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OPHTHALMIC INSTRUMENT WITH ADAPTIVE OPTIC SUBSYSTEM THAT MEASURES ABERRATIONS (INCLUDING HIGHER ORDER ABERRATIONS) OF A HUMAN EYE AND THAT PROVIDES A VIEW OF COMPENSATION OF SUCH ABERRATIONS TO THE H 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61B-003/10
출원번호 US-0944056 (2001-08-31)
발명자 / 주소
  • Levine, Bruce M.
  • Wirth, Allan
  • Knowles, C. Harry
출원인 / 주소
  • Adaptive Optics Associates, Inc.
대리인 / 주소
    Thomas J. Perkowski, Esq., P.C.
인용정보 피인용 횟수 : 175  인용 특허 : 37

초록

An improved ophthalmic instrument for in-vivo examination of a human eye including a wavefront sensor that estimates aberrations in reflections of the light formed as an image on the retina of the human eye and a phase compensator that spatially modulates the phase of incident light to compensate fo

대표청구항

An improved ophthalmic instrument for in-vivo examination of a human eye including a wavefront sensor that estimates aberrations in reflections of the light formed as an image on the retina of the human eye and a phase compensator that spatially modulates the phase of incident light to compensate fo

이 특허에 인용된 특허 (37)

  1. Liang Junzhong ; Burkhalter James H., Apparatus and method for measuring vision defects of a human eye.
  2. Rudolph W. Frey ; James H. Burkhalter ; Neil Zepkin ; Edward Poppeliers ; John Alfred Campin, Apparatus and method for objective measurements of optical systems using wavefront analysis.
  3. Webb Robert H. ; Burns Stephen A. ; Penney Carl Murray, Coaxial spatially resolved refractometer.
  4. Fahrenkrug Corinn C. ; Goldfain Ervin ; Kugler Andrew J. ; Perkins David G. ; Haines ; III Howard A. ; Cuipylo William N., Compact ocular measuring system.
  5. Bille Josef F. (Rancho Santa Fe CA), Device for mapping corneal topography.
  6. Bille Josef F.,DEX, Ellipsometer.
  7. Apple Howard P. ; Nevitt Martin P. ; Han Xiaofeng, Eye illumination system and method.
  8. Bille Josef F. (Solana Beach CA) Brown Stuart I. (La Jolla CA), Eyetracker and method of use.
  9. John A. Campin ; Gary P. Gray ; George H. Pettit, Fogging method for a wavefront sensor.
  10. Feinleib, Julius M.; Schmutz, Lawrence E., High speed/low light wavefront sensor system.
  11. Bille Josef F. (Solana Beach CA) Brown Stuart I. (La Jolla CA), Imaging system for surgical lasers.
  12. Grinberg Jan (Los Angeles CA) O\Meara ; Jr. Thomas R. (Malibu CA) Welkowsky Murray S. (Chatsworth CA), Liquid crystal adaptive optics system.
  13. Bille Josef F.,DEX, Method and apparatus for determining optical characteristics of a cornea.
  14. Bille Josef (Heidelberg DEX), Method and apparatus for forming an image of the ocular fundus.
  15. Williams David R. ; Liang Junzhong, Method and apparatus for improving vision and the resolution of retinal images.
  16. Williams David R. ; Liang Junzhong, Method and apparatus for improving vision and the resolution of retinal images.
  17. Williams David R. ; Liang Junzhong, Method and apparatus for improving vision and the resolution of retinal images.
  18. Bille Josef,DEX ; Loesel Frieder,DEX, Method and apparatus for measurement of the refractive properties of the human eye.
  19. Bille Josef,DEX ; Loesel Frieder,DEX, Method and apparatus for precompensating the refractive properties of the human eye with adaptive optical feedback control.
  20. Rhoads Geoffrey B., Method and apparatus for wide field distortion-compensated imaging.
  21. Klopotek Peter J. (Framingham MA), Method and system for topographic measurement.
  22. Klopotek Peter J. (Framingham MA), Method and system for topographic measurement by measuring the distance between a rigid reference member and a surface o.
  23. Kunzler Jay F., Method for making contact lenses having UV absorbing properties.
  24. Lemberg Vladimir, Method for scanning non-overlapping patterns of laser energy with diffractive optics.
  25. Magnante Peter C., Methods and devices to design and fabricate surfaces on contact lenses and on corneal tissue that correct the eye's optical aberrations.
  26. Stevens Donn E. (Rochester NY), Motorized refraction apparatus.
  27. Feinleib Julius M. (Cambridge MA) Bowker John K. (Beverly Farms MA) Schmutz Lawrence E. (Cambridge MA) Tubbs Steven J. (Watertown MA) Shao Michael (Watertown MA), Optical wavefront sensing system.
  28. Wirth Allan (Bedford MA) Feinleib Julius (Cambridge MA) Schmutz Lawrence E. (Watertown MA) Rapkine Douglas H. (Somerville MA) Dillon Robert F. (Belmont MA) Hizny John J. (North Billerica MA), Optical wavefront sensing system.
  29. Valint ; Jr. Paul L. ; Grobe George L. ; Ammon ; Jr. Daniel M. ; Moorehead Michael J., Plasma surface treatment of silicone hydrogel contact lenses.
  30. Williams David R. ; Vaughn William J. ; Singer Benjamin D. ; Hofer Heidi ; Yoon Geun-Young ; Artal Pablo,ESX ; Aragon Juan Luis,ESX ; Prieto Pedro,ESX ; Vargas Fernando,ESX, Rapid, automatic measurement of the eye's wave aberration.
  31. Penney Carl M. (Saratoga Springs NY) Webb Robert H. (Lincoln MA) Tiemann Jerome J. (Schenectady NY) Thompson Keith P. (Atlanta GA), Spatially resolved objective autorefractometer.
  32. Roffman Jeffrey H. ; Collins Michael J.,AUX ; Davis Brett A.,AUX ; Ross ; III Denwood F., System and method of integrating corneal topographic data and ocular wavefront data with primary ametropia measurements to create a soft contact lens design.
  33. Knopp Carl F. ; Orkiszewski Jerzy ; Wysopal Jan ; Hoffman Hanna J., System for detecting, measuring and compensating for lateral movements of a target.
  34. Klopotek Peter J. (Framingham MA), Tracking system for laser surgery.
  35. Koester Charles J., Variable focus lens system such as for examination or treatment of transparent or semi-transparent materials such as ocular tissue.
  36. Schmutz Lawrence E. (Watertown MA), Wavefront measuring system with integral geometric reference (IGR).
  37. Ming Lai, Wavefront refractor simultaneously recording two hartmann-shack images.

이 특허를 인용한 특허 (175)

  1. Shadduck, John H., Accommodating intraocular lens.
  2. Esch, Victor; Scholl, John; Smiley, Terry; Myall, Patrick; Evans, Bill; Cheskin, Barry; Wu, Henry, Accommodating intraocular lens having peripherally actuated deflectable surface and method.
  3. Scholl, John; Smiley, Terah; Smith, David J.; Burns, Denise H.; Cheskin, Barry, Accommodating intraocular lens system having circumferential haptic support and method.
  4. Smith, David John; Smiley, Terah Whiting; Scholl, John A.; Burns, Denise Horrilleno; Esch, Victor, Accommodating intraocular lens system having spherical aberration compensation and method.
  5. Scholl, John A.; Smiley, Terah Whiting; Smith, David J.; Burns, Denise H.; Cheskin, Barry, Accommodating intraocular lenses.
  6. Smiley, Terah Whiting; Smith, David John; Choi, Steven; Wu, Henry; Scholl, John A.; Burns, Denise H., Accommodating intraocular lenses.
  7. Smiley, Terah Whiting; Smith, David John; Choi, Steven; Wu, Henry; Scholl, John A.; Burns, Denise H., Accommodating intraocular lenses.
  8. Smiley, Terah Whiting; Smith, David John; Choi, Steven; Wu, Henry; Scholl, John A.; Burns, Denise H., Accommodating intraocular lenses.
  9. Shadduck, John H., Accommodating intraocular lenses and methods of use.
  10. Smiley, Terah Whiting; Smith, David John; Choi, Steven; Wu, Henry; Scholl, John A.; Burns, Denise H., Accommodating intraocular lenses and methods of use.
  11. Smiley, Terah Whiting; Smith, David John; Choi, Steven; Wu, Henry; Scholl, John A.; Burns, Denise Horrilleno, Accommodating intraocular lenses and methods of use.
  12. Shadduck, John H., Adaptive optic lens and method of making.
  13. Shadduck, John H, Adaptive optic lens system and method of use.
  14. Shadduck,John H., Adaptive optic lens system and method of use.
  15. Goodall,Eleanor V.; Hillis,W. Daniel; Hyde,Roderick A.; Ishikawa,Muriel Y.; Jung,Edward K. Y.; Myhrvold,Nathan P.; Wood, Jr.,Lowell L., Adjustable lens system with neural-based control.
  16. Goodall,Eleanor V.; Hillis,W. Daniel; Hyde,Roderick A.; Ishikawa,Muriel Y.; Jung,Edward K. Y.; Myhrvold,Nathan P.; Wood, Jr.,Lowell L., Adjustable lens system with neural-based control.
  17. Caldeira, Kenneth G.; Hagelstein, Peter L.; Hyde, Roderick A.; Jung, Edward K. Y.; Kare, Jordin T.; Myhrvold, Nathan P.; Pendry, John Brian; Schurig, David; Tegreene, Clarence T.; Whitmer, Charles; Wood, Jr., Lowell L., Adjustable optics for ongoing viewing correction.
  18. Zhou, Yan; Chew, Bradford; Shea, William, Apparatus and method for operating a real time large diopter range sequential wavefront sensor.
  19. Zhou, Yan; Chew, Bradford; Shea, William, Apparatus and method for operating a real time large diopter range sequential wavefront sensor.
  20. Zhou, Yan; Chew, Bradford; Shea, William, Apparatus and method for operating a real time large diopter range sequential wavefront sensor.
  21. Zhou, Yan; Chew, Bradford; Shea, William, Apparatus and method for operating a real time large diopter range sequential wavefront sensor.
  22. Zhou, Yan; Chew, Bradford; Shea, William, Apparatus and method for operating a real time large diopter range sequential wavefront sensor.
  23. Zhou, Yan; Chew, Bradford; Shea, William, Apparatus and method for operating a real time large diopter range sequential wavefront sensor.
  24. Zhou, Yan; Chew, Bradford; Shea, William, Apparatus and method for operating a real time large diopter range sequential wavefront sensor.
  25. Zhou, Yan; Chew, Bradford; Shea, William, Apparatus and method for operating a real time large dipoter range sequential wavefront sensor.
  26. Marks, Richard L.; Mao, Xiadong, Apparatus for image and sound capture in a game environment.
  27. Huang, Ennin; Zalewski, Gary M., Base station for position location.
  28. Zalewski, Gary M., Base station movement detection and compensation.
  29. Zalewski, Gary M.; Marks, Richard; Mao, Xiadong, Combiner method for altering game gearing.
  30. Marks, Richard L.; Mao, Xiadong; Zalewski, Gary M., Computer image and audio processing of intensity and input devices for interfacing with a computer program.
  31. Marks, Richard; Mikhailov, Anton; Huang, Ennin; Zalewski, Gary M., Control device for communicating visual information.
  32. Zalewski, Gary, Controller with an integrated depth camera.
  33. Caldeira, Kenneth G.; Hagelstein, Peter L.; Hyde, Roderick A.; Jung, Edward K. Y.; Kare, Jordin T.; Myhrvold, Nathan P.; Pendry, John Brian; Schurig, David; Tegreene, Clarence T.; Whitmer, Charles; Wood, Jr., Lowell L., Corrective alignment optics for optical device.
  34. Wright, Dawn D.; Zanini, Diana; Balasubramanian, Kanda Kumar; Spaulding, Terry L.; Evans, Douglas L.; Roffman, Jeffrey H.; McCarthy, Karin D., Cosmetic contact lenses having a sparkle effect.
  35. Caldeira, Kenneth G.; Hagelstein, Peter L.; Hyde, Roderick A.; Jung, Edward K. Y.; Kare, Jordin T.; Myhrvold, Nathan P.; Pendry, John Brian; Schurig, David; Tegreene, Clarence T.; Whitmer, Charles; Wood, Jr., Lowell L., Customized user options for optical device.
  36. Zalewski, Gary M., Determination of controller three-dimensional location using image analysis and ultrasonic communication.
  37. Delucia, Paul, Drive circuit for light emitting diode.
  38. Zalewski, Gary; Gillo, Tomas, Dynamic three-dimensional object mapping for user-defined control device.
  39. Blum, Ronald D.; Kokonaski, William, Electro-active intraocular lenses.
  40. Blum, Ronald; Kokonaski, William, Electro-active intraocular lenses.
  41. Blum, Ronald D.; Kokonaski, William; Duston, Dwight P., Electro-active lens with crossed linear electrodes.
  42. Blum,Ronald D.; Kokonaski,William; Duston,Dwight P., Electro-active multi-focal spectacle lens.
  43. Stewart, Wilber C.; McGinn, Joseph T.; Haddock, Joshua N.; Kokonaski, William; Iyer, Venkatramani S.; Blum, Ronald D., Electro-active ophthalmic lens having an optical power blending region.
  44. Blum, Ronald D.; Kokonaski, William, Electro-active opthalmic lens having an optical power blending region.
  45. Blum, Ronald D.; Kokonaski, William, Electro-active opthalmic lens having an optical power blending region.
  46. Blum, Ronald D.; Kokonaski, William, Electro-active opthalmic lens having an optical power blending region.
  47. Blum, Ronald D.; Kokonaski, William, Electro-active opthalmic lens having an optical power blending region.
  48. Blum, Ronald D.; Kokonaski, William, Electro-active opthalmic lens having an optical power blending region.
  49. Blum, Ronald D.; Kokonaski, William, Electro-active opthalmic lens having an optical power blending region.
  50. Blum,Ronald D.; Kokonaski,William; Duston,Dwight P., Electro-active spectacle employing modal liquid crystal lenses.
  51. Blum, Ronald D.; Haddock, Joshua N.; Duston, Dwight P., Electro-active spectacle lenses.
  52. Blum, Ronald D.; Haddock, Joshua N.; Duston, Dwight P., Electro-active spectacle lenses.
  53. Blum,Ronald D.; Kokonaski,William, Electro-active spectacles and method of fabricating same.
  54. Blum,Ronald D.; Kokonaski,William, Electro-active spectacles and method of fabricating same.
  55. Blum,Ronald D.; Duston,Dwight P.; Kokonaski,William; Thibodeau,Joseph; Katzman,Youval; Efron,Uzi, Electro-optic lens with integrated components.
  56. Blum, Ronald D.; Kokonaski, William; Duston, Dwight P., Electro-optic lens with integrated components for varying refractive properties.
  57. McGinn, Joseph Thomas; Duston, Dwight P.; Van Heugten, Anthony, Electro-optic lenses for correction of higher order aberrations.
  58. Blum, Ronald D.; Haddock, Joshua N.; Duston, Dwight P., Electronic adapter for electro-active spectacle lenses.
  59. Kokonaski, William; Blum, Ronald D.; Tabacchi, Tiziano; Boch, Martin; Pinazza, Massimo; Richman, Scott N.; Ozguz, Volkan; Haddock, Joshua N., Electronic eyeglass frame.
  60. Kokonaski, William; Blum, Ronald D.; Tabacchi, Tiziano; Boch, Martin; Pinazza, Massimo; Richman, Scott; Ozguz, Volkan; Haddock, Joshua, Electronic eyeglass frame.
  61. Kokonaski, William; Blum, Ronald; Tabacchi, Tiziano; Boch, Martin; Pinazza, Massimo; Richman, Scott N.; Ozguz, Volkan; Haddock, Joshua N., Electronic eyeglass frame.
  62. Blum, Ronald; Kokonaski, William; Duston, Dwight P., Enhanced electro-active lens system.
  63. Blum,Ronald; Kokonaski,William; Dusion,Dwight P., Enhanced electro-active lens system.
  64. Blum,Ronald; Kokonaski,William; Duston,Dwight P., Enhanced electro-active lens system.
  65. Marks, Richard; Mikhailov, Anton; Huang, Ennin; Zalewski, Gary M., Expandable control device via hardware attachment.
  66. Blum, Ronald; Wang, Yongping; Graham, Mark; Kokonaski, William, Eyewear docking station and electronic module.
  67. Blum, Ronald; Wang, Yongping; Graham, Mark; Kokonaski, William; Clompus, Richard, Eyewear docking station and electronic module.
  68. Blum, Ronald D.; Kokonaski, William; Duston, Dwight P., Eyewear including a detachable power supply and a display.
  69. Blum, Ronald; Kokonaski, William; Duston, Dwight P., Eyewear including a docking station.
  70. Blum, Ronald; Kokonaski, William; Duston, Dwight P., Eyewear including a heads up display.
  71. Blum, Ronald; Kokonaski, William; Duston, Dwight P., Eyewear including a remote control camera.
  72. Blum, Ronald D.; Haddock, Joshua N.; Kokonaski, William; Hunkeler, John, Flexible dynamic electro-active lens.
  73. Blum, Ronald D.; Haddock, Joshua N.; Kokonaski, William; Hunkeler, John M., Flexible electro-active lens.
  74. Anvar, David; Goodwin, Andrew; Chazan, David, Fluid for accommodating intraocular lenses.
  75. Daniel, Tyler Jon, Hand-held computer interactive device.
  76. Gordon, Gary B.; Knee, Derek L.; Badyal, Rajeev; Hartlove, Jason T., Imaging and navigation arrangement for controlling a cursor.
  77. Mao, Xiaodong; Marks, Richard L.; Zalewski, Gary M., Inertially trackable hand-held controller.
  78. Mao, Xiaodong; Marks, Richard L.; Zalewski, Gary M., Inertially trackable hand-held controller.
  79. Thompson, Keith P.; Garcia, Jose R., Intra-ocular lens optimizer.
  80. Shadduck, John H., Intraocular implant devices.
  81. Hildebrand, Daniel; Argento, Claudio; Matthews, Gregory V., Intraocular lens delivery devices and methods of use.
  82. Hildebrand, Daniel; Argento, Claudio; Matthews, Gregory V., Intraocular lens delivery devices and methods of use.
  83. Hildebrand, Daniel; Argento, Claudio; Matthews, Gregory V., Intraocular lens delivery devices and methods of use.
  84. Matthews, Gregory Vinton; Smiley, Terah Whiting; Scholl, John A., Intraocular lens delivery systems and methods of use.
  85. Matthews, Gregory Vinton; Smiley, Terah Whiting; Scholl, John A., Intraocular lens delivery systems and methods of use.
  86. Matthews, Gregory V., Intraocular lens loading systems and methods of use.
  87. Matthews, Gregory Vinton, Intraocular lens storage and loading devices and methods of use.
  88. Shadduck, John H., Intraocular lens system and method for power adjustment.
  89. Shadduck, John H., Intraocular lens system and method for power adjustment.
  90. Zhou, Yan; Shea, William, Large diopter range real time sequential wavefront sensor.
  91. Zhou, Yan; Shea, William, Large diopter range real time sequential wavefront sensor.
  92. Hildebrand, Daniel; Smith, David John; Argento, Claudio, Lens capsule size estimation.
  93. Smiley, Terah Whiting; Scholl, John A.; Smith, David John; Redmond, Russell J.; Moran, Derek L.; Cheskin, Barry; Reggie, John; Matthews, Gregory Vinton; Argento, Claudio, Lens delivery system.
  94. Esch,Victor, Lens system and method for power adjustment using externally actuated micropumps.
  95. Zalewski, Gary M., Mapping movements of a hand-held controller to the two-dimensional image plane of a display screen.
  96. Larsen, Eric J.; Deshpande, Hrishikesh R; Marks, Richard L., Method and apparatus for adjusting a view of a scene being displayed according to tracked head motion.
  97. Marks, Richard L., Method and apparatus for light input device.
  98. Marks, Richard L., Method and apparatus for optimizing capture device settings through depth information.
  99. Marks, Richard L., Method and apparatus for real time motion capture.
  100. Zalewski, Gary M.; Marks, Richard; Mao, Xiadong, Method and apparatus for tracking three-dimensional movements of an object using a depth sensing camera.
  101. Zalewski, Gary M.; Marks, Richard; Mao, Xiaodong, Method and apparatus for tracking three-dimensional movements of an object using a depth sensing camera.
  102. Goodall, Eleanor V.; Hillis, W. Daniel; Hyde, Roderick A.; Ishikawa, Muriel Y.; Jung, Edward K. Y.; Myhrvold, Nathan P.; Wood, Jr., Lowell L., Method and system for adaptive vision modification.
  103. Goodall, Eleanor V.; Hillis, W. Daniel; Hyde, Roderick A.; Ishikawa, Muriel Y.; Jung, Edward K. Y.; Myhrvold, Nathan P.; Wood, Jr., Lowell L., Method and system for adaptive vision modification.
  104. Goodall,Eleanor V.; Hillis,W. Daniel; Hyde,Roderick A.; Ishikawa,Muriel Y.; Jung,Edward K. Y.; Myhrvold,Nathan P.; Wood, Jr.,Lowell L., Method and system for adaptive vision modification.
  105. Zalewski, Gary M.; Marks, Richard; Mao, Xiadong, Method and system for applying gearing effects to visual tracking.
  106. Duston,Dwight P.; Kokonaski,William, Method and system for electro-active spectacle lens design.
  107. Goodall,Eleanor V.; Hillis,W. Daniel; Hyde,Roderick A.; Ishikawa,Muriel Y.; Jung,Edward K. Y.; Myhrvold,Nathan P.; Wood, Jr.,Lowell L., Method and system for vision enhancement.
  108. Zalewski, Gary M.; Marks, Richard; Mao, Xiadong, Method for mapping movements of a hand-held controller to game commands.
  109. Blum,Ronald D.; Kokonaski,William; Duston,Dwight P., Method of manufacturing an electro-active lens.
  110. Simpson, Michael J., Method of measuring diffractive lenses.
  111. Blum, Ronald D.; Kokonaski, William; Duston, Dwight P., Methods and apparatus for actuating an ophthalmic lens in response to ciliary muscle motion.
  112. Klee, Nathan Scott; Hutchinson, Fraser, Methods and systems for dynamically adjusting update rates in multi-player network gaming.
  113. Steiner, Travis; Housden, Eric; Klapka, Robbie; Sternberg, Tom; Whitley, Brandon, Methods and systems for enabling control of artificial intelligence game characters.
  114. Marks, Richard L.; Deshpande, Hrishikesh R., Methods and systems for enabling depth and direction detection when interfacing with a computer program.
  115. Marks, Richard L.; Deshpande, Hrishikesh R., Methods and systems for enabling depth and direction detection when interfacing with a computer program.
  116. Marks, Richard L.; Deshpande, Hrishikesh R., Methods and systems for enabling depth and direction detection when interfacing with a computer program.
  117. Marks, Richard L.; Deshpande, Hrishikesh R., Methods and systems for enabling depth and direction detection when interfacing with a computer program.
  118. Marks, Richard L.; Deshpande, Hrishikesh R., Methods and systems for enabling direction detection when interfacing with a computer program.
  119. Zalewski, Gary; Haigh, Mike, Methods for capturing depth data of a scene and applying computer actions.
  120. Marks, Richard L., Methods for interfacing with a program using a light input device.
  121. Esch,Victor, Methods of adjusting the power of an intraocular lens.
  122. Zalewski, Gary, Multi-positional three-dimensional controller.
  123. Blum, Ronald D.; Kokonaski, William; Iyer, Venkatramani S.; Haddock, Joshua N.; Mattison-Shupnick, Mark, Multifocal lens having a progressive optical power region and a discontinuity.
  124. Blum, Ronald D.; Kokonaski, William; Iyer, Venkatramani S.; Haddock, Joshua N.; Mattison-Shupnick, Mark, Multifocal lens having a progressive optical power region and a discontinuity.
  125. Blum, Ronald D.; Kokonaski, William; Iyer, Venkatramani S.; Haddock, Joshua N.; Mattison-Shupnick, Mark, Multifocal lens having a progressive optical power region and a discontinuity.
  126. Blum, Ronald D.; Kokonaski, William; Iyer, Venkatramani S.; Haddock, Joshua N.; Mattison-Shupnick, Mark, Multifocal lens having a progressive optical power region and a discontinuity.
  127. Blum, Ronald D.; Kokonaski, William; Iyer, Venkatramani S.; Haddock, Joshua N.; Mattison-Shupnick, Mark, Multifocal lens having a progressive optical power region and discontinuity.
  128. Haddock, Joshua N.; Kokonaski, William; Clarke, Roger; Mattison-Shupnick, Mark; Blum, Ronald D., Multifocal lens with a diffractive optical power region.
  129. Haddock, Joshua; Kokonaski, William; Clarke, Roger; Mattison-Shupnick, Mark; Blum, Ronald D., Multifocal lens with a diffractive optical power region.
  130. Marks, Richard; Zalewski, Gary M., Object detection using video input combined with tilt angle information.
  131. Blum, Ronald D.; Haddock, Joshua N.; Kokonaski, William; Van Heugten, Anthony; Hunkeler, John, Ophthalmic dynamic aperture.
  132. Blum,Ronald D.; Duston,Dwight P.; Katzman,Dan, Ophthalmic spectacle lens for correcting non-conventional refractive error.
  133. Zhou, Yan; Shea, William; Baker, Phil, Ophthalmic wavefront sensor operating in parallel sampling and lock-in detection mode.
  134. Caldeira, Kenneth G.; Hagelstein, Peter L.; Hyde, Roderick A.; Jung, Edward K. Y.; Kare, Jordin T.; Myhrvold, Nathan P.; Pendry, John Brian; Schurig, David; Tegreene, Clarence T.; Whitmer, Charles; Wood, Jr., Lowell L., Optical device with active user-based aberration correction.
  135. Caldeira, Kenneth G.; Hagelstein, Peter L.; Hyde, Roderick A.; Jung, Edward K. Y.; Kare, Jordin T.; Myhrvold, Nathan P.; Pendry, John Brian; Schurig, David; Tegreene, Clarence T.; Whitmer, Charles; Wood, Jr., Lowell L., Optical device with interchangeable corrective elements.
  136. Haddock, Joshua N.; Kokonaski, William; Duston, Dwight P.; Blum, Ronald D.; Richman, Scott N., Optical rangefinder for an electro-active lens.
  137. Zhou, Yan; Shea, William, Optimizing vision correction procedures.
  138. Zhou, Yan; Shea, William; Linder, Barry, Optimizing vision correction procedures.
  139. Your, Jingjong, Polymeric materials suitable for ophthalmic devices and methods of manufacture.
  140. Mallinson, Dominic S.; Marks, Richard L., Portable augmented reality device and method.
  141. Smiley, Terah Whiting; Shadduck, John H.; Esch, Victor C.; Scholl, John A.; Argento, Claudio; Cheskin, Barry; Smith, David John; Burns, Denise H., Post-implant accommodating lens modification.
  142. Shea, William; Nordstrom, Brad; Chew, Brad; Zhou, Yan, Real-time measurement/display/record/playback of wavefront data for use in vision correction procedures.
  143. Iyer, Venkatramani S.; Kokonaski, William; Haddock, Joshua N.; Clarke, Roger; Blum, Ronald D., Refractive-diffractive multifocal lens.
  144. Iyer, Venkatramani S.; Kokonaski, William; Haddock, Joshua N.; Clarke, Roger; Blum, Ronald D., Refractive-diffractive multifocal lens.
  145. Iyer, Venkatramani S.; Kokonaski, William; Haddock, Joshua N.; Clarke, Roger; Blum, Ronald D., Refractive-diffractive multifocal lens.
  146. Thompson, Keith P.; Garcia, Jose R., Refractometer with a remote wavefront generator.
  147. Zalewski, Gary M.; Marks, Richard; Mao, Xiadong, Scheme for translating movements of a hand-held controller into inputs for a system.
  148. Zalewski, Gary; Marks, Richard; Mao, Xiadong, Scheme for translating movements of a hand-held controller into inputs for a system.
  149. Marks, Richard L.; Mao, Xiadong, Selective sound source listening in conjunction with computer interactive processing.
  150. Campbell,Charles C.; Somani,Seema, Shack-Hartmann based integrated autorefraction and wavefront measurements of the eye.
  151. Blum, Ronald D.; Kokonaski, William; Iyer, Venkatramani S.; Haddock, Joshua N., Static progressive surface region in optical communication with a dynamic optic.
  152. Blum, Ronald D.; Kokonaski, William; Iyer, Venkatramani S.; Haddock, Joshua N., Static progressive surface region in optical communication with a dynamic optic.
  153. Blum, Ronald D.; Kokonaski, William; Iyer, Venkatramani S.; Haddock, Joshua N., Static progressive surface region in optical communication with a dynamic optic.
  154. Bille, Josef F., System and method for high resolution imaging of cellular detail in the retina.
  155. Blum, Ronald D.; Duston, Dwight P.; Katzman, Dan, System, apparatus and method for correcting vision with an adaptive optic.
  156. Blum, Ronald D.; Duston, Dwight P.; Katzman, Dan, System, apparatus and method for correcting vision with an adaptive optic.
  157. Blum, Ronald D.; Duston, Dwight P.; Katzman, Dan, System, apparatus and method for correcting vision with an adaptive optic.
  158. Blum, Ronald D.; Duston, Dwight P.; Katzman, Dan, System, apparatus, and method for correcting vision using an electro-active lens.
  159. Blum, Ronald D.; Kokonaski, William, System, apparatus, and method for correcting vision using an electro-active lens.
  160. Blum, Ronald D.; Kokonaski, William; Duston, Dwight P., System, apparatus, and method for correcting vision using an electro-active lens.
  161. Blum,Ronald D.; Kokonaski,William, System, apparatus, and method for correcting vision using an electro-active lens.
  162. Mao, Xiaodong; Marks, Richard L.; Zalewski, Gary M., System, method, and apparatus for three-dimensional input control.
  163. Choi, Steven; Smiley, Terah Whiting; Matthews, Gregory Vinton, Systems and methods for testing intraocular lenses.
  164. Hillis,W. Daniel; Hyde,Roderick A.; Ishikawa,Muriel Y.; Jung,Edward K. Y.; Myhrvold,Nathan P.; Tegreene,Clarence T.; Wood, Jr.,Lowell L., Temporal vision modification.
  165. Hillis,W. Daniel; Hyde,Roderick A.; Ishikawa,Muriel Y.; Jung,Edward K. Y.; Myhrvold,Nathan P.; Tegreene,Clarence T.; Wood, Jr.,Lowell L., Temporal vision modification.
  166. Shea, William, User-proposed entry field(s) for customized data analysis/presentation.
  167. Mallinson, Dominic S.; Marks, Richard L., Using a portable device to interface with a video game rendered on a main display.
  168. Hillis, W. Daniel; Hyde, Roderick A.; Ishikawa, Muriel Y.; Jung, Edward K. Y.; Myhrvold, Nathan P.; Tegreene, Clarence T.; Wood, Jr., Lowell L., Vision modification with reflected image.
  169. Hillis, W. Daniel; Hyde, Roderick A.; Ishikawa, Muriel Y.; Jung, Edward K. Y.; Myhrvold, Nathan P.; Tegreene, Clarence T.; Wood, Jr., Lowell L., Vision modification with reflected image.
  170. Hillis, W. Daniel; Hyde, Roderick A.; Ishikawa, Muriel Y.; Jung, Edward K. Y.; Myhrvold, Nathan P.; Tegreene, Clarence T.; Wood, Jr., Lowell L., Vision modification with reflected image.
  171. Hillis, W. Daniel; Hyde, Roderick A.; Ishikawa, Muriel Y.; Jung, Edward K. Y.; Myhrvold, Nathan P.; Tegreene, Clarence T.; Wood, Jr., Lowell L., Vision modification with reflected image.
  172. Hillis, W. Daniel; Hyde, Roderick A.; Ishikawa, Muriel Y.; Jung, Edward K. Y.; Myhrvold, Nathan P.; Tegreene, Clarence T.; Wood, Jr., Lowell L., Vision modification with reflected image.
  173. Hillis, W. Daniel; Hyde, Roderick A.; Ishikawa, Muriel Y.; Jung, Edward K. Y.; Myhrvold, Nathan P.; Tegreene, Clarence T.; Wood, Jr., Lowell L., Vision modification with reflected image.
  174. Hillis, W. Daniel; Hyde, Roderick A.; Ishikawa, Muriel Y.; Jung, Edward K.Y.; Myhrvold, Nathan P.; Tegreene, Clarence T.; Wood, Jr., Lowell L., Vision modification with reflected image.
  175. Hillis,W. Daniel; Hyde,Roderick A.; Ishikawa,Muriel Y.; Jung,Edward K. Y.; Myhrvold,Nathan P.; Tegreene,Clarence T.; Wood, Jr.,Lowell L., Vision modification with reflected image.
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