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Patient-Perceived and Laboratory-Measured Halos Associated with Diffractive Bifocal and Trifocal Intraocular Lenses

机译:与衍射双焦和三焦点眼透镜相关的患者感知和实验室测量的卤素

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Purpose: To examine and assess the halos generated in distance vision by multifocal intraocular lenses (IOLs) using both in vitro objective and in vivo subjective methods.udSetting: The objective method was carried out in the optics laboratory of the Applied Optics and Image Processing Group (Universitat Politècnica de Catalunya -Barcelona). The psychophysical and subjective methods were carried out in the Instituto de Oftalmología Avanzada Madrid Innova Ocular. udDesign: Optical bench results and prospective evaluation of consecutive cases. udMethods: The IOLs examined were TECNIS®one-piece bifocals with addition powers of +4.00 D, +3.25 D, and +2.75 D and the trifocals AT-LISA-tri® and FineVision®. In the objective assessment, we examined halos around the far focus images of a pinhole formed by each IOL in an optical bench. For the in vivo study, we recruited 100 patients who had been bilaterally implanted one month earlier with the IOLs under study. Participants were subjected to psychophysical halometry (Halo v1.0) on the eye with better, distance-corrected, visual acuity and were required to subjectively grade halos by responding to the question “How much do halos bother you?” udResults: The objective method revealed that the halo size increased with addition power and that the two trifocals gave rise to a double-halo pattern. Scores in the halometry also indicated a direct relationship between the halo size and addition power. The subjective results indicated fewer complaints about halos associated with the trifocal than bifocal IOLs. Conclusions: The addition power of the tested IOLs affected both laboratory-measured and patient-perceived halos. Trifocal lenses generated fewer complaints about halos. Precise: Multifocal intraocular lenses (MIOLs) give rise to halos observed by patients under conditions of dim lighting. This study compares laboratory characterized halos generated by five MIOLs with patient-perceived halos.
机译:目的:使用多灶性眼内透镜(IOL)检查和评估在距离视觉中产生的晕,所述多灶性眼内透镜(IOL)使用体外目标和体内主观方法。 Udstreating:在应用光学和图像处理的光学实验室中进行了目标方法小组(大学Politècnicade Catalunya -Barcelona)。在MadultoOftalmologíaAvanzadaMadraInnovers的Instituto de oftituto de。 uddesign:连续案例的光学台阶结果和前瞻性评估。 udmethods:检查的IOLS是Tecnis®One-件双焦点,加入+ 4.00d,+ 3.25d和+ 2.75d和Trifocals at-Lisa-Tri®和FineVision®。在客观评估中,我们在光学工作台中的每个IOL形成的针孔周围的光环周围检查了光环。对于体内研究,我们招募了100名患者,其中一个月早些时候与在研究下的IOL。参与者对眼睛的心理物理晕术(Halo v1.0),具有更好的,距离矫正,视力,并且通过响应问题“哈索斯困扰你多少级别的晕圈来主主主主主主动晕 Udresults:目标方法显示光环尺寸随着添加功率而增加,两种三件引起了双光晕图案。晕术中的分数还表明了光环尺寸和加法功率之间的直接关系。主观结果表明较少关于与三焦点相关的晕酸的抱怨比双焦于双焦于焦点。结论:测试的IOL的添加功率影响了实验室测量和患者感知的卤素。三焦点镜片产生了关于晕圈的较少投诉。精确:多灶性眼内透镜(miols)引起患者在昏暗照明条件下观察到的晕。本研究将5种MIOLS产生的实验室表征晕与患者感知的卤素进行比较。

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