$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Photorefractive keratectomy 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-005/02
  • A61N-005/06
출원번호 US-0081986 (1987-08-05)
발명자 / 주소
  • Munnerlyn Charles R. (Sunnyvale CA)
출원인 / 주소
  • VISX, Incorporated (Sunnyvale CA 02)
인용정보 피인용 횟수 : 150  인용 특허 : 0

초록

Photorefractive keratectomy is accomplished by an excimer laser beam that ablates away corneal tissue in a photo decomposition process. Before this occurs, the epithelium (21) of the cornea (20) is surgically removed to expose Bowman\s layer (22) on the anterior surface of the stroma (23) and to beg

대표청구항

A photorefractive keratectomy method for operating on an eye having a cornea, said cornea having an anterior surface and comprising an epithelium, a Bowman\s layer, and stroma, said epithelium, said Bowman\s layer, and said stroma each having an anterior surface, said method comprising the steps of:

이 특허를 인용한 특허 (150)

  1. Frey Rudolph W., Ablatement designed for dark adaptability.
  2. Gross, Erik, Ablation shape for the correction of presbyopia.
  3. Dai, Guang-ming; Zickler, Leander, Accommodation compensation systems and methods.
  4. Dai, Guang-ming; Zickler, Leander, Accommodation compensation systems and methods.
  5. Dai, Guang-ming; Zickler, Leander, Accommodation compensation systems and methods.
  6. Dai, Guang-ming; Zickler, Leander, Accommodation compensation systems and methods.
  7. Raymond, Thomas D.; Reid, Devon E., Angular multiplexed optical coherence tomography systems and methods.
  8. Raymond, Thomas D.; Reid, Devon E., Angular multiplexed optical coherence tomography systems and methods.
  9. Raymond, Thomas D.; Reid, Devon E., Angular multiplexed optical coherence tomography systems and methods.
  10. Ruiz Luis Antonio,COX, Apparatus and method for performing presbyopia corrective surgery.
  11. Ruiz Luis Antonio,COX, Apparatus and method for performing presbyopia corrective surgery.
  12. Ruiz, Luis Antonio, Apparatus and method for performing presbyopia corrective surgery.
  13. Hamann, Christoph, Apparatus and method of forming orifices and chamfers for uniform orifice coefficient and surface properties by laser.
  14. Hamann, Christoph, Apparatus and method of overlapping formation of chamfers and orifices by laser light.
  15. Amano Masanori,JPX ; Makino Hirokatsu,JPX, Apparatus for operating upon a cornea.
  16. Sumiya Toshifumi (Nukata-gun JPX), Apparatus for operation on a cornea using laser-beam.
  17. Wang Ming X. ; Adams Christopher P., Biochemical contact lens for treating injured corneal tissue.
  18. Wang Ming X. ; Adams Christopher P., Biochemical contact lens for treating photoablated corneal tissue.
  19. Chernyak, Dimitri A.; Holliday, Keith; Clopp, Mathew, Calibrating laser beam position and shape using an image capture device.
  20. Chernyak, Dimitri A.; Holliday, Keith; Clopp, Mathew, Calibrating laser beam position and shape using an image capture device.
  21. Klopotek Peter J., Calibration apparatus for laser ablative systems.
  22. Tang Fuqian ; Han Xiaofeng, Compound astigmatic myopia or hyperopia correction by laser ablation.
  23. Muller David F. ; Sacharoff Alex C. ; Klopotek Peter J., Control of photorefractive keratectomy.
  24. Mrochen, Michael; Kaemmerer, Maik; Seiler, Theo, Control program for a device for photorefractive corneal surgery of the eye.
  25. Büeler, Michael; Mrochen, Michael, Control program for controlling electromagnetic radiation for cross-linking eye tissue.
  26. Williams, Roy E.; Freeman, Jerre M.; Freeman, James F., Control system for high resolution high speed digital micromirror device for laser refractive eye surgery.
  27. Nigam, Alok; Plambeck, Gregg Edmond; Schneider, Ned; Ariely, Adam; Matsuura, David; Simpson, Philip, Corneal implant applicators.
  28. Schneider, Ned; Le, Alan Ngoc; Dishler, Jon, Corneal implant inserters and methods of use.
  29. SChneider, Ned; Le, Alan Ngoc; Plambeck, Gregg Edmond, Corneal implant retaining devices and methods of use.
  30. Plambeck, Gregg Edmond; Schneider, Ned; Ariely, Adam; Matsuura, David G.; Simpson, Philip, Corneal implant storage and delivery devices.
  31. Gandianco Isidro ; Scholl John A., Corneal pocketing tool.
  32. Frey Rudolph W., Corneal tissue ablation designed for dark adaptability.
  33. Chernyak,Dimitri, Corneal topography-based target warping.
  34. Chernyak, Dimitri, Corneal topography-based target warping system.
  35. Dai, Guangming; Somani, Seema, Correction of presbyopia using adaptive optics, wavefront sensor eye alignment and light shield, and associated methods.
  36. Fuqian Tang, Device and method for correcting astigmatism by laser ablation.
  37. Yavitz Edward Q., Device and method for simulating ophthalmic surgery.
  38. Pallikaris, Ioannis; Ginis, Harilaos S., Device for separating the epithelium layer from the surface of the cornea of an eye.
  39. Seiler Theodor,DEX ; Borrmann Andreas,DEX, Device for the removal of tissue from the cornea of an eye.
  40. Apple Howard P. ; Nevitt Martin P. ; Han Xiaofeng, Eye illumination system and method.
  41. Apple Howard P. ; Nevitt Martin P. ; Han Xiaofeng, Eye illumination system and method.
  42. Howard P. Apple ; Martin P. Nevitt ; Xiaofeng Han, Eye illumination system and method.
  43. Yee, Kingman; Gross, Erik, Generating scanning spot locations for laser eye surgery.
  44. Yee,Kingman; Gross,Erik, Generating scanning spot locations for laser eye surgery.
  45. Dai, Guang-ming, Induced high order aberrations corresponding to geometrical transformations.
  46. Dai, Guang-ming, Induced high order aberrations corresponding to geometrical transformations.
  47. Dai, Guang-ming, Induced high order aberrations corresponding to geometrical transformations.
  48. Dai, Guang-ming, Induced high order aberrations corresponding to geometrical transformations.
  49. Spooner, Gregory John Roy, Laser apparatus and method for refractive surgery.
  50. Horsting,John James, Laser machining system for forming multiple machining spots by a single laser.
  51. Myers, Raymond I, Laser methods for creating an antioxidant sink in the crystalline lens for the maintenance of eye health and physiology and slowing presbyopia development.
  52. Myers, Raymond I, Laser methods for creating an antioxidant sink in the crystalline lens for the maintenance of eye health and physiology and slowing presbyopia development.
  53. Graczyk, Paul M., Laser surgery eye shield.
  54. Paul M. Graczyk, Laser surgery eye shield.
  55. Naranjo-Tackman, Ramón; Kuri, Jorge Octavio Villar; Frey, Rudolph W., Laser system and method for astigmatic corrections in association with cataract treatment.
  56. Naranjo-Tackman, Ramón; Kuri, Jorge Octavio Villar; Frey, Rudolph W., Laser system and method for correction of induced astigmatism.
  57. Frey, Rudolph W.; Naranjo-Tackman, Ramón, Laser system and method for performing and sealing corneal incisions in the eye.
  58. Bott, Steven E.; Frey, Rudolph W.; Porter, Gerrit N.; Wakefield, Scott Howard; Chura, William D., Laser system for treatment of the eye.
  59. Bott, Steven E.; Frey, Rudolph W.; Porter, Gerrit N.; Wakefield, Scott Howard; Chura, William D., Laser system for treatment of the eye.
  60. Myers, Raymond I., Lenticular refractive surgery of presbyopia, other refractive errors, and cataract retardation.
  61. Frey, Rudolph W.; Bott, Steven E.; Porter, Gerrit N., Liquid filled index matching device for ophthalmic laser procedures.
  62. Tang Fuqian ; Hwang Ming-Yi, Method and apparatus for controlling scanning of an ablating laser beam.
  63. Herekar Satish V. ; Woodward Benjamin W., Method and apparatus for exposing a human eye to a controlled pattern of radiation.
  64. O'Donnell, Jr., Francis E., Method and apparatus for improved PRK accuracy.
  65. Horsting, John James; Hamann, Christoph, Method and apparatus to form dimensionally consistent orifices and chamfers by laser using spatial filters.
  66. Horsting, John James; Gupta, Mool Chand, Method and apparatus to generate orifice disk entry geometry.
  67. John Karl Shimmick ; George Caudle ; Kingman Yee ; Stephen J. Koons, Method and system for ablating surfaces with partially overlapping craters having consistent curvature.
  68. Shimmick John K. ; Telfair William B. ; Munnerlyn Charles R. ; Glockler Herrmann J., Method and system for laser treatment of refractive errors using offset imaging.
  69. Shimmick, John K.; Telfair, William B.; Munnerlyn, Charles R.; Glockler, Herrmann J., Method and system for laser treatment of refractive errors using offset imaging.
  70. Frey, Rudolph W.; Gray, Gary P., Method and system for measuring an eye.
  71. Frey, Rudolph W.; Gray, Gary P., Method and system for removal and replacement of lens material from the lens of an eye.
  72. Clapham Terrance N., Method and system for removing an epithelial layer from a cornea.
  73. Odrich Marc ; Greenberg Kenneth ; Legerton Jerome A. ; Munnerlyn Charles R. ; Shimmick John K., Method and systems for laser treatment of presbyopia using offset imaging.
  74. Odrich, Marc; Greenberg, Kenneth; Legerton, Jerome A.; Munnerlyn, Charles R.; Shimmick, John K., Method and systems for laser treatment of presbyopia using offset imaging.
  75. Henry M. D'Souza ; Edwin J. Sarver ; Youssef S. Wakil, Method of corneal analysis using a checkered placido apparatus.
  76. Horsting, John James, Method of forming multiple machining spots by a single laser.
  77. Horsting, John James, Method of forming orifices and chamfers by collimated and non-collimated light.
  78. Mrochen, Michael; Kaemmerer, Maik; Seiler, Theo, Method of generating a control program for a device for photorefractive corneal surgery of the eye.
  79. O'Donnell ; Jr. Francis E., Method of improving photorefractive keratectomy by increasing ablation smoothness.
  80. Lin,Jui Teng, Methods and apparatus for presbyopia correction using ultraviolet and infrared lasers.
  81. Wong,Jonathan; Chernyak,Dimitri, Methods and systems for differentiating left and right eye images.
  82. Bor, Zsolt, Methods and systems for treating presbyopia.
  83. Holliday, Keith; Lang, Alan, Methods of correcting vision.
  84. Munnerlyn,Audrey; Caudle,George, Multiple beam laser sculpting system and method.
  85. Pop Mihai,CAX, Multizone, multipass photorefractive keratectomy.
  86. Tuan, Kuang Mon Ashley, Non-invasive measurement of tear volume systems and methods.
  87. Tuan, Kuang-Mon Ashley, Non-invasive measurement of tear volume systems and methods.
  88. Sumiya Toshifumi (Nukata-gun JPX), Operation apparatus for correcting ametropia with laser beam.
  89. Sumiya, Toshifumi, Operation apparatus for correcting ametropia with laser beam.
  90. J. T. Lin, Ophthalmic surgery method using non-contact scanning laser.
  91. Gross, Erik; Campbell, Charles, Optical surface shape determination by mapping a lenslet array spot pattern to a spatial frequency space.
  92. Gross, Erik; Campbell, Charles, Optical surface shape determination by mapping a lenslet array spot pattern to spatial frequency space.
  93. Muller David F. ; D'Agati Mike ; Friedman Marc ; Harmon Troy ; Klopotek Peter ; Sacharoff Alex ; Sherr Evan, Photo-refractive keratectomy.
  94. Somani, Seema; Yee, Kingman, Presbyopia correction through negative high-order spherical aberration.
  95. Somani,Seema; Yee,Kingman, Presbyopia correction through negative high-order spherical aberration.
  96. Somani, Seema; Yee, Kingman, Presbyopia correction through negative spherical aberration.
  97. Somani, Seema; Yee, Kingman, Presbyopia correction through negative spherical aberration.
  98. Klopotek Peter J., Profiling the intensity distribution of optical beams.
  99. Frey, Rudolph W.; Bott, Steven E., Purkinjie image-based alignment of suction ring in ophthalmic applications.
  100. Dai, Guang-ming, Random eye generation systems and methods.
  101. Dai, Guang-ming, Random eye generation systems and methods.
  102. Carriazo, Cesar C., Refractive laser ablation through topography.
  103. Lin,Jui Teng, Refractive surgery and presbyopia correction using infrared and ultraviolet lasers.
  104. Lin, Jui-Teng, Refractive surgical laser apparatus and method.
  105. Dai, Guang-Ming, Scaling Zernike coefficients to smaller pupil sizes for refractive treatments.
  106. Dai, Guang-ming, Scaling zernike coefficients to smaller pupil sizes for refractive treatments.
  107. Tang Fuqian, Smooth and uniform laser ablation apparatus and method.
  108. Gross, Erik; Campbell, Charles, Spatial frequency wavefront sensor system and method.
  109. Frey, Rudolph W.; Gray, Gary P.; Zepkin, Neil; Downes, Jr., George R.; De Castro, Jorge A.; Kuszak, Jerome R.; Olmstead, Richard Ty, System and apparatus for delivering a laser beam to the lens of an eye.
  110. Frey, Rudolph W.; Gray, Gary P.; Pape, Dennis R.; Downes, Jr., George R.; De Castro, Jorge A.; Kuszak, Jerome R., System and apparatus for treating the lens of an eye.
  111. Raymond, Thomas D.; Copland, Richard J., System and method for corneal pachymetry using plenoptic imaging.
  112. Zhao, Huawei; Chen, Li, System and method for determining ocular scattering.
  113. Bor, Zsolt; Dennison, Anthony; Campos, Michael; De Guzman, Peter Patrick, System and method for eye orientation.
  114. Frey, Rudolph W.; Gray, Gary P.; Kuszak, Jerome R., System and method for improving the accommodative amplitude and increasing the refractive power of the human lens with a laser.
  115. Zickler, Leander, System and method for laser ablation calibration.
  116. Copland, Richard J., System and method for ocular aberrometry and topography using plenoptic imaging.
  117. Copland, Richard J., System and method for ocular tomography using plenoptic imaging.
  118. Frey, Rudolph W.; Gray, Gary P.; Zepkin, Neil, System and method for performing LADAR assisted procedures on the lens of an eye.
  119. Frey, Rudolph W.; Bott, Steven E.; Gray, Gary P., System and method for providing laser shot patterns to the lens of an eye.
  120. Frey, Rudolph W.; Gray, Gary P.; Pape, Dennis R.; Subramaniam, Hari; Kuszak, Jerome R., System and method for providing the shaped structural weakening of the human lens with a laser.
  121. Thomas,David E., System and method for reconstruction of aberrated wavefronts.
  122. Holliday, Keith, System and method for stabilizing delivered laser energy.
  123. Frey, Rudolph W.; Olmstead, Richard Ty; Gray, Gary P.; Bott, Steven E.; Strobel, James, System and method of scan controlled illumination of structures within an eye.
  124. Shimmick, John K.; Hinkson, Stephen J.; Munnerlyn, Charles R., System and methods for imaging corneal profiles.
  125. Chernyak, Dimitri, System and methods for mitigating changes in pupil size during laser refractive surgery to maintain ablation centration.
  126. Hofer Richard A. ; Koons Stephen J. ; Shimmick John Karl, Systems and methods for corneal surface ablation to correct hyperopia.
  127. Hofer, Richard A.; Koons, Stephen J.; Shimmick, John Karl, Systems and methods for corneal surface ablation to correct hyperopia.
  128. Dai, Guangming; Liang, Junzhong, Systems and methods for correcting high order aberrations in laser refractive surgery.
  129. Heitel, Robert; Fu, Hong, Systems and methods for dynamic patient fixation system.
  130. Dai, Guang-ming; Hofer, Richard A.; Chernyak, Dimitri, Systems and methods for evaluating treatment tables for refractive surgery.
  131. Dai, Guangming; Hofer, Richard A.; Chernyak, Dimitri, Systems and methods for evaluating treatment tables for refractive surgery.
  132. Shimmick John K. ; Hinkson Stephen J. ; Munnerlyn Charles R., Systems and methods for imaging corneal profiles.
  133. Bor, Zsolt; Dennison, Anthony W.; Campos, Michael; De Guzman, Peter Patrick, Systems and methods for measuring position and boundary of lens capsule and implanted intraocular lens in eye imaging.
  134. Bor, Zsolt; Dennison, Anthony; Campos, Michael; De Guzman, Peter Patrick, Systems and methods for measuring position and boundary of lens capsule and implanted intraocular lens in eye imaging.
  135. Arnoldussen, Mark E., Systems and methods for qualifying and calibrating a beam delivery system.
  136. Lee, Hon M, Systems and methods for removing fixation light reflection from an ophthalmic image.
  137. Wong, Jonathan; Chernyak, Dimitri, Systems for differentiating left and right eye images.
  138. Chernyak, Dimitri; Fabrikant, Anatoly, Tilt compensation, measurement, and associated adjustment of refractive prescriptions during surgical and other treatments of the eye.
  139. Chernyak, Dimitri; Fabrikant, Anatoly, Tilt compensation, measurement, and associated adjustment of refractive prescriptions during surgical and other treatments of the eye.
  140. Lin,Jui Teng, Treatment of presbyopia and other eye disorders using a scanning laser system.
  141. Dai, Guang-ming; Fabrikant, Anatoly; Chernyak, Dimitri; Shah, Jayesh, Treatment validation systems and methods.
  142. Koons, Stephen J., Trephine for lamellar keratectomy.
  143. Shimmick, John K., Uniform large area ablation system and method.
  144. Wong,Jonathan, Variable repetition rate firing scheme for refractive laser systems.
  145. Dai, Guang-ming, Wavefront refractions and high order aberration correction when wavefront maps involve geometrical transformations.
  146. Dai, Guang-ming, Wavefront refractions and high order aberration correction when wavefront maps involve geometrical transformations.
  147. Dai, Guang-ming, Zone extension systems and methods.
  148. Dai, Guang-ming, Zone extension systems and methods.
  149. Dai, Guang-ming, Zone extension systems and methods.
  150. Dai, Guang-ming, Zone extension systems and methods.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로