ZEISS Toric IOLs
For greater confidence and outcomes in toric cataract surgery
Depending on the patients’ clinical condition and preferences, ZEISS offers a wide range of toric IOLs; from monofocal toric to EDoF toric to trifocal toric lenses. ZEISS toric IOLs are available in up to +12 diopter in cylinder and in 0.5 diopter steps , providing up to 2,000 different IOL combinations.
The right solution for your toric IOL implantation.
The wide choice of ZEISS toric lenses available enables you to achieve excellent refractive outcomes – even in challenging cases.
Correcting astigmatism, in conjunction with cataract removal and IOL implantation, provides the opportunity to significantly improve the quality of life for more patients.
Precise IOL selection with nearly 2,000 toric IOL options available
The ZEISS toric IOL portfolio offers a wide variety of near, intermediate and far vision correcting IOLs. Reaching from Monofocal toric to EDoF toric to Trifocal toric intraocular lenses.
More accurate choice with small 0.5 D cylinder steps
ZEISS toric IOLs are offered in small 0.5D incremental increments steps in cyl, sphere and spherical equivalent, designed to enable a more accurate choice of toric IOL, based on the patient‘s individual needs.
One of the widest cylinder ranges available with a cylinder range of up to +12 D
The wide choice of cylinder range available enables us to provide the right choice of toric IOLs even in cases with higher cylinder and diopter requirements.
Z CALC
A proprietary algorithm specifically designed for ZEISS IOLs. Z CALC predicts immediate post-operative refraction data and supports the selection of ZEISS toric & non-toric IOLs by calculating IOL power.
Z CALC takes posterior corneal astigmatism into account – either by using ZEISS IOLMaster TK® value readings or with the Z CALC Nomogram. Use Z CALC and receive precise calculations on target correction to choose the most suitable toric or non-toric ZEISS IOL for your patient.
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ZEISS toric IOL portfolio
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1
Mencucci, R. et al., Clinical outcomes and rotational stability of a 4-haptic toric intraocular lens in myopic eyes, 2014, JCRS,40: 1479-1487
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2
Study not published. Data on file
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3
The bitoric optic design aims to optimize the visual outcomes for patients with a higher degree of astigmatism, resulting in better imaging quality thanks to a larger usable optic.
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For optimized A Constants and ACD Constants refer to IOLCon: www.iolcon.org
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Please refer to our web page for the most up-to-date references: www.zeiss.com/injectors
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The preloaded AT LISA tri toric 949MP is available in the diopter range: spherical equivalent -5.0 to +32.0 D, Cyl. +1.0 to +4 .0 D. The non-preloaded AT LISA tri toric 949M is available in the diopter ranges: spherical equivalent -5.0 to +32.0 D, cyl. +4.5 to +12.0 D and +32.5 to +35.0 D , cyl. +1 to +12 D.
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The preloaded AT LARA toric 929MP is available in the diopter range: spherical equivalent -8.0 to +32.0 D, cyl. +1.0 to +4.0 D . The non-preloaded AT LARA toric 929M is available in the diopter ranges: spherical equivalent -4.0 to +32.0 D, cyl. +4.5 to +1 2.0 D. Further preselected SE/cylinder combinations are available above and below the stated SE range.
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The preloaded AT TORBI 719MP is available in the diopter range: Spherical Equivalent -8.0 to +28.0 D, cyl. +1.0 to +4.0 D. The non-preloaded AT TORBI 719M is available in the diopter ranges: spherical equivalent -4 to +32.0 D, cyl. +1.0 to +12.0 D. Further preselected SE/cylinder combinations are available above and below the stated SE range.