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Ophthalmic apparatus 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61B-003/14
출원번호 US-0961349 (2001-09-25)
우선권정보 JP-0300596 (2000-09-28)
발명자 / 주소
  • Isogai, Naoki
출원인 / 주소
  • Nidek Co., Ltd.
대리인 / 주소
    Oliff & Berridge, PLC
인용정보 피인용 횟수 : 68  인용 특허 : 7

초록

An ophthalmic apparatus provided with an ophthalmic unit for examination, measurement, or treatment, the unit having a center axis which is aligned with respect to an examinee's eye, is disclosed. This apparatus includes an observation unit through which an image of an anterior part of the examinee'

대표청구항

An ophthalmic apparatus provided with an ophthalmic unit for examination, measurement, or treatment, the unit having a center axis which is aligned with respect to an examinee's eye, is disclosed. This apparatus includes an observation unit through which an image of an anterior part of the examinee'

이 특허에 인용된 특허 (7)

  1. Sumiya Toshifumi (Nukata-gun JPX), Apparatus for operation on a cornea using laser-beam.
  2. Isogai Naoki (Nishio JPX) Mimura Yoshiaki (Gamagori JPX) Fujieda Masanao (Toyohashi JPX), Examination apparatus for examining an object having a spheroidal reflective surface.
  3. Fujieda Masanao,JPX, Ophthalmic apparatus.
  4. Isogai Naoki,JPX ; Kawai Noriji,JPX, Ophthalmic apparatus for measuring an eye to be examined.
  5. Fujieda Masanao (Toyohashi JPX) Yano Nobuyuki (Okazaki JPX) Mimura Yoshiaki (Gamagori JPX) Isogai Naoki (Nishio JPX), Ophthalmic apparatus with positioning control.
  6. Fujieda Masanao,JPX, Ophthalmic measurement apparatus.
  7. Fujieda Masanao,JPX, Ophthalmic measurement apparatus having plural pairs of photoreceiving elements.

이 특허를 인용한 특허 (68)

  1. Lai,Ming; Eagan,Barry T.; Allred,Lloyd G., Apparatus and method for determining a position of an eye.
  2. Christie, Bruce; Peterson, Edward W.; van de Pol, Corina, Corneal inlay with nutrient transport structures.
  3. Silvestrini, Thomas A., Corneal optic formed of degradation resistant polymer.
  4. Padrick, Thomas D.; Holladay, Jack T., Determination of the effective lens position of an intraocular lens using aphakic refractive power.
  5. Padrick, Thomas D.; Holladay, Jack T., Determination of the effective lens position of an intraocular lens using aphakic refractive power.
  6. Mihashi,Toshifumi; Hirohara,Yoko; Maeda,Naoyuki, Eye characteristics measuring device.
  7. Webb, R. Kyle; Siems, Daniel David, Fracturable mask for treating presbyopia.
  8. Michaels, Richard J.; Plumley, Aric K., Geometric optical power measurement device.
  9. Michaels, Richard J.; Plumley, Aric K., Geometric optical power measurement device.
  10. Silvestrini, Thomas A., In situ adjustable optical mask.
  11. Silvestrini, Thomas A., In situ adjustable optical mask.
  12. Van Heugten, Anthony Y.; Durrie, Daniel S., Integrated surgical microscope and wavefront sensor.
  13. Van Heugten, Anthony Y.; Durrie, Daniel S., Integrated surgical microscope and wavefront sensor.
  14. Van Heugten, Anthony Y.; Durrie, Daniel S., Integrated surgical microscope and wavefront sensor.
  15. Van Heugten, Anthony Y.; Durrie, Daniel S., Integrated surgical microscope and wavefront sensor.
  16. Webb, R. Kyle; Siems, Daniel David; Reboul, Adam C.; Benz, Patrick H.; Christie, Bruce Arthur, Intraocular lens with elastic mask.
  17. Ianchulev, Tsontcho, Intraoperative estimation of intraocular lens power.
  18. Ianchulev, Tsontcho, Intraoperative estimation of intraocular lens power.
  19. Ianchulev, Tsontcho, Intraoperative estimation of intraocular lens power.
  20. Ianchulev, Tsontcho, Intraoperative estimation of intraocular lens power.
  21. Ianchulev, Tsontcho, Intraoperative estimation of intraocular lens power.
  22. Naranjo-Tackman, Ramón; Kuri, Jorge Octavio Villar; Frey, Rudolph W., Laser system and method for astigmatic corrections in association with cataract treatment.
  23. Naranjo-Tackman, Ramón; Kuri, Jorge Octavio Villar; Frey, Rudolph W., Laser system and method for correction of induced astigmatism.
  24. Frey, Rudolph W.; Naranjo-Tackman, Ramón, Laser system and method for performing and sealing corneal incisions in the eye.
  25. Bott, Steven E.; Frey, Rudolph W.; Porter, Gerrit N.; Wakefield, Scott Howard; Chura, William D., Laser system for treatment of the eye.
  26. Bott, Steven E.; Frey, Rudolph W.; Porter, Gerrit N.; Wakefield, Scott Howard; Chura, William D., Laser system for treatment of the eye.
  27. Frey, Rudolph W.; Bott, Steven E.; Porter, Gerrit N., Liquid filled index matching device for ophthalmic laser procedures.
  28. Christie, Bruce A.; Silvestrini, Thomas A., Mask configured to maintain nutrient transport without producing visible diffraction patterns.
  29. Christie, Bruce A.; Silvestrini, Thomas A.; Hahnen, Kevin F., Mask configured to maintain nutrient transport without producing visible diffraction patterns.
  30. Christie, Bruce A.; Silvestrini, Thomas A.; Hahnen, Kevin F., Masked intraocular devices.
  31. Christie, Bruce A.; Kosmynine, Alexei N., Masked intraocular implants and lenses.
  32. Christie, Bruce A.; Kosmynine, Alexei N., Masked intraocular implants and lenses.
  33. Silvestrini, Thomas A.; Christie, Bruce A.; Hahnen, Kevin F., Method and apparatus for aligning a mask with the visual axis of an eye.
  34. Frey, Rudolph W.; Gray, Gary P., Method and system for measuring an eye.
  35. Frey, Rudolph W.; Gray, Gary P., Method and system for removal and replacement of lens material from the lens of an eye.
  36. Christie, Bruce A.; Silvestrini, Thomas A.; Hahnen, Kevin F., Method for increasing the depth of focus of a patient.
  37. Copland, James, Method of verifying performance of an optical measurement instrument with a model eye and an optical measurement instrument employing such a method.
  38. Sarver, Edwin Jay; Padrick, Thomas D.; Hall, Max, Objective quality metric for ocular wavefront measurements.
  39. Sarver, Edwin Jay; Padrick, Thomas D.; Hall, Max, Objective quality metric for ocular wavefront measurements.
  40. Christie, Bruce; Peterson, Edward W.; van de Pol, Corina, Ocular mask.
  41. Christie, Bruce; Peterson, Edward W.; van de Pol, Corina, Ocular mask.
  42. Vilupuru, Abhiram S.; Christ, Marie Dvorak, Ocular mask having selective spectral transmission.
  43. Vilupuru, Abhiram S.; Christ, Marie Dvorak, Ocular mask having selective spectral transmission.
  44. Silvestrini, Thomas A., Ophthalmic devices having a degradation resistant polymer.
  45. Holladay, Jack T.; Padrick, Thomas D.; Michaels, Richard J., Ophthalmic surgery measurement system.
  46. Holladay, Jack T.; Padrick, Thomas D.; Michaels, Richard J., Ophthalmic surgery measurement system.
  47. Padrick, Thomas D.; Holladay, Jack T.; Tran, Dan Bao; Plumley, Aric K.; Michaels, Richard J.; Padgett, Jeff, Optical angular measurement system for ophthalmic applications and method for positioning of a toric intraocular lens with increased accuracy.
  48. Padrick, Thomas D.; Holladay, Jack T.; Tran, Dan Bao; Plumley, Aric K.; Michaels, Richard J.; Padgett, Jeff, Optical angular measurement system for ophthalmic applications and method for positioning of a toric intraocular lens with increased accuracy.
  49. Michaels, Richard J.; Hall, Max; Cueto, Diego; Rowe, T. Scott; Padrick, Thomas, Optical instrument alignment system.
  50. Michaels, Richard J.; Hall, Max; Cueto, Diego; Rowe, T. Scott; Padrick, Thomas, Optical instrument alignment system.
  51. Reboul, Adam C.; Benz, Patrick H.; Webb, R. Kyle, Process for manufacturing an intraocular lens with an embedded mask.
  52. Reboul, Adam C.; Benz, Patrick H.; Webb, R. Kyle, Process for manufacturing an intraocular lens with an embedded mask.
  53. Reboul, Adam C.; Benz, Patrick H.; Webb, R. Kyle, Process for manufacturing an intraocular lens with an embedded mask.
  54. Reboul, Adam C.; Benz, Patrick H.; Webb, R. Kyle, Process for manufacturing an intraocular lens with an embedded mask.
  55. Frey, Rudolph W.; Bott, Steven E., Purkinjie image-based alignment of suction ring in ophthalmic applications.
  56. 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.
  57. 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.
  58. 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.
  59. Miller, David; Blanco, Ernesto, System and method for increasing the depth of focus of the human eye.
  60. Miller, David; Blanco, Ernesto, System and method for increasing the depth of focus of the human eye.
  61. Frey, Rudolph W.; Gray, Gary P.; Zepkin, Neil, System and method for performing LADAR assisted procedures on the lens of an eye.
  62. Frey, Rudolph W.; Bott, Steven E.; Gray, Gary P., System and method for providing laser shot patterns to the lens of an eye.
  63. 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.
  64. Lang, Stefan; Toennies, Roland, System and method for the treatment of a patients eye working at high speed.
  65. 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.
  66. Ebisawa, Yoshinobu, View point detecting device.
  67. Van Heugten, Anthony Y., Wavefront sensor.
  68. Van Heugten, Anthony Y., Wavefront sensor.
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