Photography of the anterior eye segment according to Scheimpflug's principle: options and limitations – a review
暂无分享,去创建一个
[1] Hauptmann Scheimpflug. Die technischen und wirtschaftlichen Chancen einer ausgedehnten Kolonial-Vermessung , 1910 .
[2] R. C. Drews,et al. Depth of Field in Slit Lamp Photography , 1964 .
[3] R C DREWS,et al. DEPTH OF FIELD IN SLIT LAMP PHOTOGRAPHY. AN OPTICAL SOLUTION USING THE SCHEIMPFLUG PRINCIPLE. , 1964, Ophthalmologica. Journal international d'ophtalmologie. International journal of ophthalmology. Zeitschrift fur Augenheilkunde.
[4] P. Niesel. Spaltlampenphotographie der Linse für Messzwecke , 1966 .
[5] N. Brown. Slit-image photography. , 1970, Transactions of the ophthalmological societies of the United Kingdom.
[6] N. Brown. Quantitative slit-image photography of the lens. , 1972, Transactions of the ophthalmological societies of the United Kingdom.
[7] V. Dragomirescu,et al. Development of a New Equipment for Rotating Slit Image Photography According to Scheimpflug’s Principle , 1978 .
[8] T. Dawber,et al. The Framingham Eye Study monograph: An ophthalmological and epidemiological study of cataract, glaucoma, diabetic retinopathy, macular degeneration, and visual acuity in a general population of 2631 adults, 1973-1975. , 1980, Survey of ophthalmology.
[9] C. Ohrloff,et al. Evaluation of the ocular safety of verapamil. Scheimpflug photography with densitometric image analysis of lens transparency in patients with hypertrophic cardiomyopathy subjected to long-term therapy with high doses of verapamil. , 1984, Ophthalmic research.
[10] C. Ohrloff,et al. Evaluation of the Ocular Safety of Verapamil , 1984 .
[11] H. Laser,et al. Measuring lens transparency by scheimpflug photography of the anterior eye segment: principle, instrumentation, and application to clinical and experimental ophthalmology , 1987 .
[12] L T Chylack,et al. Sources of variance in the objective documentation of human cataractous change with Topcon SL-45 and Neitz-CTR retroillumination photography and computerized image analysis. , 1987, Current eye research.
[13] O. Hockwin,et al. Evaluation of cataract-related risk factors using detailed classification systems and multivariate statistical methods. , 1987, Developments in ophthalmology.
[14] Improved biometry of the anterior eye segment. , 1989, Ophthalmic research.
[15] C. Jahn,et al. Role of metabolic risk factors in the pathogenesis of different morphologies of senile cataract. The special position of the posterior subcapsular cataract. , 1989, Developments in ophthalmology.
[16] M. Busin,et al. In vivo evaluation of epikeratophakia lenses by means of Scheimpflug photography. , 1989, Refractive & corneal surgery.
[17] H. Laser,et al. Physiologic changes of lens transparency during ageing: a Scheimpflug photography study. , 1989, Developments in ophthalmology.
[18] N. Bressler,et al. The grading and prevalence of macular degeneration in Chesapeake Bay watermen. , 1989, Archives of ophthalmology.
[19] H. Taylor,et al. Ultraviolet radiation and the eye: an epidemiologic study. , 1989, Transactions of the American Ophthalmological Society.
[20] O. Hockwin,et al. No lens changes caused by simvastatin results from a prospective drug safety study. , 1990, Lens and eye toxicity research.
[21] H. Laser,et al. Comparison between Topcon SL-45 and SL-45B with different correction methods for factors influencing Scheimpflug examination. , 1990, Ophthalmic research.
[22] K Sasaki,et al. The multi-purpose camera: a new anterior eye segment analysis system. , 1990, Ophthalmic research.
[23] M Kojima,et al. Imaging characteristics of three cameras using the Scheimpflug principle. , 1990, Ophthalmic research.
[24] F. Koch,et al. Comparison of Scheimpflug-photography, specular microscopy and scanning electron microscopy to detect corneal changes in toxicity studies in rats. , 1990, Lens and eye toxicity research.
[25] John M Sparrow,et al. The Oxford modular cataract image analysis system , 1990, Eye.
[26] M. Busin,et al. Physiologic analysis of corneal healing after epikeratophakia. , 1992, Ophthalmology.
[27] M. C. Leske,et al. The Lens Opacities Classification System III , 1993 .
[28] Thomas Berg,et al. Analysis of intraocular straylight, especially in relation to age. , 1995 .
[29] T. J. van den Berg,et al. Analysis of intraocular straylight, especially in relation to age. , 1995, Optometry and vision science : official publication of the American Academy of Optometry.
[30] F. Fraunfelder. Drug-Induced Ocular Side Effects , 1996 .
[31] N. Sergienko,et al. Use of subjective and nonsubjective methodologies to evaluate lens radiation damage in exposed populations — an overview , 1996, Radiation and environmental biophysics.
[32] R. Cumming,et al. Prevalence of cataract in Australia: the Blue Mountains eye study. , 1997, Ophthalmology.
[33] K. Sasaki. Cataract Epidemiology Performed with Scheimpflug Documentation , 1999, Ophthalmic Research.
[34] U. Müller-Breitenkamp,et al. Light Scattering in the Human Lens in Childhood and Adolescence , 1999, Ophthalmic Research.
[35] S. Richer,et al. Nutritional and Environmental Influences on the Eye , 2000 .
[36] N. Eter,et al. Radiotherapy for age related macular degeneration causes transient lens transparency changes , 2000, The British journal of ophthalmology.
[37] Universal Opacity Standard for Scheimpflug Photography , 2000, Ophthalmic Research.
[38] M. Dubbelman,et al. The shape of the aging human lens: curvature, equivalent refractive index and the lens paradox , 2001, Vision Research.
[39] P. Midtlyng,et al. Light Scattering in Normal and Cataractous Lenses of Farmed Atlantic Salmon (Salmo salar): A Slit Lamp and Scheimpflug Photographic Study , 2001, Ophthalmic Research.
[40] F. Jónasson,et al. Risk factors for nuclear lens opacification: the Reykjavik Eye Study. , 2002, Developments in ophthalmology.
[41] R. Ansari,et al. A clinical study of the human lens with a dynamic light scattering device. , 2002, Experimental eye research.
[42] Rob G L van der Heijde,et al. Radius and asphericity of the posterior corneal surface determined by corrected Scheimpflug photography. , 2002, Acta ophthalmologica Scandinavica.
[43] A. Wegener,et al. Age-Related Light Scattering in Rat Lenses Observed in a 2-Year Inhalation Toxicity Study , 2002, Ophthalmic Research.
[44] V. Dragomirescu,et al. Measurements of lens transparency or its disturbances by densitometric image analysis of scheimpflug photographs , 2004, Graefe's Archive for Clinical and Experimental Ophthalmology.
[45] H. Koch,et al. Kortikosteroidkatarakte nach Nierentransplantation , 1975, Albrecht von Graefes Archiv für klinische und experimentelle Ophthalmologie.
[46] T. Kohnen,et al. Ten-year follow-up of a ciliary sulcus-fixated silicone phakic posterior chamber intraocular lens. , 2004, Journal of cataract and refractive surgery.
[47] O. Hockwin,et al. Correlation of Scheimpflug photography of the anterior eye segment with biochemical analysis of the lens , 2005, Graefe's Archive for Clinical and Experimental Ophthalmology.
[48] B. Meinhardt,et al. Evaluation of biometric methods for measuring the anterior chamber depth in the non-contact mode , 2006, Graefe's Archive for Clinical and Experimental Ophthalmology.
[49] C. Lautenschläger,et al. Changes in the lens epithelium with respect to cataractogenesis—light microscopic and Scheimpflug densitometric analysis of the cataractous and the clear lens of diabetics and non-diabetics , 2006, Graefe's Archive for Clinical and Experimental Ophthalmology.
[50] H. Laser,et al. Investigations on rat eyes with diabetic cataract and naphthalene cataract by Zeiss-Scheimpflug measuring system SLC , 2005, Graefe's Archive for Clinical and Experimental Ophthalmology.
[51] K. Miyata,et al. Comparison of central corneal thickness measurements by rotating Scheimpflug camera, ultrasonic pachymetry, and scanning-slit corneal topography. , 2006, Ophthalmology.
[52] Ramin Khoramnia,et al. Anterior chamber measurements using Pentacam rotating Scheimpflug camera , 2006, Journal of cataract and refractive surgery.
[53] Edward J K Lee,et al. Scheimpflug imaging to determine intraocular lens power in vivo , 2007, Journal of cataract and refractive surgery.
[54] P. Hossain,et al. Recent advances in ophthalmic anterior segment imaging: a new era for ophthalmic diagnosis? , 2007, British Journal of Ophthalmology.
[55] Luuk Franssen,et al. Straylight effects with aging and lens extraction. , 2007, American journal of ophthalmology.
[56] M. Dubbelman,et al. Changes in the internal structure of the human crystalline lens with diabetes mellitus type 1 and type 2. , 2008, Ophthalmology.
[57] Y. Chen,et al. Correlation of lens density measured using the Pentacam Scheimpflug system with the Lens Opacities Classification System III grading score and visual acuity in age-related nuclear cataract , 2008, British Journal of Ophthalmology.
[58] Susan Vitale,et al. Clinical detection of precataractous lens protein changes using dynamic light scattering. , 2008, Archives of ophthalmology.
[59] Gagandeep Singh Brar,et al. Pentacam tomograms: a novel method for quantification of posterior capsule opacification. , 2008, Investigative ophthalmology & visual science.
[60] K. Pesudovs,et al. Anterior segment biometry with the Pentacam: Comprehensive assessment of repeatability of automated measurements , 2008, Journal of cataract and refractive surgery.
[61] K. Dierks,et al. Protein size resolution in human eye lenses by dynamic light scattering after in vivo measurements , 2009, Graefe's Archive for Clinical and Experimental Ophthalmology.