1. Jeffrey M. Liebmann

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    1. Mentioned In 57 Articles

    2. Confocal Adaptive Optics Imaging of Peripapillary Nerve Fiber Bundles: Implications for Glaucomatous Damage Seen on Circumpapillary OCT Scans

      Confocal Adaptive Optics Imaging of Peripapillary Nerve Fiber Bundles: Implications for Glaucomatous Damage Seen on Circumpapillary OCT Scans
      ...ng optical coherence tomography data. Transl Vis Sci Technol. 2012; 1: 1–15. Hood DC, Raza AS, de Moraes CG, Liebmann JM, Ritch R. Glaucomatous damage of the macula. Prog Retin Eye Res. 2013; 32: 1–21. Fortune B, Burgo...
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    3. Correlation between depth and area of retinal nerve fiber layer defect as measured by spectral domain optical coherence tomography

      Correlation between depth and area of retinal nerve fiber layer defect as measured by spectral domain optical coherence tomography
      ...use atrophy imaging study. Ophthalmology 117:1946–1952 Mwanza JC, Durbin MK, Budenz DL, Girkin CA, Leung CK, Liebmann JM, Peace JH, Werner JS, Wollstein G, Cirrus OCT Normative Database Study Group (2010) Profile and pr...
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    4. Structural and functional changes in glaucoma: comparing the two-flash multifocal electroretinogram to optical coherence tomography and visual field

      Structural and functional changes in glaucoma: comparing the two-flash multifocal electroretinogram to optical coherence tomography and visual field
      ... region in patients with glaucoma. Br J Ophthalmol 90:1393–1397 Hood DC, Raza AS, de Moraes CGV, Johnson CA, Liebmann JM, Ritch R (2012) The nature of macular damage in glaucoma as revealed by averaging optical coherenc...
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    5. Difference in correspondence between visual field defect and inner macular layer thickness measured using three types of spectral-domain OCT instruments

      Difference in correspondence between visual field defect and inner macular layer thickness measured using three types of spectral-domain OCT instruments
      ...cal visual field sensitivity in glaucoma. Arch Ophthalmol. 2011;129:1529–36. Hood DC, Raza AS, de Moraes CG, Liebmann JM, Ritch R. Glaucomatous damage of the macula. Prog Retin Eye Res. 2013;32:1–21. doi: Difference in...
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    6. Improving Glaucoma Detection Using Spatially Correspondent Clusters of Damage and by Combining Standard Automated Perimetry and Optical Coherence Tomography

      Improving Glaucoma Detection Using Spatially Correspondent Clusters of Damage and by Combining Standard Automated Perimetry and Optical Coherence Tomography
      PURPOSE. To improve the detection of glaucoma, techniques for assessing local patterns of damage and for combining structure and function were developed. METHODS. Standard automated perimetry (SAP) and frequency-domain optical coherence tomography (fdOCT) data, consisting of macular retinal ganglion cell plus inner plexiform layer (mRGCPL) as well as macular and optic disc retinal nerve fiber layer (mRNFL and dRNFL) thicknesses, were collected from 52 eyes of 52 healthy controls and ...
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    7. A comparison of false positives in retinal nerve fiber layer, optic nerve head and macular ganglion cell-inner plexiform layer from two spectral-domain optical coherence tomography devices

      A comparison of false positives in retinal nerve fiber layer, optic nerve head and macular ganglion cell-inner plexiform layer from two spectral-domain optical coherence tomography devices
      ...ence tomography. Invest Ophthalmol Vis Sci 9:5853–5859 Mwanza JC, Durbin MK, Budenz DL, Girkin CA, Leung CK, Liebmann JM, Peace JH, Werner JS, Wollstein G (2011) Profile and predictors of normal ganglion cell-inner plex...
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    8. The Locations of Circumpapillary Glaucomatous Defects Seen on Frequency-Domain OCT Scans

      The Locations of Circumpapillary Glaucomatous Defects Seen on Frequency-Domain OCT Scans
      Purpose. To examine the locations of local glaucomatous damage around the optic disc as seen in the circumpapillary retinal nerve fiber layer (RNFL) on frequency domain optical coherence tomography (fdOCT). Methods. Optic disc fdOCT volume scans from 54 healthy control eyes and 114 patient eyes, classified as suspected or mild glaucoma, were analyzed. All patient eyes had 24-2 visual fields (VFs) with mean deviations better than 5.5 dB. By ...
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    9. The glaucoma detection capability of spectral-domain OCT and GDx-VCC deviation maps in early glaucoma patients with localized visual field defects

      The glaucoma detection capability of spectral-domain OCT and GDx-VCC deviation maps in early glaucoma patients with localized visual field defects
      ...th normal-tension glaucoma. Ophthalmology 113:1954–1960 Mwanza JC, Durbin MK, Budenz DL, Girkin CA, Leung CK, Liebmann JM, Peace JH, Werner JS, Wollstein G (2011) Profile and predictors of normal ganglion cell-inner plex...
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    10. Enhanced Depth Imaging Optical Coherence Tomography of Optic Nerve Head Drusen

      Enhanced Depth Imaging Optical Coherence Tomography of Optic Nerve Head Drusen
      Objective To assess the value of enhanced depth imaging optical coherence tomography (EDI OCT) in diagnosing and evaluating optic nerve head drusen (ONHD) compared with conventional diagnostic methods. Design Prospective, comparative, cross-sectional study. Participants Thirty-four patients with clinically visible or suspected ONHD in either eye based on dilated optic disc examination or optic disc stereophotography and without ocular comorbidity. Methods Spectral-domain OCT of the optic nerve head in both conventional ...
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    11. The American Glaucoma Society Workshop on "The Validity, Reliability, and Usability of Glaucoma Imaging Devices", October 5, 2012.

      The American Glaucoma Society Workshop on "The Validity, Reliability, and Usability of Glaucoma Imaging Devices", October 5, 2012.
      The American Glaucoma Society is co-sponsoring a Workshop with the FDA. The Workshop will focus on the Validity, Reliability and Usability of Glaucoma Imaging Devices. It will be held Friday, October 5, 2012 at the FDA White Oak Campus in Silver Spring, MD. For more informationclickHERE,and/or HERE,and/orvisit the AGS website www.americanglaucomasociety.net.
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    12. Understanding Disparities Among Diagnostic Technologies in Glaucoma

      Understanding Disparities Among Diagnostic Technologies in Glaucoma
      Objective To investigate causes of disagreement among 3 glaucoma diagnostic techniques: standard automated achromatic perimetry (SAP), the multifocal visual evoked potential technique (mfVEP), and optical coherence tomography (OCT). Methods In a prospective cross-sectional study, 138 eyes of 69 patients with glaucomatous optic neuropathy were tested using SAP, the mfVEP, and OCT. Eyes with the worse and better mean deviations (MDs) were analyzed separately. If the results of 2 tests were ...
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    13. 16-30 of 57 « 1 2 3 4 »
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  2. About Jeffrey M. Liebmann

    Jeffrey M. Liebmann is a clinical professor of Ophthalmology at  New York University School of Medicine.