1.
Studies on Introduction of Double Resistance to Insect Gene into Anthurium andraeanum Lind. via Laser Microbeam Puncture
用激光微束穿刺法将双抗虫基因导入红掌的研究
2.
Perioperative nursing care of 15 patients treated with minimally invasive percutaneous nephrolithotomy with holmium laser
微创经皮肾穿刺钬激光碎石术15例围术期护理
3.
The mini-PCNL holmium laser lithotripsy plus adsorption system in the treatment of upper urinary tract calculi
微造瘘经皮肾穿刺钬激光加吸附系统治疗上尿路结石
4.
Treatment of calculi by minimally invasive percutaneous nephrolithotomy with ureteroscopic holmium:YAG laser
微创经皮肾穿刺输尿管镜钬激光碎石术治疗肾结石
5.
Minimally invasive percutaneous nephrolithotomy with the frequency doubled-double pulse laser in treatment of complicated renal stone(report of 35 cases)
经皮肾穿刺微造瘘输尿管镜双频双脉冲激光碎石术治疗复杂性肾结石(附35例报告)
6.
Study on Microlens Applied in Semiconductor Laser Beam Collimation;
半导体激光器光束准直微透镜的研究
7.
illuminating laser beam
照射激光束,照明激光束
8.
Fabricating Microstructure on the Surface of Silicon Using Multiple Beam of Nanosecond UV Laser
多光束纳秒紫外激光制作硅表面微结构
9.
Study on Transmission Laser Bonding and Its Parallel Micro Manipulation;
激光穿透键合机理及其并联微操作平台的研究
10.
Research on Laser Induced Breakdown Spectroscopy for Detection of Trace Cu in Polluted Soil
激光诱导击穿谱检测土壤微量铜元素污染研究
11.
Experiments on improvement of myocardial microcirculation by laser myocardium
激光束心肌打孔改善心肌微循环动物实验研究
12.
Measurement of laser angle drift by means of measure microscope
利用测量显微镜开展激光束角漂实验研究
13.
Studies of Differentiation of Mammalia Early Embryo by Using the Microbeam of Laser
使用激光微束研究哺乳动物早期胚胎分化
14.
Study of Laser Beam Width, Beam Quality and Focal Shift;
激光光束束宽、光束质量和焦移的研究
15.
Effect of Nephrostomy on Infections Caused by Ureteroscopic Holmium Laser Lithotripsy
术前肾穿刺造瘘减少(轻)输尿管镜钬激光碎石术后感染作用的研究
16.
Effect of Semiconductors Laser Orientator on Assistance of CT-guided Puncture for the Treatment of Trigeminal Neuralgia
半导体激光定位仪辅助CT引导三叉神经穿刺的效果观察
17.
collimated laser beam
激光平行光束,平行激光束
18.
Laser: Acronym for light amplification by stimulated emission of radiation, Concentrated light bean with narrow width used in creating images, engraving, etc.
激光:由刺激产生幅射而强化的光。它是集中的窄幅光束,可作产生影像,雕刻等用途。