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laser thermokeratoplasty
相关语句
  激光角膜热成形
     A Simple Mathematical Modeling Method of Cornea in Laser Thermo Keratoplasty
     激光角膜热成形术中的角膜建模技术
短句来源
  激光热角膜成形术
     LASIK and Ho:YAG laser thermokeratoplasty for treatment of primary hyperopia
     准分子激光原位角膜磨镶术和钬激光热角膜成形术治疗原发性远视眼
短句来源
     Objective To evaluate the effectiveness,predictability and safety of excimer laser in situ keratomileusis(LASIK)and Ho:YAG laser thermokeratoplasty(LTK)for primary hyperopia.
     目的 评价准分子激光原位角膜磨镶术 (LASIK)和钬激光热角膜成形术 (LTK)治疗原发性远视眼的有效性、预测性和安全性。
短句来源
  激光热角膜成形术
     LASIK and Ho:YAG laser thermokeratoplasty for treatment of primary hyperopia
     准分子激光原位角膜磨镶术和钬激光热角膜成形术治疗原发性远视眼
短句来源
     Objective To evaluate the effectiveness,predictability and safety of excimer laser in situ keratomileusis(LASIK)and Ho:YAG laser thermokeratoplasty(LTK)for primary hyperopia.
     目的 评价准分子激光原位角膜磨镶术 (LASIK)和钬激光热角膜成形术 (LTK)治疗原发性远视眼的有效性、预测性和安全性。
短句来源
  “laser thermokeratoplasty”译为未确定词的双语例句
     Experimental Study of CO_2 Laser Thermokeratoplasty
     CO_2激光角膜热成形术的实验研究
短句来源
     Research on the Mechanism of Laser thermokeratoplasty
     激光热凝固效应对眼角膜的作用机理研究
     We want to discuss the clinical effect of Ho: YAG laser thermokeratoplasty for hyperopia.
     目的探讨Ho:YAG激光角膜热成形术(LTK)治疗远视的临床效果。
短句来源
     Early clinical studies of Holmium: YAG laser thermokeratoplasty for hyperopia
     HO:YAG激光角膜热成形术治疗远视的早期临床研究
短句来源
     The Clinical Studies of Holmiun: YAG Laser Thermokeratoplasty
     激光角膜热成形术的临床观察
短句来源
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      laser thermokeratoplasty
    Thermal damage of the corneal endothelium in diode laser thermokeratoplasty
          
    Diode laser thermokeratoplasty - first clinical experience
          


    Low power CO2 laser was used for thermokeratoplasty. The study was designed to evaluate the effect ofdifferent optical zone diameters and different numbers of coagulations on hyperopic corrections. The procedureof corneal repair was observed histopathologically. The results reveal that CO2 laser thermokeratoplasty forlow hyperopic correction is effective. The amounts of correction do not always increase following with decreasing the optical zone diameter or adding the number of applications. When the optical...

    Low power CO2 laser was used for thermokeratoplasty. The study was designed to evaluate the effect ofdifferent optical zone diameters and different numbers of coagulations on hyperopic corrections. The procedureof corneal repair was observed histopathologically. The results reveal that CO2 laser thermokeratoplasty forlow hyperopic correction is effective. The amounts of correction do not always increase following with decreasing the optical zone diameter or adding the number of applications. When the optical zone diameter is reduced to an extent, the central cornea is flattened instead of steepened and irregular astigmatism occurs.Histopathological study shows the focused laser beam produces a cuneiform coagualation and reaches 2/3corneal stroma in which proliferative intercrossing collagen fibers gradually turn to regular arrangement conforming to the fact that the effect of CO2 thermokeratoplasty on hyperopic correction reduces by degrees.

    用低功率CO2激光在兔眼做角膜热成形术籍以了解凝固点数目及中央视区大小与远视矫正效果的关系。结果显示CO2激光角膜热成形术在照射5mm视区时,能矫正低度远视。当视区小至一定程度时,仅使角膜中央扁平,而非变凸,且可引起不规则散光。病理观察发现热凝点呈换形,深达角膜的2/3,楔形区内胶原增生,相互交织成张力收缩,半年后渐呈平行规则排列,与远视矫正效果渐下降是一致的。

    We want to discuss the clinical effect of Ho: YAG laser thermokeratoplasty for hyperopia.Method LTK was used in 14 eyes for 12 patients to treat low to mild hyperopia (+ 0. 50~ + 5. 00D before operation). The fluence was 44 J/cm2. Average follow up period was 7. 6±1. 2 months. Results LTK is effective to treat simple low hyperopia (≤+3. 0D ), low hyperopia (≤+3.0D) after ECCE. But there is regression in varying degrees after opertion. Conclusions LTK seems to be a simple, fast,effective procedure with...

    We want to discuss the clinical effect of Ho: YAG laser thermokeratoplasty for hyperopia.Method LTK was used in 14 eyes for 12 patients to treat low to mild hyperopia (+ 0. 50~ + 5. 00D before operation). The fluence was 44 J/cm2. Average follow up period was 7. 6±1. 2 months. Results LTK is effective to treat simple low hyperopia (≤+3. 0D ), low hyperopia (≤+3.0D) after ECCE. But there is regression in varying degrees after opertion. Conclusions LTK seems to be a simple, fast,effective procedure with the merit of no short term complication. It seems to be a promising procedure.

    目的探讨Ho:YAG激光角膜热成形术(LTK)治疗远视的临床效果。方法对12例14只轻、中度远视眼行LTK术,术前屈光度为+0.50~+5.00D,能量密度44J/cm2,平均随访7.6±1.2月。结果LTK术对轻度远视(≤+3.00D)有效,对ECCE术后远视(≤+3.00D)有效,但术后均有不同程度的屈光回退。结论LTK术具有方法简单、迅速、见效快以及无短期并发症等优点,不失为有前途的手术治疗。

    Objectives To study the early clinical results of Ho: YAG laser thermokeratoplasty, for hyperopia and to evaluate the relationship between parameters and refractive effect after the operation. Method Ho:YAG laser thermokeratoplasy was tised in 20 eyes of 18 patients to treat low hyperopia (0. 50~ 2. 25D before operation) by using different energy fluence. Average follow-up period was 5. 6±1. 7 months. Results Ho: YAG LTK was effective to treat simple low hyperopia (≤3. 0D),in 65J·cm -2 fluence group,it...

    Objectives To study the early clinical results of Ho: YAG laser thermokeratoplasty, for hyperopia and to evaluate the relationship between parameters and refractive effect after the operation. Method Ho:YAG laser thermokeratoplasy was tised in 20 eyes of 18 patients to treat low hyperopia (0. 50~ 2. 25D before operation) by using different energy fluence. Average follow-up period was 5. 6±1. 7 months. Results Ho: YAG LTK was effective to treat simple low hyperopia (≤3. 0D),in 65J·cm -2 fluence group,it had better results than in 44J cm -2group,and regression was significantly reduced. Conclusions LTK is a simple,fast,effective procedure with no short term complication. It seems to be a promising procedure.

    目的本文就HO:YAG激光LTK术治疗远视的早期临床结果进行分析,探索手术方案与屈光度之间的关系。方法对18例20只轻度远视眼行HO:YAG激光LTK术治疗,术前屈光度为0.50~2.25D,采用2种不同能量密度,平均随访5.6±1.7mo。结果Ho:YAG激光LTK术对轻度远视(≤3.0D)有效,能量密度65J·cm-2组较能量密度44J·cm-2组治疗效果好,回退明显减少。结论早期临床观察证实此手术方法简单、迅速、见效快以及无短期并发症等优点,不失为有前途的手术治疗。

     
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