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1)  phacoemulsification
晶状体超声乳化吸出术
1.
Objective To evaluate the clinical effects of phacoemulsification and intraocular lens implantation in patients with exterme myopia and cataract.
方法对105例(105眼)超高度近视白内障行晶状体超声乳化吸出术,植入低度数人工晶状体,随访3月。
2.
AIM:To evaluate the effect of vitrectomy combined with phacoemulsification for treating proliferative diabetic retinopathy(PDR).
方法:对68例68眼增生性糖尿病性视网膜病变合并白内障患者行玻璃体切除术联合晶状体超声乳化吸出术治疗,其中35例Ⅰ期植入折叠型后房型人工晶状体。
3.
Objective To discuss the clinical importance of related factors affecting intraocular pressure(IOP)after phacoemulsification.
目的探讨影响晶状体超声乳化吸出术后早期眼压变化的相关因素及临床意义。
2)  phacoemulsification
晶状体超声乳化吸出
1.
Objective To investigate the value of micro iris hooks in small pupils during phacoemulsification.
目的评价显微虹膜拉钩在小瞳孔晶状体超声乳化吸出术中应用的价值。
2.
Among them,15 eyes were undergone phacoemulsification and intraocular lens implantation,27 ey es were given posterior vitrectomy and extraction of intraocular foreignbodies,8 eyes were given reposition of retinal detachment with silicone oil filling,11 e yes were repaired by irid.
其中联合晶状体超声乳化吸出+人工晶状体植入15眼;后段玻璃体切除+眼内异物摘出2 7眼;视网膜脱离复位+硅油填充8眼;虹膜修复或瞳孔成形术11眼;晶状体前后囊破裂、玻璃体脱出行前段玻璃体切除术12眼。
3)  phacoemulsification
晶状体超声乳化术
1.
The relationship between anterior chamber space and corneal endothelial change in phacoemulsification.;
晶状体超声乳化术前前房空间与术后角膜内皮变化相关性研究
2.
The effect of incision position in phacoemulsification on postoperative astigmatism;
切口位置对晶状体超声乳化术后散光的影响
3.
Clinical application of chop and debulk method in phacoemulsification;
晶状体超声乳化术中咬切-劈裂分核法的临床应用
4)  phacoemusification
晶状体超声乳化术
1.
Capsular tension ring was implanted after continuous curvilinear capsulorrhexis(CCC),then phacoemusification and implantation with posterior chamber foldable intraocular lens.
目的评价半脱位晶状体超声乳化术中植入囊袋张力环(CTR)的应用价值。
5)  ultrasonic phacoemulsification
晶状体超声乳化术
1.
Clinical effects of tobradex eyedrops after ultrasonic phacoemulsification.;
典必殊在晶状体超声乳化术后的疗效
6)  phacoemulsification
晶状体乳化吸出术
补充资料:化妆品超声波乳化器
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性质:一种采用超声波进行油水乳化的化妆品生产制造设备。超声波具有波长短、有方向性、能量集中且强度大、振动剧烈的特点。超声波发生器分为机电型及机械型两类,在乳化体生产中多采用后者,是利用高速气流或液流冲击金属簧片或空腔产生超声能使油、水两相在高压下进行充分接触,使乳化粒子大为减小而得到高稳定性的产品。

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