$\require{mediawiki-texvc}$

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.

Image-processor-controlled misalignment-reduction for ophthalmic systems 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61B-003/10
출원번호 US-0098586 (2011-05-02)
등록번호 US-8459794 (2013-06-11)
발명자 / 주소
  • Juhasz, Tibor
  • Raksi, Ferenc
  • Holland, Guy
출원인 / 주소
  • Alcon LenSx, Inc.
인용정보 피인용 횟수 : 7  인용 특허 : 141

초록

An ophthalmic system is provided that includes an ophthalmic imaging device to generate an image of a portion of an imaged eye of a patient, an image processor to determine a misalignment of the imaged eye and the imaging device by processing the generated image, and to generate a control signal acc

대표청구항

1. An ophthalmic system, comprising: an ophthalmic imaging device configured to generate an image of a portion of an imaged eye of a patient;an image processor, configured to determine a misalignment of the imaged eye and the imaging device by processing the generated image, andto generate a control

이 특허에 인용된 특허 (141)

  1. Bille Josef F. (Solana Beach CA) Brown Stuart I. (La Jolla CA), 3-Dimensional laser beam guidance system.
  2. Guillermo,Tearney J.; Bouma,Brett E., Apparatus and method for low coherence ranging.
  3. de Boer, Johannes F.; Tearney, Guillermo J.; Bouma, Brett Eugene, Apparatus and method for ranging and noise reduction of low coherence interferometry LCI and optical coherence tomography OCT signals by parallel detection of spectral bands.
  4. de Boer, Johannes F.; Tearney, Guillermo J.; Bouma, Brett Eugene, Apparatus and method for ranging and noise reduction of low coherence interferometry LCI and optical coherence tomography OCT signals by parallel detection of spectral bands.
  5. de Boer,Johannes F.; Tearney,Guillermo J.; Bouma,Brett E., Apparatus and method for ranging and noise reduction of low coherence interferometry LCI and optical coherence tomography OCT signals by parallel detection of spectral bands.
  6. de Boer, Johannes F.; Tearney, Guillermo J.; Bouma, Brett Eugene, Apparatus and method for rangings and noise reduction of low coherence interferometry LCI and optical coherence tomography OCT signals by parallel detection of spectral bands.
  7. Danon Nissim N. (Flat 29 ; 15 Rabina St. Ramat Aviv ILX), Apparatus for computerized laser surgery.
  8. Podoleanu,Adrian; Rogers,John, Apparatus for high resolution imaging of moving organs.
  9. Palankar, Daniel V.; Blumenkranz, Mark S.; Andersen, Dan E.; Mordaunt, David H., Apparatus for patterned plasma-mediated laser trephination of the lens capsule and three dimensional phaco-segmentation.
  10. Kawase Suminosuke (Ohmiya JPX) Karasawa Yukinori (Yokohama JPX), Apparatus for recording images of crystalline lens sections.
  11. Bille Josef F. (Heidelberg MO DEX) Schanzlin David (St. Louis MO), Apparatus for removing cataractous material.
  12. Karasawa Yukinori (Yokohama JPX), Apparatus for taking photographs of sections of crystalline lenses in which line focusing moves lens in its own plane.
  13. Lang Walter (Knigsbronn DEX) Muchel Franz (Knigsbronn DEX) Blaha Erich (Essingen DEX), Apparatus for the subjective and objective determination of refraction.
  14. Obrebski,Andreas, Apparatus for the treatment of body tissue.
  15. Ueno, Tokio, Apparatus using optical coherence tomography based on spectral interference, and an ophthalmic apparatus.
  16. Scholler, Gordon Scott; Webb, R. Kyle, Applanation lens and method for ophthalmic surgical applications.
  17. Adolf Friedrich Fercher AT, Arrangement for spectral interferometric optical tomography and surface profile measurement.
  18. Rollins,Andrew M.; Izatt,Joseph A.; Westphal,Volker; Yazdanfar,Siavash, Aspects of basic OCT engine technologies for high speed optical coherence tomography and light source and other improvements in optical coherence tomography.
  19. Somani, Seema, Auto-alignment and auto-focus system and method.
  20. Knopp Carl F. ; Fountain William D. ; Orkiszewski Jerzy ; Persiantsev Michael ; Sklar H. Alfred ; Wysopal Jan, Automated laser workstation for high precision surgical and industrial interventions.
  21. Prince,James B.; Detro,Scott M., Beam manipulation using sets of wedges.
  22. Bille, Josef, Closed loop control for intrastromal wavefront-guided ablation.
  23. Goldstein, Peter; Suarez, Carlos G.; DeLong, Scott A.; Webb, R. Kyle; Juhasz, Tibor, Closed-loop focal positioning system and method.
  24. Goldstein,Peter; Suarez,Carlos G.; DeLong,Scott A.; Webb,R. K.; Juhasz,Tibor, Closed-loop focal positioning system and method.
  25. Podoleanu,Adrian Gh.; Rogers,John A., Compact high resolution imaging apparatus.
  26. Bille, Josef; Baumeister, Klaus; Loesel, Frieder, Cornea contact system for laser surgery.
  27. Juhasz Tibor ; Kurtz Ronald M., Corneal aplanation device.
  28. Horn,Jochen M. M.; O'Hara,Keith E., Cross-dispersed spectrometer in a spectral domain optical coherence tomography system.
  29. Loesel,Frieder; Meisel,Fritz; Gress,Bernhard; Kuhn,Tobias, Device and method for aligning an eye with a surgical laser.
  30. Bille, Josef; Loesel, Frieder, Device and method for creating a corneal reference for an eyetracker.
  31. Juhasz, Tibor; Kurtz, Ronald M.; Suarez, Carlos G., Device and method for reducing corneal induced aberrations during ophthalmic laser surgery.
  32. Juhasz,Tibor; Kurtz,Ronald M.; Suarez,Carlos G., Device and method for reducing corneal induced aberrations during ophthalmic laser surgery.
  33. Ostrovsky,Isaac; Modell,Mark D.; Crowley,Robert J., Diffraction grating based interferometric systems and methods.
  34. Ostrovsky,Isaac; Modell,Mark D.; Crowley,Robert J., Diffraction grating based interferometric systems and methods.
  35. Webb Robert H. (Lincoln MA) Hughes George W. (Brookline MA), Double scanning optical apparatus.
  36. Hitzenberger,Christoph K., Efficient optical coherence tomography (OCT) system and method for rapid imaging in three dimensions.
  37. Haisch,Michael, Examination system and examination method.
  38. Ishikawa Yasuyuki (Kawaguchi JPX), Eye examining instrument.
  39. Hsueh Chi-Fu (Escondido CA) Morris Gregory J. (La Jolla CA) Goelz Stefan (Plankstadt DEX), Eye stabilizing mechanism for use in ophthalmic laser surgery.
  40. Zhao,Yonghua; Wei,Jay, Fourier-domain optical coherence tomography imager.
  41. Izatt, Joseph A.; Rollins, Andrew M., Frequency-encoded parallel OCT and associated systems and methods.
  42. Zhou,Yan; Everett,Matthew J.; Hacker,Martin, High efficiency balanced detection interferometer.
  43. Zhou,Yan; Everett,Matthew J.; Hacker,Martin, High efficiency balanced detection interferometer.
  44. Wei,Jay, High efficiency low coherence interferometry.
  45. Chen,Zhongping; Ding,Zhihua; Nelson,J. Stuart, High resolution optical coherence tomography with an improved depth range using an axicon lens.
  46. Meyer,Scott; Chen,Xunchang; Chin,Rodney P., Image adjustment derived from optical imaging measurement data.
  47. Kulkarni Manish D. ; Izatt Joseph A. ; Sivak Michael V., Image enhancement in optical coherence tomography using deconvolution.
  48. Van Der Brug Willem P.,NLX, Image guided surgery system.
  49. Bille Josef F. (Solana Beach CA) Brown Stuart I. (La Jolla CA), Imaging system for surgical lasers.
  50. Shimmick,John K., Integrated scanning and ocular tomography system and method.
  51. Shimmick,John K., Integrated scanning and ocular tomography system and method.
  52. Izatt,Joseph A.; Rollins,Andrew M., Interferometers for optical coherence tomography and reflectometry.
  53. Daly Richard T. (Huntington NY) Trokel Stephen L. (New York NY), Laser ophthalmic surgical system.
  54. Tagnon, Luc, Laser ophthalmological surgical device.
  55. Prokhorov Alexandr M. (Moscow SUX) Vinogradov Alexandr L. (Moscow SUX) Danileiko Jury K. (Troitsk Moskovskoi oblasti Podolskogo raiona SUX) Manenkov Alexandr A. (Moscow SUX) Krasnov Mikhail M. (Mosco, Laser ophthalmological unit.
  56. Philip D. Freedman, Laser surgery device and method.
  57. Hammer Daniel X. ; Toth Cynthia A. ; Roach William P. ; Noojin Gary D., Laser surgical probe for use in intraocular surgery.
  58. Ozaki Kenya,JPX ; Sukigara Yasutaka,JPX ; Nakamura Hirokazu,JPX ; Enomoto Masanori,JPX, Laser treatment apparatus.
  59. Tomita, Seiki; Matsuura, Shinichi; Naito, Yasuyuki, Laser treatment apparatus.
  60. Alphonse,Gerard A., Low coherence interferometry utilizing phase.
  61. Volk Donald A. (9378 Jackson Ave. Mentor OH 44060), Measurement apparatus for indirect ophthalmoscopy.
  62. Schachar Ronald A. (1020 N. Highway 75 Denison TX 75020) Solin Stuart A. (1740 Shaker Blvd. Okemos MI 48864), Method and apparatus for delivering laser energy for ophthalmic use.
  63. Lempert Philip (14 Cedar La. Ithaca NY 14850), Method and apparatus for imaging and analysis of ocular tissue.
  64. Kane,Daniel J.; Vakhtin,Andrei B.; Peterson,Kristen A., Method and apparatus for imaging internal structures of transparent and translucent materials.
  65. Miller,Donald T.; Jonnal,Ravi S.; Qu,Junle; Thorn,Karen E., Method and apparatus for improving both lateral and axial resolution in ophthalmoscopy.
  66. David R. Williams ; Junzhong Liang, Method and apparatus for improving vision and the resolution of retinal images.
  67. Taboada John (San Antonio TX) Poirier Robert H. (San Antonio TX), Method and apparatus for laser surgery.
  68. Huang,David; Tan,Ou; Li,Yan, Method and apparatus for measuring a retinal sublayer characteristic.
  69. Lai Shui T. (Encinitas CA), Method and apparatus for ophthalmic surgery.
  70. Swanson, Eric A.; Huang, David; Fujimoto, James G.; Puliafito, Carmen A.; Lin, Charles P.; Schuman, Joel S., Method and apparatus for optical imaging with means for controlling the longitudinal range of the sample.
  71. Berry Michael J. ; Hennings David R. ; Vassiliadis Arthur V., Method and apparatus for performing corneal reshaping to correct ocular refractive errors.
  72. Sklar H. Alfred (San Francisco CA) Frank Alan M. (Livermore CA) Ferrer Olga M. (Miami FL) McMillan Charles F. (Livermore CA) Brown Stewart A. (Livermore CA) Rienecker Fred (Pleasanton CA) Harriss Pau, Method and apparatus for precision laser surgery.
  73. Hitzenberger Christoph,ATX ; Baumgartner Angela,ATX, Method and apparatus for recording three-dimensional distribution of light backscattering potential in transparent and semi-transparent structures.
  74. Hitzenberger Christoph,ATX ; Baumgartner Angela,ATX, Method and apparatus for recording three-dimensional distribution of light backscattering potential in transparent and semi-transparent structures.
  75. L'Esperance, Jr., Francis A., Method and apparatus for removing cataractous lens tissue by laser radiation.
  76. Shahidi, Ramin, Method and apparatus for volumetric image navigation.
  77. Feige, Torsten; Goder, Claus; Hollerbach, Thomas, Method and device for monitoring the energy and/or the position of a pulsed and scanned laser beam.
  78. Waelti, Rudolf, Method and device for the photoablation of the cornea with a laser beam.
  79. John Karl Shimmick ; George Caudle ; Kingman Yee ; Stephen J. Koons, Method and system for ablating surfaces with partially overlapping craters having consistent curvature.
  80. Westphal,Volker; Rollins,Andrew M.; Izatt,Joseph A., Method and system for quantitative image correction for optical coherence tomography.
  81. Toth, Cynthia A.; Stopa, Marcin; Bower, Bradley A., Method and system of coregistrating optical coherence tomography (OCT) with other clinical tests.
  82. Glossop Neil David, Method and system to facilitate image guided surgery.
  83. Seams,Christopher A.; Yang,Yonghong; Sandstrom,Clifford P.; Krishanan,Prakash R., Method for arranging and rotating a semiconductor wafer within a photolithography tool prior to exposing the wafer.
  84. Mourou Gerard A. (Ann Arbor MI) Du Detao (Ann Arbor MI) Dutta Subrata K. (Ann Arbor MI) Elner Victor (Ann Arbor MI) Kurtz Ron (Ann Arbor MI) Lichter Paul R. (Ann Arbor MI) Liu Xinbing (Ann Arbor MI) , Method for controlling configuration of laser induced breakdown and ablation.
  85. Scott D. Cohen ; Gregg Wilensky, Method for determining a border in a complex scene with applications to image masking.
  86. Bille Josef F. (Heidelberg MO DEX) Schanzlin David (St. Louis MO), Method for removing cataractous material.
  87. Bille Josef F. (Rancho Santa Fe CA) Brown Stuart I. (La Jolla CA), Method for reshaping the eye.
  88. Everett,Matthew J.; O'Hara,Keith E., Method of motion correction in optical coherence tomography imaging.
  89. O'Hara,Keith E.; Hacker,Martin, Method to suppress artifacts in frequency-domain optical coherence tomography.
  90. Choma,Michael; Izatt,Joseph A.; Davis,Anjul, Methods and systems for reducing complex conjugate ambiguity in interferometric data.
  91. Jones,Jeffrey W.; Van Valen,Marcia Angela, Methods for treating eye conditions.
  92. Choma, Michael; Izatt, Joseph A.; Ellerbee, Audrey; Sarunic, Marinko, Methods, systems and computer program products for characterizing structures based on interferometric phase data.
  93. Williams Gilbert T. ; McNally James M., Movable mirror laser registration system.
  94. Ajgaonkar,Mahesh; Alphonse,Gerard A., Multi-channel low coherence interferometer.
  95. Luiz B. Dasilva ; Bill W. Colston, Jr. ; Dale L. James, OCDR guided laser ablation device.
  96. Hellmuth Thomas,DEX ; Kaschke Michael,DEX ; Moore John C. ; Unold Gerhard,DEX, OCT-assisted surgical microscope with multi-coordinate manipulator.
  97. Webb, Kyle R.; Brownell, Michael F.; Horvath, Christopher; Juhasz, Tibor; Kurtz, Ronald M.; Nagy, Laszlo I.; Ross, Mark W.; Suarez, Carlos G., Ocular fixation and stabilization device for ophthalmic surgical applications.
  98. Webb,Kyle R.; Brownell,Michael F.; Horvath,Christopher; Juhasz,Tibor; Kurtz,Ronald M.; Nagy,Leszlo I.; Ross,Mark W.; Suarez,Carlos G., Ocular fixation and stabilization device for ophthalmic surgical applications.
  99. Webb,R. Kyle; Brownell,Michael F.; Horvath,Christopher; Juhasz,Tibor; Kurtz,Ronald M.; Nagy,Laszlo I.; Ross,Mark W.; Suarez,Carlos G., Ocular fixation and stabilization device for ophthalmic surgical applications.
  100. Iwanaga,Tomoyuki, Ophthalmic apparatus.
  101. Nakanishi,Hiroyoshi, Ophthalmic apparatus.
  102. Sklar H. Alfred (San Francisco CA) Frank Alan M. (Livermore CA) McMillan Charles (Livermore CA) Ferrer Olga M. (Miami FL), Ophthalmic diagnostic apparatus and method.
  103. Takagi Akinari,JPX, Ophthalmic instrument.
  104. Fukuma,Yasufumi; Otsuka,Hiroyuki; Yumikake,Kazuhiko, Opthalmologic apparatus.
  105. Wei, Jay, Optical apparatus and methods for performing eye examinations.
  106. Izatt, Joseph A.; Buckland, Eric L.; Brown, William J., Optical coherence imaging systems having a reduced effective linewidth and methods of using the same.
  107. Wei Jay (Fremont CA) Hellmuth Thomas (Danville CA), Optical coherence tomography assisted ophthalmologic surgical microscope.
  108. Wei Jay ; Hellmuth Thomas, Optical coherence tomography assisted surgical apparatus.
  109. Baker,Chris; Everett,Matthew J., Optical coherence tomography for eye-length measurement.
  110. Zhou,Yan; O'Hara,Keith, Optical coherence tomography for eye-length measurement.
  111. Wei, Jay; Zhao, Yonghua; Foley, James P., Optical coherence tomography optical scanner.
  112. Chen, Chungte W.; Cook, Lacy G., Optical device with a steerable light path.
  113. Fukuma, Yasufumi; Tsukada, Hisashi; Kikawa, Tsutomu; Yumikake, Kazuhiko, Optical image measurement device and optical image measurement method.
  114. Abe, Tomoyoshi, Optical image measuring apparatus.
  115. Akiba,Masahiro; Chan,Kinpui; Fukuma,Yasufumi; Otsuka,Hiroyuki; Tsukada,Hisashi; Yumikake,Kazuhiko, Optical image measuring apparatus.
  116. Chan,Kinpui; Akiba,Masahiro, Optical image measuring apparatus.
  117. Chan,Kinpui; Akiba,Masahiro; Fukuma,Yasufumi; Otsuka,Hiroyuki; Tsukada,Hisashi, Optical image measuring apparatus.
  118. Chan,Kinpui; Akiba,Masahiro, Optical image measuring apparatus and optical image measuring method.
  119. Chan,Kinpui; Akiba,Masahiro; Fukuma,Yasufumi; Otsuka,Hiroyuki; Tsukada,Hisashi; Yumikake,Kazuhiko, Optical image measuring apparatus and optical image measuring method.
  120. Chan,Kinpui; Akiba,Masahiro; Fukuma,Yasufumi; Otsuka,Hiroyuki; Tsukada,Hisashi, Optical image measuring apparatus for forming an image of an object to be measured based on interference light.
  121. Podoleanu,Adrian; Bradu,Adrian; Dainty,Chris; Merino,David, Optical mapping apparatus.
  122. Podoleanu, Adrian Gh.; Jackson, David A.; Rogers, John A.; Dobre, George M.; Cucu, Radu G., Optical mapping apparatus with adjustable depth resolution and multiple functionality.
  123. Podoleanu, Adrian Gh.; Jackson, David A.; Rogers, John A.; Dobre, George M.; Cucu, Radu G., Optical mapping apparatus with optimized OCT configuration.
  124. Podoleanu,Adrian Gh.; Jackson,David A.; Rogers,John A.; Dobre,George M.; Cucu,Radu G., Optical mapping apparatus with optimized OCT configuration.
  125. Hauger,Christoph; Reimer,Peter, Optical measuring system and optical measuring method.
  126. Everett,Matthew J.; Meyer,Scott A.; Zhou,Yan, Patterned spinning disk based optical phase shifter for spectral domain optical coherence tomography.
  127. Rollins,Andrew M.; Izatt,Joseph A.; Westphal,Volker; Pedersen,Cameron J.; Yazdanfar,Siavash, Phase-referenced doppler optical coherence tomography.
  128. Birngruber Reginald,DEX ; Scholz Christian,DEX ; Koch Peter,DEX ; Engelhardt Ralf,DEX, Process and arrangement for examining a section of the eye.
  129. Horii, Akihiro; Kaneko, Mamoru; Hirata, Tadashi; Mizuno, Hitoshi, Rapid depth scanning optical imaging device.
  130. Adams, Dennis J.; Lindsay, Alan F.; Stamper, Brian L.; Knorr, Charles T.; Seibel, Aaron P.; Crano, Michael R., Risley integrated steering module.
  131. Wiltberger,Michael W.; Andersen,Dan E., Scanning ophthalmic fixation method and apparatus.
  132. Everett,Matthew J.; Zhou,Yan, Simple high efficiency optical coherence domain reflectometer design.
  133. Sklar H. Alfred (San Francisco CA) Frank Alan M. (Livermore CA), Spectral division of reflected light in complex optical diagnostic and therapeutic systems.
  134. Hauger, Christoph; Luber, Joachim; Kaschke, Michael; Krause-Bonte, Margit, Surgical system supported by optical coherence tomography.
  135. Yun,Seok Hyun; Bouma,Brett Eugene; Tearney,Guillermo J.; deBoer,Johannes F., System and method for optical coherence imaging.
  136. Loesel,Frieder; Baumeister,Klaus; von Pape,Ulrich; Sauter,Thomas, System and method for positioning a patient for laser surgery.
  137. 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.
  138. Hahn,David Worthington; Fisher,Brian T., System and method for real-time feedback of ablation rate during laser refractive surgery.
  139. Fountain William D. (Fremont CA), System for detecting, correcting and measuring depth movement of a target.
  140. Fountain William D. (Fremont CA) Knopp Carl F. (San Mateo CA), System for scanning a surgical laser beam.
  141. de Boer,Johannes Fitzgerald, Systems and methods for imaging a sample.

이 특허를 인용한 특허 (7)

  1. Su, Wei, Disposable cap for an eye imaging apparatus and related methods.
  2. Su, Wei; Xu, Li, Eye imaging apparatus and systems.
  3. Su, Wei; Xu, Li, Eye imaging apparatus and systems.
  4. Su, Wei, Eye imaging apparatus with a wide field of view and related methods.
  5. Su, Wei, Eye imaging apparatus with sequential illumination.
  6. Su, Wei; Lin, Kang, Mechanical features of an eye imaging apparatus.
  7. Su, Wei; Xu, Li, Portable eye imaging apparatus.
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