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Featured researches published by M. Horne.


Investigative Ophthalmology & Visual Science | 2012

Scanning laser polarimetry reveals status of RNFL integrity in eyes with optic nerve head swelling by OCT.

Mark J. Kupersmith; Randy H. Kardon; Mary K. Durbin; M. Horne; Julia P. Shulman

PURPOSE Optical coherence tomography (OCT) shows retinal nerve fiber layer (RNFL) thickening in optic nerve head (ONH) swelling, but does not provide information on acute axonal disruption. It was hypothesized that scanning laser polarimetry (SLP) compared with OCT might reveal the status of axon integrity and visual prognosis in acute RNFL swelling. METHODS Threshold perimetry, OCT, and SLP were used to prospectively study eyes with papilledema (24), optic neuritis (14), nonarteritic anterior ischemic optic neuropathy (NAION) (21), and ONH swelling (average RNFL value by OCT was above the 95th percentile of controls at presentation). Regional RNFL was judged reduced if the quadrant measurement was below the fifth percentile of controls. RESULTS At presentation, average RNFL by OCT was similar for eyes with papilledema and NAION (P = 0.97), and reduced for optic neuritis. Average RNFL by SLP was slightly increased for papilledema and optic neuritis, and reduced for NAION (P = 0.02) eyes. The RNFL by SLP was reduced in at least one quadrant in 1 eye with papilledema, 1 eye with optic neuritis, and in 13 eyes with NAION. In NAION eyes, quadrants with reduced SLP had corresponding visual field loss that did not recover. By one month, eyes with NAION showed RNFL thinning by OCT (7/17 eyes) and by SLP (14/16 eyes) in contrast to optic neuritis (by OCT, 0/12, P = 0.006; and by SLP, 1/12, P = 0.0004). CONCLUSIONS OCT and SLP revealed different aspects of RNFL changes associated with ONH swelling. OCT revealed thickening due to edema. SLP revealed a decrease in retardance in eyes with axonal injury associated with visual field loss, which is unlikely to recover.


Archive | 2014

User interface for acquisition, display and analysis of ophthalmic diagnostic data

Julia Coelho; M. Horne; Harihar Narasimha-Iyer; Christine N. Ritter; Siddharth Srivastava; Marc D. Stern; Zheen Zhao; Suzanne M. Thompson; Raphaël Guilleminot; Jayson Arthur Mccauliff


Investigative Ophthalmology & Visual Science | 2008

Inter-Visit and Inter-Instrument Variability for Cirrus HD-OCT Peripapillary Retinal Nerve Fiber Layer Thickness Measurements

M. Horne; Thomas Callan; Mary K. Durbin; T. Abunto


Investigative Ophthalmology & Visual Science | 2012

Information On Neuronal Ageing From OCT Evaluation Of The Retina

Rui Bernardes; Torcato Santos; Pedro Serranho; M. Horne; Mary K. Durbin; José Cunha-Vaz


Investigative Ophthalmology & Visual Science | 2012

Automatic Identification Of Eyes With Diabetic Retinopathy By OCT

Torcato Santos; M. Horne; Mary K. Durbin; Rui Bernardes; José Cunha-Vaz


Investigative Ophthalmology & Visual Science | 2011

Optical Imaging Differentiation of RNFL Changes Due to Optic Nerve Head Swelling

Mark J. Kupersmith; G. Mandel; M. Horne; Mary Durbin; Randy H. Kardon


Investigative Ophthalmology & Visual Science | 2009

Non-invasive Assessment of Blood-retinal Barrier Changes by Cirrus HD-OCT

Rui Bernardes; Torcato Santos; M. Horne; José Cunha-Vaz


Investigative Ophthalmology & Visual Science | 2008

Effect of the Alignment Overlay Tool on Scan Placement Repeatability of the CirrusTm HD-OCT

K. Soules; Mary K. Durbin; T. Abunto; M. Horne; Thomas Callan; A. Singh-Walia


Investigative Ophthalmology & Visual Science | 2008

Inter-Visit and Inter-Instrument Variability of Retinal Thickness Measurements on Healthy Subjects by CirrusTM HD-OCT

Thomas Callan; M. Horne; Mary K. Durbin; T. Abunto


Investigative Ophthalmology & Visual Science | 2008

Distribution of Retinal Nerve Fiber Layer Thickness Using CirrusTM HD-OCT Spectral Domain Technology

R. Gurses-Ozden; Mary K. Durbin; Thomas Callan; M. Horne; K. Soules

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Mark J. Kupersmith

Icahn School of Medicine at Mount Sinai

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