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Dive into the research topics where J. Steinberg is active.

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Featured researches published by J. Steinberg.


Ophthalmologe | 2015

[Corneal biomechanics: Corvis® ST parameters after LASIK].

Andreas Frings; Stephan J. Linke; Bauer El; Druchkiv; T. Katz; J. Steinberg

BACKGROUND Corneal refractive surgery alters the biomechanical properties of the cornea. OBJECTIVES This study was initiated to evaluate corneal biomechanical parameters after LASIK using a Corvis® ST tonometer (CST). METHODS This retrospective study included 51 eyes of 32 myopic patients. All CST measurements were performed 1 day before surgery and at the 1-month follow-up examination. The LASIK procedure included mechanical flap preparation using a Moria SBK microkeratome and an Allegretto excimer laser platform. RESULTS Statistically significant differences were observed for mean second applanation length, mean first and second deflection lengths, mean first and second deflection amplitudes, peak distance and radius of curvature. Statistically significant positive correlations were found between the change (Δ) in radius of curvature and Δ in manifest refraction spherical equivalent (MRSE), between the ablation depth and the Δ in intraocular pressure. Applying multiple regression models also revealed statistically significant differences in parameters obtained by CST measurements. CONCLUSION Several CST parameters were statistically significantly altered by LASIK thereby indicating that flap creation, ablation or both, significantly change the ability of the cornea to absorb or dissipate energy.


Ophthalmologe | 2014

Perspektiven der laserassistierten Keratoplastik

Stephan J. Linke; Ling Ren; Andreas Frings; J. Steinberg; Wolfgang Wöllmer; T. Katz; Rudolph Reimer; Nils-Owe Hansen; Nathan Jowett; G. Richard; R. J. Dwayne Miller

BACKGROUND This article provides a review of the current state of laser-assisted keratoplasty and describes a first proof of concept study to test the feasibility of a new mid-infrared (MIR) picosecond laser to perform applanation-free corneal trephination. METHODS The procedure is based on a specially adapted laser system (PIRL-HP2-1064 OPA-3000, Attodyne, Canada) which works with a wavelength of 3,000 ± 90 nm, a pulse duration of 300 ps and a repetition rate of 1 kHz. The picosecond infrared laser (PIRL) beam is delivered to the sample by a custom-made optics system with an implemented scanning mechanism. Corneal specimens were mounted on an artificial anterior chamber and subsequent trephination was performed with the PIRL under stable intraocular pressure conditions. RESULTS A defined corneal ablation pattern, e.g. circular, linear, rectangular or disc-shaped, can be selected and its specific dimensions are defined by the user. Circular and linear ablation patterns were employed for the incisions in this study. Linear and circular penetrating PIRL incisions were examined by macroscopic inspection, histology, confocal microscopy and environmental scanning electron microscopy (ESEM) for characterization of the incisional quality. Using PIRL reproducible and stable incisions could be made in human and porcine corneal samples with minimal damage to the surrounding tissue. CONCLUSION The PIRL laser radiation in the mid-infrared spectrum with a wavelength of 3 µm is exactly tuned to one of the dominant vibrational excitation bands of the water molecule, serves as an effective tool for applanation-free corneal incision and might broaden the armamentarium of corneal transplant surgery.


Ophthalmologe | 2014

Perspektiven der laserassistierten Keratoplastik@@@Perspectives of laser-assisted keratoplasty: Eine aktuelle Übersicht und erste experimentelle Erfahrungen mit dem Pikosekundeninfrarotlaser (λ = 3 µm)@@@Current overview and first preliminary results with the picosecond infrared laser (λ = 3 µm)

Stephan J. Linke; Ling Ren; Andreas Frings; J. Steinberg; Wolfgang Wöllmer; T. Katz; Rudolph Reimer; Nils-Owe Hansen; Nathan Jowett; G. Richard; R. J. Dwayne Miller

BACKGROUND This article provides a review of the current state of laser-assisted keratoplasty and describes a first proof of concept study to test the feasibility of a new mid-infrared (MIR) picosecond laser to perform applanation-free corneal trephination. METHODS The procedure is based on a specially adapted laser system (PIRL-HP2-1064 OPA-3000, Attodyne, Canada) which works with a wavelength of 3,000 ± 90 nm, a pulse duration of 300 ps and a repetition rate of 1 kHz. The picosecond infrared laser (PIRL) beam is delivered to the sample by a custom-made optics system with an implemented scanning mechanism. Corneal specimens were mounted on an artificial anterior chamber and subsequent trephination was performed with the PIRL under stable intraocular pressure conditions. RESULTS A defined corneal ablation pattern, e.g. circular, linear, rectangular or disc-shaped, can be selected and its specific dimensions are defined by the user. Circular and linear ablation patterns were employed for the incisions in this study. Linear and circular penetrating PIRL incisions were examined by macroscopic inspection, histology, confocal microscopy and environmental scanning electron microscopy (ESEM) for characterization of the incisional quality. Using PIRL reproducible and stable incisions could be made in human and porcine corneal samples with minimal damage to the surrounding tissue. CONCLUSION The PIRL laser radiation in the mid-infrared spectrum with a wavelength of 3 µm is exactly tuned to one of the dominant vibrational excitation bands of the water molecule, serves as an effective tool for applanation-free corneal incision and might broaden the armamentarium of corneal transplant surgery.


Ophthalmologe | 2014

Differenz und Entfernung zwischen zentraler und dünnster Stelle der Hornhaut@@@Difference and distance between the central and thinnest points of the cornea: Einfluss von Refraktion, Alter und Augenseite@@@Impact of refractive state, age and ocular side

J. Steinberg; C. Kohl; T. Katz; G. Richard; Stephan J. Linke

BACKGROUND The aim of the study was to quantify the difference in corneal thickness between the central and thinnest points (∆PachyZ-PachyD), the distance between the center of the cornea and its thinnest point (vector length PachyD) and to explore the impact of refractive state, age and ocular side. PATIENTS AND METHODS This was a multicenter, retrospective, cross-sectional study and medical records of 16,872 eyes were reviewed. The Orbscan® (Bausch and Lomb) procedure was used for pachymetry and keratometry. RESULTS The results showed that ∆PachyZ-PachyD and vector length PachyD were higher in hyperopic eyes (∆PachyZ-PachyD: 11.99 ± 12.08 µm, vector length PachyD: 0.85 ± 0.44 mm) compared to myopic eyes (∆PachyZ-PachyD: 9.2 ± 7.86 µm, vector length PachyD: 0.7 ± 0.37 mm; p < 0.001). Refractive state, age and ocular side demonstrated an independent, statistically significant impact on ∆PachyZ-PachyD and vector length PachyD. CONCLUSIONS As a result of the significant impact of refractive state, age and ocular side on ∆PachyZ-PachyD and vector length PachyD, these variables should be considered in a normative data collection.


Ophthalmologe | 2014

[Difference and distance between the central and thinnest points of the cornea: impact of refractive state, age and ocular side].

J. Steinberg; C. Kohl; T. Katz; G. Richard; Stephan J. Linke

BACKGROUND The aim of the study was to quantify the difference in corneal thickness between the central and thinnest points (∆PachyZ-PachyD), the distance between the center of the cornea and its thinnest point (vector length PachyD) and to explore the impact of refractive state, age and ocular side. PATIENTS AND METHODS This was a multicenter, retrospective, cross-sectional study and medical records of 16,872 eyes were reviewed. The Orbscan® (Bausch and Lomb) procedure was used for pachymetry and keratometry. RESULTS The results showed that ∆PachyZ-PachyD and vector length PachyD were higher in hyperopic eyes (∆PachyZ-PachyD: 11.99 ± 12.08 µm, vector length PachyD: 0.85 ± 0.44 mm) compared to myopic eyes (∆PachyZ-PachyD: 9.2 ± 7.86 µm, vector length PachyD: 0.7 ± 0.37 mm; p < 0.001). Refractive state, age and ocular side demonstrated an independent, statistically significant impact on ∆PachyZ-PachyD and vector length PachyD. CONCLUSIONS As a result of the significant impact of refractive state, age and ocular side on ∆PachyZ-PachyD and vector length PachyD, these variables should be considered in a normative data collection.


Ophthalmologe | 2013

Differenz und Entfernung zwischen zentraler und dünnster Stelle der Hornhaut

J. Steinberg; C. Kohl; T. Katz; G. Richard; Stephan J. Linke

BACKGROUND The aim of the study was to quantify the difference in corneal thickness between the central and thinnest points (∆PachyZ-PachyD), the distance between the center of the cornea and its thinnest point (vector length PachyD) and to explore the impact of refractive state, age and ocular side. PATIENTS AND METHODS This was a multicenter, retrospective, cross-sectional study and medical records of 16,872 eyes were reviewed. The Orbscan® (Bausch and Lomb) procedure was used for pachymetry and keratometry. RESULTS The results showed that ∆PachyZ-PachyD and vector length PachyD were higher in hyperopic eyes (∆PachyZ-PachyD: 11.99 ± 12.08 µm, vector length PachyD: 0.85 ± 0.44 mm) compared to myopic eyes (∆PachyZ-PachyD: 9.2 ± 7.86 µm, vector length PachyD: 0.7 ± 0.37 mm; p < 0.001). Refractive state, age and ocular side demonstrated an independent, statistically significant impact on ∆PachyZ-PachyD and vector length PachyD. CONCLUSIONS As a result of the significant impact of refractive state, age and ocular side on ∆PachyZ-PachyD and vector length PachyD, these variables should be considered in a normative data collection.


Ophthalmologe | 2015

[Pachymetry and intraocular pressure measurement by corneal visualization Scheimpflug technology (Corvis ST): A clinical comparison to the gold standard].

J. Steinberg; J. Mehlan; Andreas Frings; Druchkiv; G. Richard; T. Katz; Stephan J. Linke


Ophthalmologe | 2014

Pachymetrie und Augeninnendruckmessung mittels Corneal-Visualization-Scheimpflug-Technologie (Corvis ST)

J. Steinberg; J. Mehlan; Andreas Frings; V. Druchkiv; G. Richard; T. Katz; Stephan J. Linke


Ophthalmologe | 2017

Multifokale Intraokularlinsen (MIOL) bei jungen, nicht-presbyopen Patienten

Andreas Frings; J. Steinberg; Stephan J. Linke; V. Druchkiv; T. Katz


Ophthalmologe | 2016

Multifokale Intraokularlinsen (MIOL) bei jungen, nicht-presbyopen Patienten : Sinnvoll und sicher?

Andreas Frings; J. Steinberg; Stephan J. Linke; Druchkiv; T. Katz

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Rudolph Reimer

Heinrich Pette Institute

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Nathan Jowett

Massachusetts Eye and Ear Infirmary

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