Ophthalmic Technologies XVIII
by Manns, Fabrice; Soederberg, Per G.; Ho, Arthur; Stuck, Bruce E.; Belkin, MichaelRent Textbook
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Summary
Table of Contents
| Ophthalmic Technologies | |
| Ophthalmic Imaging I: Animal Models | |
| In vivo imaging of raptor retina with ultra high resolution spectral domain optical coherence tomography | |
| Ophthalmic Imaging II: Adaptive Optics | |
| Methods of isoplanatic patch widening in human eye retina imaging | |
| Ultra-high resolution adaptive optics: optical coherence tomography for in vivo imaging of healthy and diseased retinal structures | |
| Optical Coherence Tomography I: Instrumentation and Image Processing | |
| Improved representation of retinal data acquired with volumetric Fd-OCT: co-registration, visualization, and reconstruction of a large field of view | |
| Fast detection and segmentation of drusen in retinal optical coherence tomography images | |
| Keynote Lecture | |
| Technology needs for tomorrow's treatment and diagnosis of macular diseases | |
| Ophthalmic Imaging III: Functional Imaging | |
| Improved diagnostics by automated matching and enhancement in fluorescein angiography of the ocular fundus | |
| Optical imaging of the retina in response to the electrical stimulation | |
| Frequency encoded assessment of retinal physiology | |
| Mapping of photoreceptor dysfunction using high resolution three-dimensional spectral optical coherence tomography | |
| Retinal blood flow analysis using joint spectral and time domain optical coherence tomography | |
| Visual Optics and Biometry | |
| Improved sensitivity measurement of the human eye length in vivo with Fourier domain optical coherence tomography | |
| Mechanical properties of intra-ocular lenses | |
| Typical crosscorrelation between two eyes found in fluctuation of accommodation but not in aberrations | |
| Ophthalmic Tissue Optics and Light-Tissue Interactions | |
| Fs-lentotomy: first in vivo studies on rabbit eyes with a 100 kHz laser system | |
| Laser parameters, focusing optics, and side effects in femtosecond laser corneal surgery | |
| Ocular Surgery and Therapy | |
| UV collagen cross-linking of the cornea: safety aspects and design of a UV illumination system | |
| Combining femtosecond laser ablation and diode laser welding in lamellar and endothelial corneal transplants | |
| Measuring performance in virtual reality phacoemulsification surgery | |
| Ophthalmic Diagnostics I: Microscopy, Scattering, Spectroscopy | |
| The impact of horizontal offset of the cornea during corneal specular microscopy | |
| Ex-vivo multiphoton analysis of rabbit corneal wound healing following photorefractive keratectomy | |
| Multiphoton fluorescence and second harmonic generation microscopy for imaging corneal edema | |
| A polarization measurement method for the quantification of retardation in optic nerve fiber layer | |
| Imaging the anterior eye segment by polarization-sensitive spectral-domain and swept-source optical coherence tomography | |
| Imaging polarimetry of macular disease | |
| Optical Coherence Tomography III: Clinical Applications | |
| Direct visualization of tear film on soft contact lens using ultra-high resolution spectral domain optical coherence tomography | |
| High-penetration imaging of retinal and choroidal pathologies by 1 [mu]m swept-source OCT and optical coherence angiography | |
| Laser and Noncoherent Light Ocular Effects | |
| Session 13 | |
| Retinal thermal laser damage thresholds for different beam profiles and scanned exposure | |
| Determination of the time dependence of colored afterimages | |
| Role of superoxide dismutase in the photochemical response of cultured RPE cells to laser exposure at 413 nm | |
| Ocular laser bioeffects in Operation Iraqi Freedom | |
| Psychophysical and perceptual performance in a simulated-scotoma model of human eye injury | |
| Color and contrast sensitivity after glare from high-brightness LEDs | |
| Poster Session | |
| Detecting thermal phase transitions in corneal stroma by fluorescence micro-imaging analysis | |
| Gold nanorods as exogenous chromophores in the welding of ocular tissues | |
| High luminance application of orange fiber laser | |
| Author Index | |
| Table of Contents provided by Blackwell. All Rights Reserved. |
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