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Automatic on-the-fly focusing for continuous image acquisition in high-resolution microscopy 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04N-007/18
출원번호 US-0235215 (1999-01-22)
발명자 / 주소
  • Price, Jeffrey H.
  • Bravo-Zanoguera, Miguel
출원인 / 주소
  • Price
  • Jeffrey H.
대리인 / 주소
    Gray Cary Ware & Freidenrich
인용정보 피인용 횟수 : 42  인용 특허 : 3

초록

The invention provides an apparatus, and related method, for continuous volume imaging a specimen using imaging a plurality of image planes at predetermined focal depths. The focal depth for each image plane is adjustable in accordance with a variety of desired spatial configurations. The images gen

대표청구항

1. An apparatus for generating a volume image, comprising: a plurality of imaging devices positioned at adjacent image planes; at least one image device configured for being adjustably displaced at a predetermined depth of focus; and a focusing device for selecting an optimum depth of focus at

이 특허에 인용된 특허 (3)

  1. Shih I-Fu (Los Alamitos CA) Chang David B. (Tustin CA) Moise Norton L. (Pacific Palisades CA), Analog optical processing for the construction of fractal objects.
  2. Price Jeffrey H. ; Gough David A., Autofocus system for scanning microscopy.
  3. Shih I-Fu (Los Alamitos CA) Chang David B. (Tustin CA) Moise Norton L. (Pacific Palisades CA) Drummond James E. (Oceanside CA), Electro-optical IFS finder.

이 특허를 인용한 특허 (42)

  1. Seibel, Eric J.; Nelson, Alan C.; Fauver, Mark E.; Rahn, J. Richard, 3D imaging of live cells with ultraviolet radiation.
  2. Seibel, Eric J.; Nelson, Alan C.; Fauver, Mark E.; Rahn, J. Richard, 3D imaging of live cells with ultraviolet radiation.
  3. Krief, Bruno; Marcelpoil, Raphaël, Apparatus and method for rapid microscopic image focusing.
  4. Krief,Bruno; Marcelpoil,Rapha��l, Apparatus and method for rapid microscopic image focusing having a movable objective.
  5. Westphal, Peter; Bublitz, Daniel; Mitzkus, Reiner, Autofocus device for microscopy.
  6. Price, Jeffrey H.; Weinigel, Martin; Fuller, Derek N.; Kellner, Albert L., Automated scanning cytometry using chromatic aberration for multiplanar image acquisition.
  7. McCollum, Tom; Patt, Paul; Shen, Frank; Chu, Daniel Y.; Flory, Don; Griffin, Mike; Heng, Xin; Hefner, Eli, Compact automated cell counter.
  8. McCollum, Tom; Patt, Paul; Shen, Frank; Chu, Daniel Y.; Flory, Don; Griffin, Mike; Heng, Xin; Hefner, Eli, Compact automated cell counter.
  9. Rahn, J. Richard; Hayenga, Jon W., Depth of field extension for optical tomography.
  10. Keupp,Jochen; Aldefeld,Bernd; Boernert,Peter, Fast continuous moving bed magnetic resonance imaging with multiple stationary receive coils for sense reconstruction.
  11. Virág, Tibor; László, Attila; Molnár, Béla; Tagscherer, Attila; Varga, Viktor Sebestyén, Focusing method for the high-speed digitalisation of microscope slides and slide displacing device, focusing optics, and optical rangefinder.
  12. Kempe, Michael; Westphal, Peter; Grau, Wolfgang; von Freymann, Georg, Laser beam machining.
  13. Yang,Victor Xiao Dong; Vitkin,I. Alex; WongKeeSong,Louis M.; Katz,Sharon; Gordon,Margaret Leslie; Wilson,Brian C.; Mok,Alvin Ho Kwan, Method and apparatus for high resolution coherent optical imaging.
  14. Gouch, Martin Philip, Method and apparatus for image scanning.
  15. Gouch, Martin Philip, Method and apparatus for image scanning.
  16. Georgiev, Todor G., Method and apparatus for using a virtual camera to dynamically refocus a digital image.
  17. Georgiev, Todor G., Method and apparatus for using a virtual camera to dynamically refocus a digital image.
  18. Zahniser, Michael, Method for assessing image focus quality.
  19. Zahniser, Michael, Method for assessing image focus quality.
  20. Rahn, John Richard; Nelson, Alan C., Method for correction of relative object-detector motion between successive views.
  21. Rahn,John Richard; Nelson,Alan C., Method for correction of relative object-detector motion between successive views.
  22. Meyer, Michael G.; Rahn, J. Richard; Fauver, Mark E., Method for image processing and reconstruction of images for optical tomography.
  23. Krief, Bruno; Marcelpoil, Raphaël, Method of capturing a focused image of a movable slide via an objective of a microscopy device.
  24. Krief, Bruno; Marcelpoil, Raphaël, Method of capturing a focused image via an objective of a microscopy device.
  25. Suzuki,Yoshimasa; Muraki,Kayuri, Microscope imaging apparatus and biological-specimen examination system.
  26. Ogihara,Yasushi, Microscope system.
  27. Maddison,John R, Microscopy imaging system and method.
  28. Price, Jeffrey H.; Fuller, Derek N.; Kellner, Albert L.; Azimi, Behrad, Multifunction autofocus system and method for automated microscopy.
  29. Price,Jeffrey H., Multiparallel three dimensional optical microscopy system.
  30. Watson, Mathew D.; Hayenga, Jon W., Optical tomography system with high-speed scanner.
  31. Meyer, Michael G.; Hayenga, Jon W.; Abbott, Thomas M.; Steinhauer, David E., Pattern noise correction for pseudo projections.
  32. Reinhorn, Silviu; Cheifetz, Eli; Weingarten, Amit, Position sensitive STEM detector.
  33. Dixon, Arthur Edward; Damaskinos, Savvas, Slide scanner with dynamic focus and specimen tilt and method of operation.
  34. Holden, James Matthew; Genio, Edgar; Egan, Todd J., Spectrographic metrology of patterned wafers.
  35. Smith,Steven Winn, Surveillance camera with flicker immunity.
  36. Northrup, Ryan; Yu, Dahai; Sonobe, Hirato, System and method for controlling a tracking autofocus (TAF) sensor in a machine vision inspection system.
  37. Fauver, Mark E.; Rahn, J. Richard; Seibel, Eric J.; Nelson, Alan C., System and method for processing specimens and images for optical tomography.
  38. Eichhorn, Ole, Systems and methods for viewing three dimensional virtual slides.
  39. Eichhorn, Ole, Viewing three dimensional digital slides.
  40. Eichhorn, Ole, Viewing three dimensional digital slides.
  41. Eichhorn, Ole, Viewing three dimensional digital slides.
  42. Eichhorn, Ole, Viewing three dimensional digital slides.
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