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首页> 外文期刊>Journal of cataract and refractive surgery >Scheimpflug imaging to determine intraocular lens power in vivo.
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Scheimpflug imaging to determine intraocular lens power in vivo.

机译:Scheimpflug成像可确定体内人工晶状体的能力。

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PURPOSE: To assess the feasibility of determining intraocular lens (IOL) power by measurement of the central optic thickness using clinically available Scheimpflug imaging (Pentacam, Oculus). SETTING: King's College Hospital Ophthalmology Department, London, United Kingdom. METHODS: Sixty-seven eyes were assessed 1 month after uneventful phacoemulsification with in-the-bag implantation of AcrySof MA60AC IOLs (Alcon). The correlation between IOL thickness measurement and IOL power was calculated. Repeatability of central optic thickness measurement was determined from 10 successive scans of 4 patients. RESULTS: Within-subject standard deviation increased with the subject mean. The coefficient of variability was 1.4%. Measured lens thickness was highly correlated with lens power (R(2) = 0.94, P<.001). Over the measured range, 95% confidence intervals varied between +/-0.83 diopters (D) and +/-0.92 D. CONCLUSIONS: Central IOL thickness measurements with the Pentacam Scheimpflug camera were highly repeatable and closely correlated with the known IOL power. The IOL power, calculated from a regression equation, is likely to be less than +/-1.00 D away from the actual power. Approximate in vivo IOL power determination is feasible with clinically available Scheimpflug imaging. This could be applied clinically in cases of unexplained postoperative refractive error.
机译:目的:通过使用临床可用的Scheimpflug成像(Pentacam,Oculus)测量中央光学厚度来评估确定人工晶状体(IOL)屈光度的可行性。地点:英国伦敦国王学院医院眼科。方法:在袋内植入AcrySof MA60AC IOLs(Alcon)进行非常规超声乳化术后1个月,评估了67只眼。计算了IOL厚度测量和IOL功率之间的相关性。通过对4位患者进行10次连续扫描来确定中心光学厚度测量的可重复性。结果:受试者内标准差随受试者平均数增加。变异系数为1.4%。测得的镜片厚度与镜片度数高度相关(R(2)= 0.94,P <.001)。在测量范围内,95%的置信区间在+/- 0.83屈光度(D)和+/- 0.92 D之间变化。结论:Pentacam Scheimpflug相机进行的中心IOL厚度测量具有高度可重复性,并且与已知IOL功效密切相关。根据回归方程计算的IOL功率可能会比实际功率小+/- 1.00D。利用临床上可用的Scheimpflug成像,可以进行近似的体内IOL功率测定。这可以在无法解释的术后屈光不正的情况下临床应用。

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