 635 and 808 Nanometers on Surgery Wound Healing[J]. Opto-Electronic Engineering, 2012, 39(4): 121 Copy Citation Text show less
    References

    [1] Mester E,Spiry T,Szende B,et al. Effect of laser rays on wound healing [J]. Am J Surg(S0037-945X),1971,122(4):532-535.

    [2] Mester E,Korenyi-Both A,Spiry T,et al. The effect of laser irradiation on the regeneration of muscle fibers (preliminary report) [J]. Z Exp Chir(S0323-5580),1975,8(4):258-262.

    [3] LI Cheng,LI Yin-xing. Effect of low level laser biostimulation in wound healing [J]. Yiliao Weisheng Zhuangbei,2007, 28(10):26-28.

    [4] Tiina I Karu. Multiple Roles of Cytochrome c Oxidase in Mammalian Cells Under Action of Red and IR-A Radiation [J]. IUBMB Life(S1521-6543),2010,62(8):607–610.

    [5] Kujawa J,Zavodnik L,Zavodnik I,et al. Effect of low-intensity (3.75–25 J/cm2) near-infrared (810 nm) laser radiation on red blood cell ATPase activities and membrane structure [J]. J. Clin. Laser. Med. Surg(S1044-5471),2004,22:11–17.

    [6] Hawkins D H,Abrahamse H. The role of laser fluence in cell viability,proliferation,and membrane integrity of wounded human skin fibroblasts following helium-neon laser irradiation [J]. Lasers. Surg. Med(S0196-8092),2006,38:74–83.

    [7] YU W,Naim J O,McGowan M,et al. Photomodulation of oxidative metabolism and electron chain enzymes in rat liver mitochondria [J]. Photochem Photobiol(S0031-8655),1997,66:866–871.

    [8] Kassak P,Przygodzki T,Habodaszova D,et al. Mitochondrial alterations induced by 532 nm laser irradiation [J]. Gen. Physiol Biophys(S0231-5882),2005,24:209–220.

    [9] Bolton P,Young S,Dyson M. The direct effect of 860 nm light on cell proliferation and on succinic dehydrogenase activity of human fibroblasts in vitro [J]. Journal of Cutaneous Laser Therapy(S1462-883X),1995,7:55–60.

    [10] DUAN R,LIU T C,LI Y,et al. Signal transduction pathways involved in low intensity He-Ne laser induced respiratory burst in bovine neutrophils:a potential mechanism of low intensity laser biostimulation [J]. Lasers Surg Med(S0196-8092),2001, 29(2):174-178.

    [11] Duan R,Zhu L,Liu T C,et al. Light emitting diode irradiation protect against the amyloid beta 25 - 35 induced apoptosis of PC12 cell in vitro [J]. Lasers Surg Med(S0196-8092),2003,33:199-203.

    [12] Liu T C,Jiao J L,Xu X Y,et al. Photobiomodulation: Phenomenology and its mechanism [J]. Pro of SPIE(S0277-786X),2004, 5630:185-191.

    [13] Karu T I. The Science of Low-Power Laser Therapy [M]. Amsterdam:Gordon and Breach,1998:226.

    [14] Karu T I,Afanasyeva N I,Kolyakov S F,et al. Changes in absorbance of monolayer of living cells induced by laser radiation at 633,670,and 820 nm [J]. IEEE. J. Set. Top. Quantum Electron(S1077-260X),2001,7:982–988.

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    [1] Chen Hongli, Wang Hong, Wang Chao, Yin Huijuan, Jin Wendong, Mu Zhiming, Li Yingxin. Research of Oxidative Stress Reaction Induced by 635nm/808nm Double Wavelength Low Level Laser Therapy on CCC-ESF[J]. Laser & Optoelectronics Progress, 2015, 52(8): 81703

    YANG Ji-chun, LI Ying-xin, LIU Tie-gen, MA Wen-jiang, MA Hui, ZHANG Hai-bo. Effects of Low Intensity Laser Irradiation with Combination of 635 and 808 Nanometers on Surgery Wound Healing[J]. Opto-Electronic Engineering, 2012, 39(4): 121
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