By Michael W. Belin - MD FACS, Stephen S. Khachikian - MD, Renato Ambrosio Jr. - MD PhD, Michael W. Belin, Stephen S. Khachikian, Renato Ambrosio Jr.
Chapter 1: creation and Overview
Chapter 2: Evolution of Topographic / Tomographic Imaging
Chapter three: figuring out Elevation dependent Topography: How Elevation info is Displayed
Chapter four: the significance of realizing the Reference Surface
Chapter five: prompt Set-up and Screening Guidelines
Chapter 6: Normative info for the Oculus Pentacam
Chapter 7: complete Pachymetric Evaluation
Chapter eight: Keratoconus / Ectasia Detection with a changed (Enhanced) Reference floor - Belin / Ambrósio greater Ectasia reveal III
Chapter nine: Keratoconus & Ectasia Detection: uneven Keratoconus & submit LASIK Ectasia Study
Chapter 10: functions of man-made Intelligence options for making improvements to Tomographic Screening for Ectasia
Chapter eleven: Elevation Topography Atlas
Chapter 12: Scheimpflug pictures in medical Practice
Chapter thirteen: BESSt 2 formulation for IOL Calculation
Chapter 14: review of Corneal Optical caliber for top class IOLs with Pentacam HR
Chapter 15: Scheimpflug overview of basic attitude Closure Glaucoma
Chapter sixteen: different Displays
Chapter 17: using Pentacam in a Cataract Practice
Chapter 18: Glossary
Language: English / Spanish
Number of Pages: 262
Publication yr: 2012 (2e)
Binding: demanding disguise
Publisher: Jaypee-Highlights scientific Publishers, Inc.
Read Online or Download Elevation Based Corneal Tomography PDF
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Additional info for Elevation Based Corneal Tomography
Posterior corneal surface topographic changes after laser in situ keratomileusis are related to residual corneal bed thickness. Ophthalmology 1999;106:406-9. 26. Baek T, Lee K, Kagaya F, et al. Factors affecting the forward shift of posterior corneal surface after laser in situ keratomileusis. Ophthalmology 2001;108:317-20. 27. Ciolino JB, Belin MW. Changes in the posterior cornea after laser in situ keratomileusis and photorefractive keratectomy. J Cataract Refract Surg 2006;32:1426-31. 28. Buehl W, Stojanac D, Sacu S, et al.
Am. A 15:2580-2588, 1998. 17. Rand R, Applegate R, Howland HC. A Mathematical Model of a Placido Disk Keratometer and its Implications for Recovery of Corneal Topography. Optom Vis Sci 74:926-930, 1997. 18. Belin MW, Litoff D, Strods SJ, et al: The PAR Technology Corneal Topography System. Refrac Corneal Surg 8:88-96, 1992. 19. Bonnet R, Le Grand Y, Rapilly C. La Topographie Corneenne. Paris, France: N. Desroches:1964. 20. Belin MW, Cambier JL, Nabors JR, et al: PAR Corneal Topography System (PAR CTS): the clinical application of close-range photogrammetry.
The information provided, however, is for naught if it is not conveyed in a manner that is easily interpreted by the clinician. CHAPTER 2. EVOLUTION OF TOPOGRAPHIC / TOMOGRAPHIC IMAGING 23 REFERENCES 1. Belin MW: Intraoperative raster photogrammetry--the PAR Corneal Topography System. J Cataract Refract Surg 19:188-192, 1993. 2. Schwiegerling J, Snyder RW, Lee JH: Wavefront and topography: keratome-induced corneal changes demonstrate that both are needed for custom ablation. J Refract Surg 18: 584-588, 2002.