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Effect of interstitial low level laser therapy on tibial defect

机译:间质性低水平激光治疗对胫骨缺损的影响

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摘要

Tibial defect is very common musculoskeletal disorder which makes patient painful and uncomfortable. Many studies about bone regeneration tried to figure out fast bone healing on early phase. It is already known that low level laser therapy (LLLT) is very convenient and good for beginning of bone disorder. However, light scattering and absorption obstruct musculoskeletal therapy which need optimal photon energy delivery. This study has used an interstitial laser probe (ILP) to overcome the limitations of light penetration depth and scattering. Animals (mouse, C57BL/6) were divided into three groups: laser treated test group 1 (660 nm; power 10 mW; total energy 5 J) and test group 2 (660 nm; power 20 mW; total energy 10 J); and untreated control group. All animals were taken surgical operation to make tibial defect on right crest of tibia. The test groups were treated every 48 hours with ILP. Bone volume and X-ray attenuation coefficient were measured on 0, 14th and 28th day with u-CT after treatment and were used to evaluate effect of LLLT. Results show that bone volume of test groups has been improved more than control group. X-ray attenuation coefficients of each groups have slightly different. The results suggest that LLLT combined with ILP may affect on early phase of bone regeneration and may be used in various musculoskeletal disease in deep tissue layer.
机译:胫骨缺损是非常常见的肌肉骨骼疾病,使患者痛苦不堪。许多有关骨骼再生的研究试图找出早期骨骼的快速愈合。众所周知,低水平激光疗法(LLLT)非常方便,并且对骨病的发作非常有益。然而,光的散射和吸收阻碍了需要最佳光子能量传递的肌肉骨骼疗法。这项研究使用间隙激光探针(ILP)来克服光穿透深度和散射的局限性。将动物(小鼠,C57BL / 6)分成三组:激光处理的测试组1(660nm;功率10mW;总能量5J)和测试组2(660nm;功率20mW;总能量10J);和测试组2(660nm;功率20mW;总能量10J)。和未治疗的对照组。对所有动物进行外科手术以使胫骨右c产生胫骨缺损。测试组每48小时接受ILP治疗。在治疗后第0、14和28天用u-CT测量骨体积和X射线衰减系数,并用于评估LLLT的效果。结果表明,测试组的骨体积比对照组改善了更多。每组的X射线衰减系数略有不同。结果提示LLLT联合ILP可能影响骨骼再生的早期阶段,并可能用于深部组织层的各种肌肉骨骼疾病。

著录项

  • 来源
    《Mechanisms of photobiomodulation therapy XI》|2016年|96950D.1-96950D.4|共4页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Dept. of Biomedical engineering, Yonsei Univ., 1 Yonseidae-gil, Wonju, Gangwon-do, Korea 26493;

    Dept. of Biomedical engineering, Yonsei Univ., 1 Yonseidae-gil, Wonju, Gangwon-do, Korea 26493;

    Dept. of Biomedical engineering, Yonsei Univ., 1 Yonseidae-gil, Wonju, Gangwon-do, Korea 26493;

    Dept. of Biomedical engineering, Yonsei Univ., 1 Yonseidae-gil, Wonju, Gangwon-do, Korea 26493;

    Dept. of Biomedical engineering, Yonsei Univ., 1 Yonseidae-gil, Wonju, Gangwon-do, Korea 26493;

    Dept. of Biomedical engineering, Yonsei Univ., 1 Yonseidae-gil, Wonju, Gangwon-do, Korea 26493;

    Dept. of Biomedical engineering, Yonsei Univ., 1 Yonseidae-gil, Wonju, Gangwon-do, Korea 26493;

    Dept. of Biomedical engineering, Yonsei Univ., 1 Yonseidae-gil, Wonju, Gangwon-do, Korea 26493;

    Dept. of Biomedical engineering, Yonsei Univ., 1 Yonseidae-gil, Wonju, Gangwon-do, Korea 26493;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LLLT; laser; interstitial laser; low-level; bone; tibia; bone regeneration;

    机译:LLLT;激光;间隙激光低水平骨;胫骨骨再生;

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