低功率激光,low energy laser
1)low energy laser低功率激光
1.Effects of low energy laser on free radical metabolism in rat muscle contusion models;低功率激光照射对急性骨骼肌钝挫伤大鼠自由基代谢的影响
2.The purpose is to observe the effect of low energy laser on proliferative activity of muscle satellite cells in rat muscle contusion model.目的:观察低功率激光照射对急性骨骼肌顿挫伤大鼠肌卫星细胞增殖活性的影响。
英文短句/例句

1.Many applications of low-power lasers are already widely known to the general public.低功率激光器的许多应用已为大家熟知。
2.THE LOW-POWER LASER IRRADIATION OF BLOOD THERAPY AND THE RESEARCH OF A NEW TYPE LIB TREATMNT INSTRUMENT低功率激光血液照射疗法及其新型治疗仪研究
3.Research on Low-Power Laser-Tungsten Inert Gas (TIG) Hybrid Welding Technology of Mg Alloy;镁合金低功率激光—氩弧复合焊接技术的研究
4.Effects of LLLT on Histological and Ulterastructured Injury of Skeletal Muscle after a Acute Exhaustive Eccentric Exercise in Rats;低功率激光对大鼠急性力竭离心运动后骨骼肌微损伤的修复作用
5.Effects of Low Energy Laser on Proliferative Activity of Muscle Satellite Cells in Rat Muscle Contusion Models;低功率激光对急性骨骼肌顿挫伤大鼠肌卫星细胞增殖活性的影响
6.The Experimental Study for Influence of Low-level Laser Irradiation on Osseointegration of Dental Implants低功率激光对种植体骨结合影响的动物实验研究
7.The study on low-power YAG laser-MAG arc hybrid welding低功率YAG激光-MAG电弧复合焊接的研究
8.Clinical effects of low-power He-Ne laser as accessory treatment of depressive patients低功率氦氖激光辅助治疗住院抑郁症的疗效
9.Animal Study on the Influence of Low-level Laser Irradiation on the Osseointegration of Dental Implants低功率He:Ne激光促进种植体骨结合的实验研究
10.Investigation on High Power and Low Noise Tunable Single-frequency Fiber Laser for All Optics Communications;全光通信用高功率低噪声可调谐单频光纤激光器研究
11.laser output power stabilization激光输出功率稳定化
12.maximum power [laser game]最大功率〔激光游戏〕
13.Studies on Mechanisms of Power Decreased in a High Power Transverse-Flow CO_2 Laser;高功率横流CO_2激光功率蜕化机理研究
14.Real-time Power Measure and Control System of High Power CO_2 Laser;高功率CO_2激光器功率实时检测与控制
15.Research of Low Power Semiconductor Laser Extravascular Irradiation Therapeutics and Clinical Application低功率半导体激光血管外照射疗法及其临床应用研究
16.EFFECTS OF LOW INTENSITY SEMICONDUCTOR LASER THERAPY ON THE EEG POWER SPECTRUM AND P3PL IN PATIENTS WITH COGNITIVE DISORDER低强度半导体激光疗法对认知障碍病人脑功率和P_3PL的影响
17.Behavior Analysis of Low Power YAG Laser-Gas Metal Arc Welding Hybrid Welding Arc Plasma低功率YAG激光-熔化极气体弧焊复合焊接电弧等离子体行为研究
18.Experimental investigation of high power photonic crystal fiber laser高功率光子晶体光纤激光器实验研究
相关短句/例句

low power He-Ne laser irradiation低功率He-Ne激光
1.Many researches indicate that low power He-Ne laser irradiation could modulate various biological processes such as promoting cell proliferation,secretion,migration,adhesion,protein synthesis,gene expression.在临床应用中,低功率He-Ne激光(632。
3)Low-power YAG laser低功率YAG激光
4)low power laser低功率激光器
5)low-power pulsed YAG laser低功率脉冲YAG激光
1.This paper studied the low-power pulsed YAG laser-pulsed MAG arc hybrid welding of stainless steel based on the comparison between hybrid welding process and single pulsed MAG (metal active-gas) arc welding.以0Cr18Ni9Ti不锈钢钢板为试验材料,研究了低功率脉冲YAG激光—脉冲MAG电弧复合热源和单脉冲MAG焊接不锈钢。
6)low power semiconductor laser低功率半导体激光
1.Effects of low power semiconductor laser extravascular irradiation of index of blood and hyperlipidemia;低功率半导体激光血管外照射对血脂、血液流变学指标的影响
延伸阅读

低功率激光频率转换材料低功率激光频率转换材料materials for low power laser frequency conversion  低功率激光频率转换材料materials for lowpower laser frequeney eonversion对半导体激光器进行直接频率转换,或对半导体泵浦的钦激光器进行频率转换的材料。这类激光源多为连续激光。其功率在几十毫瓦到瓦级,发散角约20。一300;用其泵浦的钦激光发散度较小,但仍比一般固体、气体激光差。随着半导体激光器功率、寿命、模式特性的不断提高,应用上述激光频率转换材料可制作小型、长寿命的可见光激光源,用于高密度光盘存储、彩色显示等领域。 性能要求低功率激光频率转换的技术关键是提高转换效率。通常转换效率达10%才有实用意义。为此,对材料性能要求有高二次非线性系数、相位匹配条件和透过波段。高二次非线性系数在低转换效率情况下,转换效率与二次非线性系数成正比,因而希望有大的二次非线性系数的材料。已发现的MMNONS(4一甲氧基3一甲基4H一硝基二苯乙烯)、mNA(亚硝基苯胺)和MNA(二甲基一4硝基苯胺)等有机材料具有很高二次非线性系数,但它们短波吸收边已接近500 nm。具有短吸收边,又有高二次非线性系数的有机材料正在探索中。无机材料锐酸钾(KN)、视酸钡钠(BNN)、磷酸钦氧钾(KTP)、担酸铿(LT)晶体和视酸锉(LN)晶体二次非线性系数较高,而其短波吸收边大都在400 nm,是目前有希望应用的低功率激光频率转换的材料。 相位匹配条件是获得低功率激光有效频率转换的必要条件。发散度大的激光源,临界角度匹配方法造成的失配太大。比较而言,非临界角度匹配可获得更好效果,是体块材料低功率激光频率转换的一种有效技术,但对材料要求较苛刻。在大非线性系数材料中,只有KN晶体能在较窄的温度范围(约半度)内,对特定波长(一860~)能实现半导体激光直接倍频。体块材料相位匹配的另一可行方法是用准相位匹配技术。它的效果可与非临界相位匹配相当,同时可利用材料中一些很大的、由角度或温度匹配无法利用的非线性系数分量。 此外,也可利用波导结构来实现相位匹配。它可以提高基频功率密度,利用大的二次非线性系数,获得长的非线性互作用长度,因而可望获得高的转换效率。波导结构实现相位匹配的一个方法是利用波导模式色散。它要求基频和倍频导模的有效折射率相等,但难以获得较大的交叠积分,因而效果不太理想。利用切伦可夫辐射方式实现波导模相位匹配较为简便,其交叠积分也较大。目前已开发出一种把波导结构与准相位匹配相结合的方法,对半导体激光倍频已经获得高达3%的转换效率。 对半导体激光泵浦的钦激光倍频,已发展了一种利用可控反馈的谐振腔式相位匹配方法。