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CHECKLIST FOR COMPARING THE PERFORMANCE OF INTRAOPERATIVE ABERROMETER

 

Feature

I-O-W-A

Alternative

Contactless “sterile” device handling

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Free working distance between microscop and sterile surgery field is not affected by the device

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High prezision by microscop input reflection of the cross hair into the surgeons "natural" field of view

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Sequential mode of the wave front analyzer guarantees high reliability of measurements during the surgery, without classical risks as overlapping and crossover

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Broad dynamic range [dpt.] covers the aberrometry at phakic, aphakic and pseudophakic eye

- 8,00 … +25,00 dpt

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Intraoperative spherozylindric aberrometry in quasi-real-time, no waiting times for measurement results

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Virtual cylinder axis marking in quasi-real-time minimizes the error by bulb movements

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Precise orientation of toric IOLs by cornea cylinder axis marking within the surgery microscop

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Reliable marking of the cylinder axis, even in case of open pupil and high magnification

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Extended IOL navigation for detection and minimizing of (p) IOL decentering and tilting

announced

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IOL selection and simulation of the reachable optimum refraction result and the optimization potential

announced

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Measurement of the (result) refraction, without entering the biometry data manual

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Bring together the pre-, intra- and postopoperative datas for  IOL selection optimization and predictability of the redult refraktion

announced

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Optic-refractive biometry for the IOL selection, based on measurements at apakic eye

announced

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Simulation for the inzisional astigmatism-correction and microscop input reflection of LRI masks

announced

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calculable cost situation

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No monthly or annual user fees

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No transfer of patient data via internet to the manufacturer

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