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[미국특허] Liquid/liquid fiber-optic fluorescence detector and absorbance analyzer 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01N-021/59
  • G01N-021/64
출원번호 US-0141159 (1988-01-06)
발명자 / 주소
  • Bach David T. (Westborough MA)
출원인 / 주소
  • Amoco Corporation (Chicago IL 02)
인용정보 피인용 횟수 : 66  인용 특허 : 3

초록

An apparatus and method are disclosed for measuring the fluorescence and absorbance of a liquid sample. A sample tube is provided that has an external surface and a bore therethrough for containing a sample fluid. A cladding fluid coats the bore of the sample tube to provide a smooth surface adjacen

대표청구항

An apparatus for measuring the fluorescence and absorbance of a liquid sample, wherein the liquid sample is disposed in the bore of a sample tube, comprising: a sample tube for containing a sample fluid having an external surface and a bore therethrough; a source of excitation radiation directed alo

이 특허에 인용된 특허 (3) 인용/피인용 타임라인 분석

  1. Bach David T. (Wilmington DE) Robertson ; Jr. Charles W. (Rockland DE), Absorbance, turbidimetric, fluorescence and nephelometric photometer.
  2. Johnson Leighton C. (Edwardsburg MI), Apparatus for and method of optical absorbance and fluorescent radiation measurement.
  3. Kramer Charles J. (Pittsford NY), Fluorescent activated, spatially quantitative light detector.

이 특허를 인용한 특허 (66) 인용/피인용 타임라인 분석

  1. Ward, Michael W.; Kaduchak, Gregory, Acoustic concentration of particles in fluid flow.
  2. Dorsel,Andreas N.; King,David A.; Sampas,Nicholas M., Apparatus for interrogating an addressable array.
  3. Hahn Andreas,DEX, Apparatus for measuring physiological parameters of blood guided in an extracorporeal circulatory system.
  4. Kaduchak, Gregory; Ward, Michael D, Apparatus for separating particles utilizing engineered acoustic contrast capture particles.
  5. Kaduchak, Gregory; Ward, Michael D., Apparatus for separating particles utilizing engineered acoustic contrast capture particles.
  6. Wollert, Gary S.; Becker, Thomas P., Automatic transmission fluid tester.
  7. Nasu Hisanori (Yokohama JPX) Yamamoto Kenji (Yokohama JPX) Fujimiya Hitoshi (Mobara JPX), Capillary electrophoresis apparatus for detecting emitted fluorescence from a sample without employing an external light.
  8. Iwano, Takeshi; Yamada, Tsuyoshi; Zhou, Xiaojing, Capillary tube flow cell.
  9. Perbost,Michel G. M.; Lefkowitz,Steven M.; Kanemoto,Roy H.; Schembri,Carol T., Chemical arrays.
  10. Smith Lee M. ; Benner Robert E., Compact and robust spectrograph.
  11. Gilmore, Adam Matthew; Tomioka, Kiichiro, Determination of water treatment parameters based on absorbance and fluorescence.
  12. Degner, Martin; Damaschke, Nils; Ewald, Hartmut, Device for high-resolution determination of the concentration of substances in fluid media.
  13. Wulf, Jurgen, Device for the detection of a fluorescent dye.
  14. Srinivasan, Vijay; Pamula, Vamsee K.; Pollack, Michael G.; Wang, Tih-Hong, Droplet actuator devices, configurations, and methods for improving absorbance detection.
  15. Garrett, Mark H., Fiber-coupled liquid sample analyzer with liquid flow cell.
  16. Munk Miner N. (Sonoma CA), Flow cell and method for making same.
  17. Dourdeville Theodore A. ; Gilby Anthony C. ; DellaRovere Dennis, Flow cell, analyte measurement apparatus and methods related thereto.
  18. Dourdeville, Theodore A.; Gilby, Anthony C.; DellaRovere, Dennis, Flow cell, analyte measurement apparatus and methods related thereto.
  19. Gerner, Yuri; Sims, Carl W.; Thielen, Thomas, Flow cells utilizing photometric techniques.
  20. Gerner, Yuri; Sims, Carl W.; Thielen, Thomas J., Flow cells utilizing photometric techniques.
  21. Gerner,Yuri; Sims,Carl W.; Thompson,Jonathan, Fluid analysis apparatus.
  22. Gerner,Yuri; Sims,Carl W.; Thompson,Jonathan, Fluid analysis apparatus.
  23. Garrett W. Ray (Oak Ridge TN), Gas concentration measurement instrument based on the effects of a wave-mixing interference on stimulated emissions.
  24. Kanomata, Takeshi; Horikawa, Yoshiteru; Kikuchi, Shinichi, High-pressure fluorescence flow cell, flow cell assembly, fluorescence detector, and supercritical fluid chromatograph.
  25. Simpson, III, Thomas W.; Martino, Anthony Joseph; Schermacher, Ken Stephen; Reinhardt, Matthew Paul; Alspach, Jeff B., Liquid measurement cell having a pressurized air cavity therein.
  26. Schermacher,Ken Stephen; Martino,Anthony J.; Reinhardt,Matthew Paul; Simpson, III,Thomas W.; Juhasz,Jason R.; Alspach,Jeff B., Liquid measurement cell having a transparent partition therein.
  27. Miyazaki Takeshi (Ebina JPX) Nishimura Matsuomi (Ohmiya JPX) Isaka Kazuo (Tokyo JPX) Tanaka Kazumi (Yokohama JPX) Ohnishi Toshikazu (Machida JPX) Yoneyama Yoshito (Kawasaki JPX) Takayama Hidehito (Ch, Liquid moving apparatus and measuring apparatus utilizing the same.
  28. Ward, Michael D.; Stewart, Carleton C.; Kaduchak, Gregory, Medium switching systems and methods using acoustic radiation pressure.
  29. Ward, Michael D.; Stewart, Carleton C.; Kaduchak, Gregory, Medium switching systems and methods using acoustic radiation pressure.
  30. Martino,Anthony J.; Schermacher,Ken Stephen, Method for measuring a color property of a liquid using a liquid measurement cell having a transparent partition therein.
  31. Goddard, Gregory R; Kaduchak, Gregory; Jett, James H; Graves, Steven W, Method for non-contact particle manipulation and control of particle spacing along an axis.
  32. Goddard, Gregory Russ; Kaduchak, Gregory; Jett, James Hubert; Graves, Steven Wayde, Method for non-contact particle manipulation and control of particle spacing along an axis.
  33. Goddard, Gregory Russ; Kaduchak, Gregory; Jett, James Hubert; Graves, Steven Wayde, Method for non-contact particle manipulation and control of particle spacing along an axis.
  34. Munk Miner Nelson ; Perry Douglas Alan ; Said Brian Robert, Method of making a flow cell for light absorption measurement of small volume samples.
  35. Kaduchak, Gregory; Stewart, Carleton; Ward, Michael, Methods and systems for controlling the flow of particles for detection.
  36. Kaduchak, Gregory; Stewart, Carleton; Ward, Michael D., Methods and systems for controlling the flow of particles for detection.
  37. Ward, Michael D.; Kaduchak, Gregory, Methods for fusing cells using acoustic radiation pressure.
  38. Klunder, Derk J. W.; Hendriks, Bernardus H. W.; Kuiper, Stein, Optical waveguide.
  39. Kaduchak, Gregory; Ward, Michael D, Particle analysis in an acoustic cytometer.
  40. Kaduchak, Gregory; Ward, Michael D, Particle analysis in an acoustic cytometer.
  41. Kaduchak, Gregory; Ward, Michael D., Particle analysis in an acoustic cytometer.
  42. Ward, Michael D.; Kaduchak, Gregory, Particle analyzing systems and methods using acoustic radiation pressure.
  43. Ward, Michael; Kaduchak, Gregory, Particle analyzing systems and methods using acoustic radiation pressure.
  44. Ward, Michael; Kaduchak, Gregory, Particle analyzing systems and methods using acoustic radiation pressure.
  45. Kaduchak, Gregory; Stewart, Carleton C.; Ward, Michael D., Particle imaging systems and methods using acoustic radiation pressure.
  46. Ward, Michael D.; Kaduchak, Gregory, Particle quantifying systems and methods using acoustic radiation pressure.
  47. Ward, Michael D.; Kaduchak, Gregory, Particle quantifying systems and methods using acoustic radiation pressure.
  48. Ward, Michael D.; Stewart, Carleton C.; Kaduchak, Gregory, Particle switching systems and methods using acoustic radiation pressure.
  49. Juhasz, Jason R.; Martino, Anthony J.; Schermacher, Ken Stephen, Probe apparatus for measuring a color property of a liquid.
  50. Smith Lee M. ; Benner Robert E. ; Gray George R. ; Pan Ming-Wei ; Rallison Richard D., Raman spectroscopy apparatus and method using external cavity laser for continuous chemical analysis of sample streams.
  51. Corson, John F.; Dorsel, Andreas N., Reading dry chemical arrays.
  52. Tokhtuev, Eugene; Owen, Christopher J.; Skirda, Anatoly; Christensen, William M., Self-cleaning optical sensor.
  53. Tokhtuev, Eugene; Owen, Christopher J.; Skirda, Anatoly; Christensen, William M., Self-cleaning optical sensor.
  54. Tang, Cha-Mei; Amstutz, III, Platte T., Sensitive emission light gathering and detection system.
  55. Tang, Cha Mei; Amstulz, III, Platte T, Sensitive emission light gathering and flow through detection system.
  56. Tang, Cha-Mei; Amstutz, III, Platte T., Sensitive emission light gathering and flow through detection system.
  57. Tsukii, Ken; Xu, Jie; Kimura, Kenichi; Sugiyama, Satoshi, Specimen optical information recognizing device and its recognizing method.
  58. Kaduchak, Gregory; Ward, Michael D., System and method for acoustic focusing hardware and implementations.
  59. Graves, Steven W.; Habbersett, Robert C., System and method for measuring particles in a sample stream of a flow cytometer using a low power laser source.
  60. Graves, Steven W.; Habbersett, Robert C., System and method for measuring particles in a sample stream of a flow cytometer using low-power laser source.
  61. Graves, Steven W.; Habbersett, Robert C., System and method for measuring particles in a sample stream of a flow cytometer using low-power laser source.
  62. Gerner, Yuri; Sims, Carl W.; Thompson, Jonathan, System for assembling a fluid analysis apparatus.
  63. Schermacher, Ken Stephen; Alspach, Jeff B.; Martino, Anthony Joseph; Reinhardt, Matthew Paul; Simpson, III, Thomas W.; Juhasz, Jason R., System for measuring a color property of a liquid.
  64. Kaduchak, Gregory; Ward, Michael D., Systems and methods for separating particles utilizing engineered acoustic contrast capture particles.
  65. Kaduchak, Gregory; Goddard, Greg; Salzman, Gary; Sinha, Dipen; Martin, John C.; Kwiatkowski, Christopher; Graves, Steven, Ultrasonic analyte concentration and application in flow cytometry.
  66. Kaduchak, Gregory; Goddard, Greg; Salzman, Gary; Sinha, Dipen; Martin, John C.; Kwiatkowski, Christopher; Graves, Steven, Ultrasonic analyte concentration and application in flow cytometry.

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