1) ultrasonic and pneumatic lithotripter
超声气压弹道碎石术
1.
Objective To investigate the nurse of percutaneous nephrolithotomy with ultrasonic and pneumatic lithotripter for 112 cases with complex renal caculi.
结论经皮肾镜超声气压弹道碎石术围手术期护理有一定的特殊性和严密性,术前充分准备,细致耐心的心理护理,术中医生、护士和患者本人的密切配合,术后做好管道护理,严密观察生命体征和并发症,是治疗肾结石患者成功的基础和关键。
2) ultrasound/air pressure ballistic lithoclasty
超声/气压弹道碎石术
1.
Nursing of patients undergoing ultrasound/air pressure ballistic lithoclasty under percutaneous nephroscope;
经皮肾镜下超声/气压弹道碎石术病人的护理
3) Ultrasonic
超声
1.
Application of ultrasonic technique in the preparation of TiO_2 based photocatalysts;
超声在TiO_2基光催化剂制备过程中的应用
2.
The application of split-radix algorithm in pipeline corrosion ultrasonic inner inspection;
分裂基算法在管道腐蚀超声内检测中的应用
3.
Effect of ultrasonic on the properties of edible films based on soy protein isolate;
超声辐射对大豆分离蛋白膜性能的影响
4) ultrasound
超声
1.
Progress in membrane separation enhanced by ultrasound;
超声波技术强化膜分离过程的研究进展
2.
Study on technology of ultrasound-microwave assisted generats levulinic acid by hydrolysis of cornstarch;
超声-微波协同水解玉米淀粉生成乙酰丙酸的工艺研究
3.
Investigation on extracting pumpkin polysaccharides from pumpkin by ultrasound;
超声提取南瓜多糖的研究
5) ultrasonic wave
超声
1.
The Application of Ultrasonic Wave to Medicative Abortion;
超声在药物流产中的应用
2.
Optical fiber ultrasonic wave monitoring based on Mach-Zehnder interferometer;
基于M-Z干涉仪原理的光纤超声检测
3.
In this paper,the extraction of grape seed proanthocyanidin using ultrasonic wave was studied.
对葡萄籽中原花青素的超声提取工艺进行了研究,在单因素实验和正交实验的基础上,得出超声波法提取葡萄籽原花青素的最佳工艺条件为:在40℃下,以料液比为30:1的40%乙醇溶液,用120W的超声功率对葡萄籽作用10min。
6) Ultrasonography
超声
1.
Present Situation and Progress in Diagnosis of Hepatic Fibrosis by Ultrasonography;
肝纤维化的超声诊断现状及进展
2.
Clinical significance of detection of retrobulbar blood circulation in diabetic patients by Ultrasonography;
超声检测糖尿病患者球后血液循环的临床价值
参考词条
补充资料:体外冲击波碎石术
体外冲击波碎石术
extracorporeal sh?ock wave lithotripsy,ESWL
利用高电压、大储能电容通过在水中瞬间放电,产生冲击波,经半椭圆反射体的反射聚焦于半椭圆反射体的第二焦点处(放电处为第一焦点),能量增大230倍,可将置于该点之结石粉碎。由于冲击波以声学特性传播,在空气中会大大削减其能量,故需在水中进行,又由于对上述波人体与水的阻抗相似,因此,冲击波可经人体各层软组织作用于结石。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。