By John Thomas
Part 1: Cornea, 1. Corneal Hysteresis and Biomechanics of the conventional Cornea, 2. Corneal body structure, three. Corneal Endothelium in overall healthiness and sickness, part 2: Corneal Imaging, four. Optical Coherence Tomography (OCT) of the Anterior phase, five. Optical Coherence Tomography in Corneal Implant surgical procedure, 6. Use of Optical Coherence Tomography (OCT) in Descemets Stripping with Endothelial Keratoplasty (DSEK) and Descemets Stripping automatic Endothelial Keratoplasty (DSAEK), 7. Imaging of the Cornea and Anterior phase with High-Frequency Ultrasound, eight. Confocal Microscopy of the Cornea, part three: subsequent iteration working Microscope, nine. subsequent new release working Microscope: 3D electronic Microscope and Microsurgical computer, 10. function of Surgical Slit-lamp in Endothelial Transplantation and Anterior section surgical procedure, part four: Surgical tools, eleven. New/Useful Surgical tools in DSAEK, part five: synthetic Anterior Chambers, 12. synthetic Anterior Chambers, part 6: category of Lamellar Corneal surgical procedure, thirteen. Definition, Terminology and type of Lamellar Corneal surgical procedure, part 7: background, part eight: Deep Lamellar Endothelial Keratoplasty (DLEK), 15. Deep Lamellar Endothelial Keratoplasty (DLEK): huge Incision method, sixteen. Deep Lamellar Endothelial Keratoplasty (DLEK): A process for particular situations of Endothelial disorder, 17. Deep Lamellar Endothelial Keratoplasty: Small Incision procedure mixed with Phacoemulsification and Posterior Chamber IOL, 18. Deep Lamellar Endothelial Keratoplasty (DLEK) mixed with Scleral-fixated Posterior Chamber Intraocular Lens Implantation, part nine: Descemets Stripping computerized Endothelial Keratoplasty (DSAEK), 19. Eye Banking and Donor Corneal Tissue instruction in DSAEK, 20. Endothelial Keratoplasty: A step-by-step consultant to DSEK and DSAEK surgical procedure, 21. enhanced DSAEK surgical procedure for greater Endothelial Survival, 22. Endothelial Keratoplasty: visible and Refractive results, 23. DSAEK Simplified Surgical approach, 24. Surgical approach for Descemet Stripping automatic Endothelial Keratoplasty (DSAEK), 25. Descemets Stripping Endothelial Keratoplasty (DSEK), via a three mm Incision utilizing the Tri-fold procedure, 26. Femtosecond Laser (IntralaseÃ‚Â®) Descemets Stripping Endothelial Keratoplasty (Femto-DSEK): preliminary stories of Surgical approach in Human Eyes, 27. innovations to Facilitate Disk Adherence to Recipient Cornea in DSAEK, 28. worry administration in DSAEK, 29. Unanswered Questions in DSAEK, 30. Use of Eye financial institution Pre-cut Donor Tissue in DSAEK, Seciton 10: DLEK as opposed to DSAEK, 31. comparability of Wound structure in DLEK as opposed to DSAEK, 32. Use of Dyes in DSAEK and DLEK, 33. Comparative visible restoration in DSAEK, DLEK and PKP, part eleven: DMEK and destiny instructions in Posterior, 34. Posterior Lamellar Keratoplasty utilizing Tissue Adhesive, 35. Novel strategy for Corneal Endothelial mobile Transplantation utilizing Descemet Membrane as a service, 36. precise Endothelial mobilephone (TEnCell) Transplantation, 37. Descemet Membrane Endothelial Keratoplasty (DMEK), 38. Corneal Endothelial Reconstruction with a Bioengineered cellphone Sheet, 39. way forward for Posterior Lamellar Keratoplasty.
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Additional resources for Corneal Endothelial Transplant: (DSAEK, DMEK & DLEK)
Circumferential orientation 4. Greater resistance to swelling Collagen lamellae in the anterior cornea: 1. Anterior strands insert into Bowman’s layer 2. Greater proteoglycan bonding centrally 3. 15 Metrics of Corneal Biomechanical Properties In the terminology of material science, the cornea is a complex composite (of collagen, other proteins, proteoglycans, water, and salts) with non-linear elastic and viscoelastic properties characterized by important local variation in organization in central versus peripheral and anterior versus posterior dimensions.
7. 8. 9. Elasticity Viscoelasticity Hysteresis ORA corneal resistance factor Creep Stress relaxation Sheer strength Ocular rigidity PASCAL ocular pulse amplitude Elasticity (Young’s modulus, E) is an indicator of material stiffness, with a higher modulus corresponding to a stiffer material. For example, a metallic rod would have a higher modulus than a wood rod (Figure 1-1). 16 Elasticity is traditionally measured ex vivo with an extensiometer that records the force generation required during steady axial elongation of a tissue sample.
Active sodium transport in the isolated bullfrog cornea. Biochim Biophys Acta 1968;163(2):262-5. 23. Fischer FH, Schmitz L, Hoff W, Schartl S, Liegl O, Wiederholt M. Sodium and chloride transport in the isolated human cornea. Pflugers Arch 1978;373(2):179-88. 24. Zadunaisky JA. Active transport of chloride in frog cornea. Am J Physiol 1966;211(2):506-12. 25. Wiederholt M. Physiology of epithelial transport in the human eye. Klin Wochenschr 1980;58(19):975-84. 26. Zadunaisky JA, Lande MA. Active chloride transport and control of corneal transparency.
Corneal Endothelial Transplant: (DSAEK, DMEK & DLEK) by John Thomas