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Tracking system for laser surgery 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-005/06
출원번호 US-0072528 (1993-06-04)
발명자 / 주소
  • Klopotek Peter J. (Framingham MA)
출원인 / 주소
  • Summit Technology, Inc. (Waltham MA 02)
인용정보 피인용 횟수 : 89  인용 특허 : 0

초록

Systems and methods are disclosed for aligning and confining laser beam exposure to a defined target region of biological tissue during laser surgery by employing a floating lens which is mechanically coupled to a reference element, such as a target tissue securing assembly, in order to compensate f

대표청구항

A system for tracking target tissue movements during laser surgery comprising: a laser source for emitting laser radiation; target securing means for securing target tissue region during surgery; and optical means for projecting the laser radiation onto said target region, the optical means further

이 특허를 인용한 특허 (89)

  1. Hammer, Daniel X.; Ferguson, R. Daniel; Mujat, Mircea; Iftimia, Nicusor V., Adaptive optics line scanning ophthalmoscope.
  2. Raksi, Ferenc; Juhasz, Tibor, Adaptive patient interface.
  3. Raksi, Ferenc; Juhasz, Tibor, Adaptive patient interface.
  4. Raksi, Ferenc; Lummis, Wesley William, Adjusting ophthalmic docking system.
  5. Slatkine Michael, Apparatus and method as preparation for performing a myringotomy in a child's ear without the need for anaesthesia.
  6. Yossi Schechter IL; Martin David Abraham IL; Giries Kadis IL; Michael Slatkine IL, Apparatus and method as preparation for performing a myringotomy in a child's ear without the need for anaesthesia.
  7. Liang Junzhong ; Burkhalter James H., Apparatus and method for measuring vision defects of a human eye.
  8. Rudolph W. Frey ; James H. Burkhalter ; Neil Zepkin ; Edward Poppeliers ; John Alfred Campin, Apparatus and method for objective measurement of optical systems using wavefront analysis.
  9. Daikuzono Norio, Apparatus for laser treatment for living tissue.
  10. Kurtz, Ronald M., Apparatus, systems and techniques for interfacing with an eye in laser surgery.
  11. Stack, Matthew E., Application of smooth pursuit cognitive testing paradigms to clinical drug development.
  12. Tang Fuqian ; Han Xiaofeng, Compound astigmatic myopia or hyperopia correction by laser ablation.
  13. Fuqian Tang, Device and method for correcting astigmatism by laser ablation.
  14. Yavitz Edward Q., Device and method for simulating ophthalmic surgery.
  15. Apple Howard P. ; Nevitt Martin P. ; Han Xiaofeng, Eye illumination system and method.
  16. Apple Howard P. ; Nevitt Martin P. ; Han Xiaofeng, Eye illumination system and method.
  17. Howard P. Apple ; Martin P. Nevitt ; Xiaofeng Han, Eye illumination system and method.
  18. Oltean Ioan T. ; Shimmick John K. ; Clapham Terrance N., Eye tracking device for laser eye surgery using corneal margin detection.
  19. Frey, Rudolph W.; Burkhalter, James H.; Gray, Gary P.; Zepkin, Neil; Downes, Jr., George Richard; McWhirter, John E., Flying spot laser ablation method.
  20. Ferguson, R. Daniel; Hammer, Daniel X.; Iftimia, Nicusor V.; Bigelow, Chad, Hybrid spectral domain optical coherence tomography line scanning laser ophthalmoscope.
  21. Ferguson, R. Daniel; Hammer, Daniel X.; Iftimia, Nicusor V.; Bigelow, Chad, Hybrid spectral domain optical coherence tomography line scanning laser ophthalmoscope.
  22. Ferguson, R. Daniel; Hammer, Daniel X.; Iftimia, Nicusor V.; Bigelow, Chad, Hybrid spectral domain optical coherence tomography line scanning laser ophthalmoscope.
  23. Ferguson, R. Daniel; Hammer, Daniel X.; Iftimia, Nicusor V.; Bigelow, Chad, Hybrid spectral domain optical coherence tomography line scanning laser ophthalmoscope.
  24. Lai, Ming; Yuan, Meijuan, Hybrid tracking system.
  25. Frey, Rudolph W.; Burkhalter, James H.; Gray, Gary P.; Zepkin, Neil; Downes, Jr., George Richard; McWhirter, John E., Laser beam delivery system.
  26. Schuele, Georg; Gooding, I, Phillip, Laser eye surgery system.
  27. Schuele, Georg; Gooding, Phillip, Laser eye surgery system.
  28. 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.
  29. 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.
  30. Naranjo-Tackman, Ramón; Kuri, Jorge Octavio Villar; Frey, Rudolph W., Laser system and method for astigmatic corrections in association with cataract treatment.
  31. Naranjo-Tackman, Ramón; Kuri, Jorge Octavio Villar; Frey, Rudolph W., Laser system and method for correction of induced astigmatism.
  32. Frey, Rudolph W.; Naranjo-Tackman, Ramón, Laser system and method for performing and sealing corneal incisions in the eye.
  33. Bott, Steven E.; Frey, Rudolph W.; Porter, Gerrit N.; Wakefield, Scott Howard; Chura, William D., Laser system for treatment of the eye.
  34. Bott, Steven E.; Frey, Rudolph W.; Porter, Gerrit N.; Wakefield, Scott Howard; Chura, William D., Laser system for treatment of the eye.
  35. Tomita, Seiki, Laser treatment apparatus.
  36. Myers, Raymond I., Lenticular refractive surgery of presbyopia, other refractive errors, and cataract retardation.
  37. Yee Kingman, Linear array eye tracker.
  38. Frey, Rudolph W.; Bott, Steven E.; Porter, Gerrit N., Liquid filled index matching device for ophthalmic laser procedures.
  39. Muller David F., Medical spacing guide.
  40. Tang Fuqian ; Hwang Ming-Yi, Method and apparatus for controlling scanning of an ablating laser beam.
  41. Lai,Shui T., Method and apparatus for laser surgery of the cornea.
  42. Telfair William B. ; Yoder ; Jr. Paul R. ; Hoffman Hanna J., Method and apparatus for removing corneal tissue with infrared laser radiation.
  43. John Karl Shimmick ; George Caudle ; Kingman Yee ; Stephen J. Koons, Method and system for ablating surfaces with partially overlapping craters having consistent curvature.
  44. Frey, Rudolph W.; Gray, Gary P., Method and system for measuring an eye.
  45. Frey, Rudolph W.; Gray, Gary P., Method and system for removal and replacement of lens material from the lens of an eye.
  46. Frey, Rudolph W.; Burkhalter, James H.; Gray, Gary P.; Zepkin, Neil; Downes, Jr., George Richard; McWhirter, John E., Method of ablating a moving eye.
  47. Henry M. D'Souza ; Edwin J. Sarver ; Youssef S. Wakil, Method of corneal analysis using a checkered placido apparatus.
  48. Frey, Rudolph W.; Burkhalter, James H.; Gray, Gary P.; Zepkin, Neil; Downes, Jr., George Richard; McWhirter, John E., Method of correcting vision.
  49. Frey, Rudolph W.; Burkhalter, James H.; Gray, Gary P.; Zepkin, Neil; Downes, Jr., George Richard; McWhirter, John E., Method of redirecting an ablating laser beam.
  50. Levine, Bruce Martin, Method of treating the human eye with a wavefront sensor-based ophthalmic instrument.
  51. Lai Shui T., Method of, and apparatus for, surgery of the cornea.
  52. Hammer, Daniel X.; Ferguson, R. Daniel; Mujat, Mircea; Patel, Anket H.; Iftimia, Nicusor V.; Burns, Stephen, Multi-functional adaptive optics retinal imaging.
  53. Pop Mihai,CAX, Multizone, multipass photorefractive keratectomy.
  54. Levine, Bruce M.; Wirth, Allan; Knowles, C. Harry, 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.
  55. Frey Rudolph W. ; Burkhalter James H. ; Zepkin Neil ; Poppeliers Edward ; Campin John A., Objective measurement and correction of optical systems using wavefront analysis.
  56. Frey Rudolph W. ; Burkhalter James H. ; Zepkin Neil ; Poppeliers Edward ; Campin John A., Objective measurement and correction of optical systems using wavefront analysis.
  57. Levine, Bruce M., Ophthalmic instrument having adaptive optic subsystem with multiple stage phase compensator.
  58. Levine, Bruce Martin, Ophthalmic instrument having an integral wavefront sensor and display device that displays a graphical representation of high order aberrations of the human eye measured by the wavefront sensor.
  59. Wirth, Allan, Ophthalmic instrument having hartmann wavefront sensor deriving location of spots with spot fitting techniques.
  60. Wirth, Allan, Ophthalmic instrument having wavefront sensor with multiple imaging devices that simultaneously capture multiple images of an array of spots produced by a lenslet array.
  61. Previn,Victor; Tikhomirov,Alexei; Feklistov,Dmitri; Plunkett,Malcolm, Ophthalmic laser system.
  62. J. T. Lin, Ophthalmic surgery method using non-contact scanning laser.
  63. Stack, Matthew E., Optical neuroinformatics.
  64. Ming Lai, Optical tracking based on a change in optical reflection across a reference mark on an object to be tracked.
  65. Lai Ming, Optical tracking device.
  66. Lai, Ming; Yuan, Mei Juan, Optical tracking device employing scanning beams on symmetric reference.
  67. Raksi, Ferenc, Patient interface defogger.
  68. Raksi, Ferenc; Goldshleger, Ilya, Patient interface with variable applanation.
  69. Frey, Rudolph W.; Bott, Steven E., Purkinjie image-based alignment of suction ring in ophthalmic applications.
  70. Lin, Jui-Teng, Refractive surgical laser apparatus and method.
  71. Ferguson R. Daniel, Servo tracking system utilizing phase-sensitive detection of reflectance variations.
  72. Telfair William B. ; Hoffman Hanna J., Short pulse mid-infrared laser source for surgery.
  73. Tang Fuqian, Smooth and uniform laser ablation apparatus and method.
  74. Hammer, Daniel X.; Ferguson, R. Daniel; Iftimia, Nicusor V.; Ustun, Teoman E., Stabilized retinal imaging with adaptive optics.
  75. Hammer, Daniel X.; Ferguson, R. Daniel; Iftimia, Nicusor V.; Ustun, Teoman E., Stabilized retinal imaging with adaptive optics.
  76. Hammer, Daniel X.; Ferguson, R. Daniel; Iftimia, Nicusor V.; Ustun, Teoman E., Stabilized retinal imaging with adaptive optics.
  77. 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.
  78. 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.
  79. 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.
  80. Frey, Rudolph W.; Gray, Gary P.; Zepkin, Neil, System and method for performing LADAR assisted procedures on the lens of an eye.
  81. Frey, Rudolph W.; Bott, Steven E.; Gray, Gary P., System and method for providing laser shot patterns to the lens of an eye.
  82. 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.
  83. Lang, Stefan; Toennies, Roland, System and method for the treatment of a patients eye working at high speed.
  84. 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.
  85. Yavitz Edward Q., System for altering corneal tissue.
  86. Yee Kingman ; Munnerlyn Charles R., Two camera off-axis eye tracker for laser eye surgery.
  87. Herrmann Glockler ; Henry Price ; Jeff Sobiech, Two-pivot scanning for laser eye surgery.
  88. Levine,Bruce Martin, Wavefront sensing apparatus with adaptive optics.
  89. Pettit, George H., Wavefront sensor for objective measurement of an optical system and associated methods.
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