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Photothermal effect of infrared lasers on ex vivo lamb brain tissues

机译:红外激光在离体羊肉组织上的光热效应

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Here, the most suitable infrared laser for a neurosurgery operation is suggested, among 1940-nm thulium fiber, 1470-nm diode, 1070-nm ytterbium fiber and 980-nm diode lasers. Cortical and subcortical ex-vivo lamb brain tissues are exposed to the laser light with the combinations of some laser parameters such as output power, energy density, operation mode (continuous and pulsed-modulated) and operation time. In this way, the greatest ablation efficiency associated with the best neurosurgical laser type can be defined. The research can be divided into two parts; pre-dosimetry and dosimetry studies. The former is used to determine safe operation zones for the dosimetry study by defining coagulation and carbonization onset times for each of the brain tissues. The latter is the main part of this research, and both tissues are exposed to laser irradiation with various energy density levels associated with the output power and operation time. In addition, photo-thermal effects are compared for two laser operation modes, and then coagulation and ablation diameters to calculate the ablation efficiency are measured under a light microscope. Consequently, results are compared graphically and statistically, and it is found that thulium and 1470-nm diode lasers can be utilized as subcortical and cortical tissue ablator devices, respectively.
机译:这里,提出了一种用于神经外科手术的最合适的红外激光,在1940纳米纤维,1470nm二极管,1070-nm镱纤维和980nm二极管激光器中。通过一些激光参数(例如输出功率,能量密度,运行模式(连续和脉冲调制)和操作时间,将皮质和皮质诱饵羔羊脑组织暴露于激光灯。以这种方式,可以定义与最佳神经外科激光类型相关的最大烧蚀效率。该研究可分为两部分;预循粒剂和剂量测定研究。前者用于通过限定每个脑组织的凝血和碳化发作时间来确定剂量测定研究的安全操作区。后者是本研究的主要部分,两种组织都暴露于激光照射,其各种能量密度水平与输出功率和操作时间相关。另外,将光热效应与两个激光操作模式进行比较,然后在光学显微镜下测量凝结和消融直径以计算消融效率。因此,在图形和统计上比较结果,发现分子和1470nm二极管激光器分别用于皮质和皮质组织消融装置。

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