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1)  pneumatic lithotripsy and frequency-doubled-doubled-pulse laser lithotripsy
气压弹道/U100激光碎石术
2)  U100 laser lithotripsy
U100激光碎石
3)  Ballistic lithotripsy
气压弹道碎石术
1.
Management of ureteric calculi by ballistic lithotripsy;
输尿管镜气压弹道碎石术治疗输尿管结石的临床分析
2.
Objective To explore the efficiency of the treatment of the urinary calculi which remained after the ballistic lithotripsy combined with ureterorenoscopy and the decoction to remove the calculi.
目的探讨输尿管镜下气压弹道碎石术后配合中药排石汤治疗降低术后残留结石的有效性。
3.
Objective:To explore the efficiency of the treatment of the urinary calculi which were remained after the ballistic lithotripsy combined with ureterorenoscopy with the decoction of excluding the calculi.
目的 :探讨输尿管镜下气压弹道碎石术后配合中药排石汤降低术后残留结石的有效性。
4)  Pneumatic lithotripsy
气压弹道碎石术
1.
Causes and management of common complications of ureteroscopic pneumatic lithotripsy;
输尿管镜气压弹道碎石术常见并发症原因分析及对策
2.
Clinic investigation of combined spinal-epidural anesthesia in ureteroscopic pneumatic lithotripsy;
腰硬联合麻醉在输尿管镜下气压弹道碎石术中的临床研究
3.
Treatment of ureteral calculi with ureteroscopic pneumatic lithotripsy;
输尿管镜气压弹道碎石术治疗输尿管结石472例分析
5)  Pneumatic impactor lithotripsy
气压弹道碎石术
1.
[Objective]To evaluate the effectiveness of ureteroscopic pneumatic impactor lithotripsy for managing ureteral calculi failure to ESWL.
目的探讨输尿管镜气压弹道碎石术(URS+PL)治疗因体外冲击波碎石(ESWL)失败的输尿管结石的临床疗效。
2.
[Conclusion] Pneumatic impactor lithotripsy under ureteroscopy is a high effective and safe treatment modality for lower ureteral calculi in children.
[方法]应用输尿管镜气压弹道碎石术经尿道至输尿管治疗儿童输尿管中下段结石14例。
6)  pneumatic lithotriptor
气压弹道碎石术
1.
Report of 31 cases about treatment of upper ureteral caliculi with pneumatic lithotriptor under ureterscopy;
输尿管镜下气压弹道碎石术治疗输尿管上段结石31例报告
2.
Complicated renal calculi were treated by pneumatic lithotriptor under ureteroscopy vs extriciporeal shock wave lithotripsy(ESWL);
输尿管镜下气压弹道碎石术联合ESWL术治疗复杂性肾结石
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。
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