Fujimoto Takahiro, Imai Yusuke, Tei Kazuyoku, Ito Shinobu, Kanazawa Hideko, Yamaguchi Shigeru
Clinic F, 6-6-1-4F Koujimachi, Chiyoda-ku, Tokyo 102-0083, JapanbTokai University, Faculty of Science and Technology, Kitakaname 4-1-1, Hiratsuka, Kanagawa 259-1292, JapandKeio University, Division of Physical Pharmaceutical Chemistry Faculty of Pharmacy.
Tokai University, Faculty of Science and Technology, Kitakaname 4-1-1, Hiratsuka, Kanagawa 259-1292, Japan.
J Biomed Opt. 2014;19(10):101502. doi: 10.1117/1.JBO.19.10.101502.
We investigate a technology to create a high temperature heat source on the tip surface of the glass fiber proposed for medical surgery applications. Using 4 to 6 W power level semiconductor lasers at a wavelength of 980 nm, a laser coupled fiber tip was preprocessed to contain a certain amount of titanium oxide powder with a depth of 100 μm from the tip surface so that the irradiated low laser energy could be perfectly absorbed to be transferred to thermal energy. Thus, the laser treatment can be performed without suffering from any optical characteristic of the material. A semiconductor laser was operated quasi-continuous wave mode pulse time duration of 180 ms and >95% of the laser energy was converted to thermal energy in the fiber tip. Based on two-color thermometry, by using a gated optical multichannel analyzer with a 0.25 m spectrometer in visible wavelength region, the temperature of the fiber tip was analyzed. The temperature of the heat source was measured to be in excess 3100 K.
我们研究了一种用于医疗手术应用的技术,该技术可在玻璃纤维尖端表面创建高温热源。使用波长为980 nm、功率水平为4至6 W的半导体激光器,对激光耦合光纤尖端进行预处理,使其从尖端表面起100μm深度内含有一定量的氧化钛粉末,以便照射的低激光能量能够被完美吸收并转化为热能。因此,可以在不考虑材料任何光学特性的情况下进行激光处理。半导体激光器以准连续波模式运行,脉冲持续时间为180 ms,且超过95%的激光能量在光纤尖端转化为热能。基于双色测温法,通过使用在可见波长区域配备0.25 m光谱仪的门控光学多通道分析仪,对光纤尖端的温度进行了分析。测量得到热源温度超过3100 K。