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体外激光辐照诱导骨髓中的光学和热场。

Optical and thermal fields induced in the bone marrow by external laser irradiation.

机构信息

Institute of Photon Technologies, Federal Scientific Research Centre "Crystallography and Photonics", Russian Academy of Sciences, 2 Pionerskaya St., Moscow, 108840, Troitsk, Russia.

N.F. Gamaleya National Research Center of Epidemiology and Microbiology, Ministry of Health of the Russian Federation, 18 Gamaleya St., Moscow, 123098, Russia.

出版信息

Lasers Med Sci. 2022 Mar;37(2):1245-1253. doi: 10.1007/s10103-021-03380-4. Epub 2021 Aug 4.

Abstract

In regenerative medicine, the problem of growing mesenchymal stem cells from the bone marrow often arises. In such cases is important that the number of initial cells was large enough and their proliferative activity was high. We believe that this problem can be solved by short-term heating of local areas of the bone marrow in vivo with laser radiation. In this regard, it is of interest to study the optical and temperature fields induced inside the tubular bone under external laser irradiation. In this work, we obtained experimental data on the spatial distribution of temperature in the bone marrow of the rat femur in vitro under external exposure to laser radiation with wavelengths of 970 and 1940 nm. Radiation delivery was carried out using an optical fiber which tip contacted the surface of the femur bone. A thin thermocouple was used to measure the temperature in a local area of the bone marrow. By moving the optical fiber tip discretely along the longitudinal axis of the bone, and the thermocouple in the perpendicular direction, the spatial temperature distributions in dynamics were measured. Similarly, the spatial distributions of the laser radiation intensity were measured by replacing thermocouple with optical fiber probe. A thermal camera was used to control the temperature of the bone surface near the tip of the fiber. It was shown that the marrow could be heated from the outside by about 5-10 °C during 10 s without significant overheating of the bone tissue. The data obtained make it possible to estimate the volume of the bone marrow heated by the laser to a predetermined temperature and to make a reasonable choice of laser exposure modes to stimulate the proliferative activity of bone marrow mesenchymal stem cells in vivo.

摘要

在再生医学中,经常会出现从骨髓中培养间充质干细胞的问题。在这种情况下,重要的是初始细胞的数量足够大,并且它们的增殖活性很高。我们认为,通过对体内骨髓的局部区域进行短期激光辐射加热,可以解决这个问题。在这方面,研究在外部激光照射下管状骨内部诱导的光场和温度场很有趣。在这项工作中,我们获得了在外部暴露于波长为 970nm 和 1940nm 的激光辐射下,体外大鼠股骨骨髓中温度的空间分布的实验数据。辐射传递是通过与股骨表面接触的光纤尖端进行的。使用薄热电偶测量骨髓局部区域的温度。通过离散地沿骨的纵轴移动光纤尖端,并沿垂直方向移动热电偶,可以测量动态的空间温度分布。同样,通过用光纤探头代替热电偶来测量激光辐射强度的空间分布。使用热像仪控制光纤尖端附近骨表面的温度。结果表明,在 10 秒内,可以将骨髓从外部加热约 5-10°C,而不会导致骨组织过热。所获得的数据使得可以估计通过激光加热到预定温度的骨髓体积,并合理选择激光暴露模式以刺激体内骨髓间充质干细胞的增殖活性。

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