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Supports incorporating vertical cavity emitting lasers and tracking apparatus for use in combinatorial synthesis 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C12Q-001/00
  • G01N-035/53
  • G01N-021/00
  • G11C-011/00
출원번호 US-0879298 (1997-06-19)
발명자 / 주소
  • Frankel Robert D.
대리인 / 주소
    Wall Marjama Bilinski & Burr
인용정보 피인용 횟수 : 162  인용 특허 : 19

초록

A combinatorial chemistry bead that includes an electromagnetic spectral emitter that radiates a distinct electromagnetic code for each bead that uniquely identifies each bead, a terminal apparatus for receiving the electromagnetic code from each bead, and a method for performing combinatorial synth

대표청구항

[ What is claimed is:] [1.] Improved synthesis beads for use in combinatorial synthesis processes that includes at least one bead sorting step, wherein said beads include;(a.) a region on which is disposed a growth matrix,(b.) a molecular anchoring site attached to said growth matrix and(c.) a photo

이 특허에 인용된 특허 (19)

  1. Still W. Clark (Clinton NY) Wigler Michael H. (Lloyd Harbor NY) Ohlmeyer Michael H. J. (Plainsboro NJ) Dillard Lawrence W. (Plainsboro NJ) Reader John C. (Princeton NJ), Complex combinatorial chemical libraries encoded with tags.
  2. Beigel Michael L. (Corona CA), Data altering means for multi-memory electronic identification tag.
  3. Hsieh Bing R. (Webster NY) Johnson Gordon E. (Webster NY) Antoniadis Homer (Rochester NY) McGrane Kathleen M. (Webster NY) Stolka Milan (Fairport NY), Electroluminescent devices containing a conjugated polymer obtained via halogen precursor route chemistry.
  4. Mandecki Wlodek (516 Hemlock La. Libertyville IL 60048), Electronically-indexed solid-phase assay for biomolecules.
  5. Geysen Hendrik M. (Knoxfield AUX), Method for determining mimotopes.
  6. Cargill John ; Armstrong Robert W., Methods and apparatus for synthesizing labeled combinatorial chemistrylibraries.
  7. Bryan Philip S. (Webster NY) Lovecchio Frank V. (Webster NY) VanSlyke Steven A. (Rochester NY), Mixed ligand 8-quinolinolato aluminum chelate luminophors.
  8. Beigel Michael L. (Corona CA), Multi-memory electronic identification tag.
  9. Bradley Eric M. (San Diego CA), Optical data storage using temperature stabilizer lasers.
  10. Lawandy Nabil M. (Providence RI), Optical sources having a strongly scattering gain medium providing laser-like action.
  11. VanSlyke, Steven A.; Tang, Ching W., Organic electroluminescent devices having improved power conversion efficiencies.
  12. Tang Ching W. (Rochester NY) Weidner Charles H. (Ontario NY) Comfort Dustin L. (Rochester NY), Red-emitting organic electroluminescent device.
  13. Nova Michael P. ; Senyei Andrew E., Remotely programmable matrices with memories.
  14. Beigel Michael L. (Corona CA), Signal transmission and tag power consumption measurement circuit for an inductive reader.
  15. Carroll ; Jr. Max L. (Kingsport TN), System for determining stretch characteristics of thermoplastic articles.
  16. Urbas Donald J. (Evergreen CO) Ellwood David (Golden CO), System monitoring programmable implantable transponder.
  17. D\Hont Loek (Almelo NLX) Tip Anne (Overdinkel NLX) Meier Herbert (Moosburg DEX), Transponder systems for automatic identification purposes.
  18. Denk, Winfried; Strickler, James P.; Webb, Watt W., Two-photon laser microscopy.
  19. Littman Jon E. (Honeoye Falls NY) VanSlyke Steve A. (Rochester NY), White light emitting internal junction organic electroluminescent device.

이 특허를 인용한 특허 (162)

  1. Matsui, Yasuhiro; Mahgerefteh, Daniel, Adiabatically frequency modulated source.
  2. Lamberson, Lisa A.; Morena, Robert M., Antimony-free glass, antimony-free frit and a glass package that is hermetically sealed with the frit.
  3. Lamberson, Lisa A.; Morena, Robert M., Antimony-free glass, antimony-free frit and a glass package that is hermetically sealed with the frit.
  4. Kempa, Krzysztof J.; Naughton, Michael J.; Ren, Zhifeng; Rybczynski, Jakub A., Apparatus and methods for manipulating light using nanoscale cometal structures.
  5. Kempa, Krzysztof J.; Naughton, Michael J.; Ren, Zhifeng; Rybczynski, Jakub A., Apparatus and methods for nanolithography using nanoscale optics.
  6. Kempa, Krzysztof J.; Ren, Zhifeng; Naughton, Michael J.; Rybczynski, Jakub A., Apparatus and methods for optical switching using nanoscale optics.
  7. Kempa, Krysztof J.; Naughton, Michael J.; Ren, Zhifeng; Wang, Yang; Rybczynski, Jakub A., Apparatus and methods for solar energy conversion using nanocoax structures.
  8. Kempa, Krzysztof J.; Naughton, Michael J.; Ren, Zhifeng; Rybczynski, Jakub A., Apparatus and methods for solar energy conversion using nanoscale cometal structures.
  9. Erikson,Glen H., Apparatus for assaying biopolymer binding by means of multiple measurements under varied conditions.
  10. Shah, Shishir, Arrays, computer program products and methods for in silico array-based comparative binding assays.
  11. El Gamal, Abbas; Eltoukhy, Helmy; Salama, Khaled, Biological analysis arrangement and approach therefor.
  12. El Gamal, Abbas; Eltoukhy, Helmy; Salama, Khaled, Biological analysis arrangement and approach therefor.
  13. El Gamal, Abbas; Eltoukhy, Helmy; Salama, Khaled, Biological analysis arrangement and approach therefor.
  14. El Gamal, Abbas; Eltoukhy, Helmy; Salama, Khaled, Biological analysis arrangement and approach therefor.
  15. Heiner, David Louis; Fambro, Steven P.; Kotseroglou, Theo; Lebl, Michal, Chemical reaction monitor.
  16. Heiner, David Louis; Fambro, Steven P.; Kotseroglou, Theo; Lebl, Michal, Chemical reaction monitor.
  17. Moon,John; Putnam,Martin A., Chemical synthesis using diffraction grating-based encoded optical elements.
  18. Matsui, Yasuhiro; Mahgerefteh, Daniel, Chirp Managed Laser (CML) transmitter.
  19. Matsui, Yasuhiro; Walker, Duncan; Mahgerefteh, Daniel; Tayebati, Parviz, Chirp managed directly modulated laser with bandwidth limiting optical spectrum reshaper.
  20. Mahgerefteh, Daniel; Matsui, Yasuhiro; Zheng, Xueyan; Johnson, Bart; Walker, Duncan J W; Tayebati, Parviz, Chirp-managed, electroabsorption-modulated laser.
  21. Mahgerefteh, Daniel; McCallion, Kevin J.; Nguyen, The'Linh; Allouche, David, Chirped laser with passive filter element for differential phase shift keying generation.
  22. Mahgerefteh, Daniel; Zheng, Xueyan; Matsui, Yasuhiro; Tayebati, Parviz; Singer, Andrew C, Chirped laser with passive filter element for differential phase shift keying generation.
  23. Moon, John A.; Putnam, Martin A.; Kersey, Alan D.; Fournier, David; Pinto, Joseph, Composition including an item and an encoded optical substrate and a method for identifying an item.
  24. Matsui, Yasuhiro; McCallion, Kevin J.; Tayebati, Parviz, DBR laser with improved thermal tuning efficiency.
  25. Matsui, Yasuhiro; McCallion, Kevin J.; Tayebati, Parviz, DBR laser with improved thermal tuning efficiency.
  26. Chee,Mark S.; Czarnik,Anthony W.; Stuelpnagel,John R., Decoding of array sensors with microspheres.
  27. Lee, Jiwoo, Deposition accuracy determination apparatus and deposition accuracy determination method using the same.
  28. Gunderson, Kevin; Stuelpnagel, John R.; Chee, Mark S., Detection of nucleic acid reactions on bead arrays.
  29. Gunderson, Kevin; Stuelpnagel, John R.; Chee, Mark S.; Fan, Jian-Bing, Detection of nucleic acid reactions on bead arrays.
  30. Gunderson, Kevin; Stuelpnagel, John R.; Chee, Mark S.; Fan, Jian-Bing, Detection of nucleic acid reactions on bead arrays.
  31. Moon,John A.; Putnam,Martin A., Diffraction grating-based encoded micro-particles for multiplexed experiments.
  32. Moon,John A.; Putnam,Martin A., Diffraction grating-based encoded particle.
  33. Gupta, Deepnarayan; Mukhanov, Oleg, Digital radio frequency transceiver system and method.
  34. Ye, Xiong; Chen, Hongmin; Matsui, Yasuhiro; Mahgerefteh, Daniel, Directly modulated laser with isolated modulated gain electrode for improved frequency modulation.
  35. Matsui, Yasuhiro; Zheng, Xueyan, Dispersion compensator for frequency reshaped optical signals.
  36. Kersey, Alan D.; Moon, John A.; Putnam, Martin A., Elongated microparticles having an optically detectable code configured to at least one of reflect or filter light.
  37. Norman, Carl Edward, Encoded carrier and a method of monitoring an encoded carrier.
  38. Kersey, Alan D.; Moon, John A.; Putnam, Martin A., Encoded microparticles and a method for fabricating.
  39. Moon, John A.; Putnam, Martin A., Encoded particle having a grating with variations in the refractive index.
  40. Chee, Mark S.; Barnard, Steven M.; Zhao, Chanfeng, Encoding and decoding of array sensors utilizing nanocrystals.
  41. Chee, Mark S.; Barnard, Steven M.; Zhao, Chanfeng, Encoding and decoding of array sensors utilizing nanocrystals.
  42. Kane,Thomas J.; Keaton,Gregory L.; Morehead,James J., Fiber amplifier system for producing visible light.
  43. Mahgerefteh,Daniel; Walker,Duncan John William; Nuyts,Roeland, Flat dispersion frequency discriminator (FDFD).
  44. Aitken, Bruce G.; Carberry, Joel P.; DeMartino, Steven E.; Hagy, Henry E.; Lamberson, Lisa A.; Miller, II, Richard J.; Morena, Robert; Schroeder, III, Joseph F.; Streltsov, Alexander; Widjaja, Sujanto, Glass package that is hermetically sealed with a frit and method of fabrication.
  45. Aitken, Bruce G.; Carberry, Joel P.; DeMartino, Steven E.; Hagy, Henry E.; Lamberson, Lisa A.; Miller, II, Richard J.; Morena, Robert; Schroeder, III, Joseph F.; Streltsov, Alexander; Widjaja, Sujanto, Glass package that is hermetically sealed with a frit and method of fabrication.
  46. Aitken,Bruce G.; Carberry,Joel P.; DeMartino,Steven E.; Hagy,Henry E.; Lamberson,Lisa A.; Miller, II,Richard J.; Morena,Robert; Schroeder, III,Joseph F.; Streltsov,Alexander; Widjaja,Sujanto, Glass package that is hermetically sealed with a frit and method of fabrication.
  47. Aitken,Bruce G.; Carberry,Joel P.; DeMartino,Steven E.; Hagy,Henry E.; Lamberson,Lisa A.; Miller, II,Richard J.; Morena,Robert; Schroeder, III,Joseph F.; Streltsov,Alexander; Widjaja,Sujanto, Glass package that is hermetically sealed with a frit and method of fabrication.
  48. Hawtof,Daniel W.; Reddy,Kamjula Pattabhirami; Stone, III,John, Hermetically sealed package and method of fabricating of a hermetically sealed package.
  49. Narendran, Nadarajah; Gu, Yimin; Freyssinier, Jean Paul, High efficiency light source using solid-state emitter and down-conversion material.
  50. Kane,Thomas J.; Eyres,Loren A.; Balsley,David R.; Keaton,Gregory L.; Morehead,James J., High repetition rate passively Q-switched laser for blue laser based on interactions in fiber.
  51. Moddel, Garret; Eliasson, Blake J., High speed electron tunneling devices.
  52. Moddel,Garret; Eliasson,Blake J., High speed electron tunneling devices.
  53. Narendran, Nadarajah; Freyssinier, Jean Paul; Gu, Yimin, High-efficient light engines using light emitting diodes.
  54. Narendran, Nadarajah; Gu, Yimin, High-power white LEDs.
  55. Narendran, Nadarajah; Gu, Yimin, High-power white LEDs and manufacturing method thereof.
  56. Narendran, Nadarajah; Gu, Yimin, High-power white LEDs and manufacturing method thereof.
  57. Narendran, Nadarajah; Gu, Yimin, High-power white LEDs and manufacturing method thereof.
  58. Mahgerefteh, Daniel; Tayebati, Parviz, High-speed transmission system comprising a coupled multi-cavity optical discriminator.
  59. Kersey, Alan; Moon, John A.; Putnam, Martin A., Holographically encoded elements for microarray and other tagging labeling applications, and method and apparatus for making and reading the same.
  60. Moon, John A.; Kersey, Alan D.; Putnam, Martin A.; Li, Tuo, Hybrid random bead/chip based microarray.
  61. Moon,John; Kersey,Alan D.; Putnam,Martin A.; Li,Tuo, Hybrid random bead/chip based microarray.
  62. Estes,Michael J.; Moddel,Garret, Interconnected high speed electron tunneling devices.
  63. Narendran, Nadarajah; Gu, Yimin, Lighting source using solid state emitter and phosphor materials.
  64. Narendran, Nadarajah; Gu, Yimin, Lighting source using solid state emitter and phosphor materials.
  65. Narendran, Nadarajah; Gu, Yimin, Lighting source using solid state emitter and phosphor materials.
  66. Kersey,Alan D.; Moon,John A.; Putnam,Martin A., Lithographically fabricated holographic optical identification element.
  67. Moon,John; Putnam,Martin A.; Li,Tuo; Traynor,Joseph, Method and apparatus for aligning microbeads in order to interrogate the same.
  68. Mahgerefteh, Daniel; Tayebati, Parviz, Method and apparatus for compensating for fiber nonlinearity in a transmission system.
  69. Moon, John A.; Putnam, Martin A.; Kersey, Alan; Fournier, David; Pinto, Joseph, Method and apparatus for drug product tracking using encoded optical identification elements.
  70. Heismann, Fred L.; Mahgerefteh, Daniel; Tayebati, Parviz, Method and apparatus for generating signals with increased dispersion tolerance using a directly modulated laser transmitter.
  71. Moon,John A.; Putnam,Martin A.; Kersey,Alan D.; Li,Tuo; Dunphy,James; Didden,F. Kevin, Method and apparatus for labeling using diffraction grating-based encoded optical identification elements.
  72. Moon, John A.; Putnam, Martin A.; Kersey, Alan D.; Szczepanek, Paul, Method and apparatus for labeling using optical identification elements characterized by X-ray diffraction.
  73. Zheng, Xueyan; Matsui, Yasuhiro; Mahgerefteh, Daniel; Tayebati, Parviz, Method and apparatus for transmitting a signal using a chirp managed laser (CML) and an optical spectrum reshaper (OSR) before an optical receiver.
  74. Sailor, Michael J.; Meade, Shawn O., Method for forming optically encoded thin films and particles with grey scale spectra.
  75. Rong-Seng Chang TW; Yu-Chan Chao TW, Method for producing micro-carrier and test method by using said micro-carrier.
  76. Aoki, Kanna; De Vittorio, Massimo; Stomeo, Tiziana; Pisanello, Ferruccio; Massaro, Alessandro; Martiradonna, Luigi; Sabella, Stefania; Rinaldi, Rosaria; Arakawa, Yasuhiko; Cingolani, Roberto; Pompa, Pier Paolo, Method of identifying a target analyte using photonic crystal resonators, and related device.
  77. Chee,Mark S.; Stuelpnagel,John R.; Czarnik,Anthony W., Method of making and decoding of array sensors with microspheres.
  78. Putnam,Martin A.; Moon,John; Szczepanek,Paul S.; Li,Tuo; Rauseo,Anthony; Traynor,Joseph, Method of manufacturing of a diffraction grating-based optical identification element.
  79. Putnam,Martin A.; Moon,John; Szczepanek,Paul S.; Li,Tuo; Rauseo,Anthony; Traynor,Joseph, Method of manufacturing of diffraction grating-based optical identification element.
  80. Chan, Selena; Kwon, Sunghoon; Sundararajan, Narayan, Methods for uniform metal impregnation into a nanoporous material.
  81. Chan, Selena; Kwon, Sunghoon; Sundararajan, Narayan, Methods for uniform metal impregnation into a nanoporous material.
  82. Chan, Selena; Kwon, Sunghoon; Sundararajan, Narayan, Methods for uniform metal impregnation into a nanoporous material.
  83. Chan,Selena; Kwon,Sunghoon; Sundararajan,Narayan, Methods for uniform metal impregnation into a nanoporous material.
  84. Moon, John A.; Kersey, Alan D.; Putnam, Martin A.; Li, Tuo, Methods of identifying an analyte and nucleic acid analysis.
  85. Moon, John A.; Kersey, Alan D.; Putnam, Martin A.; Li, Tuo, Methods of identifying analytes and using encoded particles.
  86. Wu, Lei; Wang, Xiaobo; Tao, Guoliang; Xu, Junquan; Cheng, Jing; Huang, Mingxiang; Sun, Baoquan; Shao, Wei; Liu, Litian; Chen, Depu; Rothwarf, David M.; Yang, Weiping, Microdevice containing photorecognizable coding patterns and methods of using and producing the same.
  87. Wu, Lei; Wang, Xiaobo; Tao, Guoliang; Xu, Junquan; Cheng, Jing; Huang, Mingxiang; Sun, Baoquan; Shao, Wei; Liu, Litian; Chen, Depu; Rothwarf, David M.; Yang, Weiping, Microdevice containing photorecognizable coding patterns and methods of using and producing the same.
  88. Huang,Mingxian; Wu,Lei; Wang,Xiaobo; Xu,Junquan; Tao,Guo Liang; Rothwarf,David M., Microdevices having a preferential axis of magnetization and uses thereof.
  89. Huang,Mingxian; Wu,Lei; Wang,Xiaobo; Xu,Junquan; Tao,Guo Liang; Rothwarf,David M., Microdevices having a preferential axis of magnetization and uses thereof.
  90. Wu, Lei; Wang, Xiaobo; Tao, Guoliang; Xu, Junquan; Cheng, Jing; Huang, Mingxian; Sun, Baoquan; Shao, Wei; Liu, Litian; Chen, Depu; Rothwarf, David M.; Yang, Weiping, Microdevices having a preferential axis of magnetization and uses thereof.
  91. Chan, Selena; Kwon, Sunghoon; Sundararajan, Narayan, Microfluidic system incorporating a metal impregnated nanoporous material in a microfluidic pathway thereof.
  92. Moon, John A.; Bowen, M. Shane; Smith, Ryan C.; Perbost, Michel; Lebl, Michal; Modiano, Steven H., Microvessels, microparticles, and methods of manufacturing and using the same.
  93. Moon, John A.; Bowen, M. Shane; Smith, Ryan C.; Perbost, Michel; Lebl, Michal; Modiano, Steven H., Microvessels, microparticles, and methods of manufacturing and using the same.
  94. McCallion,Kevin; Tayebati,Parviz, Multi-ring resonator implementation of optical spectrum reshaper for chirp managed laser technology.
  95. Trezza,John A.; Sundaram,Mani; Williams,Richard J., Multi-wavelength optical communication system.
  96. Chee, Mark S.; Stuelpnagel, John R.; Czarnik, Anthony W., Multiplex decoding of array sensors with microspheres.
  97. Chee, Mark S.; Stuelpnagel, John R.; Czarnik, Anthony W., Multiplex decoding of array sensors with microspheres.
  98. Chee,Mark S.; Stuelpnagel,John R.; Czarnik,Anthony W., Multiplex decoding of array sensors with microspheres.
  99. Chee,Mark S.; Stuelpnagel,John R.; Czarnik,Anthony W., Multiplex decoding of array sensors with microspheres.
  100. Oliphant, Arnold; Stuelpnagel, John R.; Chee, Mark S.; Butler, Scott L.; Fan, Jian Bing; Shen, Min Jui Richard, Multiplex nucleic acid reactions.
  101. Oliphant, Arnold; Stuelpnagel, John R.; Chee, Mark S.; Butler, Scott L.; Fan, Jian-Bing; Shen, Min-Jui Richard, Multiplex nucleic acid reactions.
  102. Oliphant, Arnold; Stuelpnagel, John R.; Chee, Mark S.; Butler, Scott L.; Fan, Jian-Bing; Shen, Min-Jui Richard, Multiplex nucleic acid reactions.
  103. Oliphant, Arnold; Stuelpnagel, John R.; Chee, Mark S.; Butler, Scott L.; Fan, Jian-Bing; Shen, Min-Jui Richard, Multiplex nucleic acid reactions.
  104. Shen, Min-Jui Richard; Oliphant, Arnold; Butler, Scott L.; Stuelpnagel, John R.; Chee, Mark S.; Kuhn, Kenneth M.; Fan, Jian-Bing, Multiplex nucleic acid reactions.
  105. Fan, Jian Bing, Multiplexed methylation detection methods.
  106. Fan, Jian-Bing, Multiplexed methylation detection methods.
  107. Eisler, Hans J.; Sundar, Vikram C.; Walsh, Michael E.; Klimov, Victor I.; Bawendi, Moungi G.; Smith, Henry I., Nanocrystal structures.
  108. Eisler,Hans J.; Sundar,Vikram C.; Walsh,Michael E.; Klimov,Victor I.; Bawendi,Moungi G.; Smith,Henry I., Nanocrystal structures.
  109. Naughton, Michael J.; Kempa, Krzysztof J.; Ren, Zhifeng, Nanoscale optical microscope.
  110. Fan, Jian-Bing; Fu, Xiang-Dong, Nucleic acid detection methods using universal priming.
  111. Fan,Jian Bing; Fu,Xiang Dong, Nucleic acid detection methods using universal priming.
  112. Krasnov,Alexey N.; Wood,Richard P.; Johnson,David J.; Hofstra,Peter G., OLED display with contrast enhancing interference members.
  113. Michael D. Rostoker ; Kumaraguru Muthukumaraswamy, On-chip antenna, and systems utilizing same.
  114. Matsui, Yasuhiro; McCallion, Kevin; Mahgerefteh, Daniel; Zheng, Xueyan; Tayebati, Parviz, Optical FM source based on intra-cavity phase and amplitude modulation in lasers.
  115. Matsui, Yasuhiro; Tayebati, Parviz; Mahgerefteh, Daniel, Optical FM source based on intra-cavity phase and amplitude modulation in lasers.
  116. Crowley Robert Joseph, Optical antenna array for harmonic generation, mixing and signal amplification.
  117. Crowley, Robert Joseph, Optical antenna array for harmonic generation, mixing and signal amplification.
  118. McCallion, Kevin J., Optical beam steering for tunable laser applications.
  119. Tayebati, Parviz; McCallion, Kevin; Walker, Duncan, Optical beam steering for tunable laser applications.
  120. Putnam, Martin A.; Moon, John A., Optical identification element having a non-waveguide substrate.
  121. Putnam,Martin A.; Moon,John A., Optical identification element having non-waveguide photosensitive substrate with diffraction grating therein.
  122. Moon,John A.; Fournier,David R.; Putnam,Martin A.; Kersey,Alan D.; Li,Tuo, Optical reader for diffraction grating-based encoded optical identification elements.
  123. Putnam, Martin A.; Lemoine, Richard L., Optical reader for reading encoded microparticles.
  124. Moon, John A.; Fournier, David R.; Putnam, Martin A.; Kersey, Alan D; Li, Tuo, Optical reader system for substrates having an optically readable code.
  125. Moon, John A.; Fournier, David R., Optical scanner with improved scan time.
  126. Moon, John A.; Putnam, Martin A., Optical system and method for reading encoded microbeads.
  127. Moon, John A.; Putnam, Martin A., Optical system and method for reading encoded microbeads.
  128. Matsui, Yasuhiro; Mahgerefteh, Daniel; Zheng, Xueyan; McCallion, Kevin; Tayebati, Parviz, Optical transmission using semiconductor optical amplifier (SOA).
  129. Kropp, J?rg-Reinhardt, Optical transmitter and method for generating a digital optical signal sequence.
  130. McCallion, Kevin John; Matsui, Yasuhiro; Mahgerefteh, Daniel, Optical transmitter having a widely tunable directly modulated laser and periodic optical spectrum reshaping element.
  131. Sailor, Michael J.; Schmedake, Thomas; Cunin, Frederique; Link, Jamie, Optically encoded particles.
  132. Sailor, Michael J.; Meade, Shawn O., Optically encoded particles through porosity variation.
  133. Chan, Kin Long; Li, Gui Xin; Lee, Ka Suen; Cheah, Kok Wai, Organic laser for measurement.
  134. Narendran, Nadarajah; Gu, Yimin, Package design for producing white light with short-wavelength LEDS and down-conversion materials.
  135. Fan, Jian-Bing; Chee, Mark S, Parallel genotyping of multiple patient samples.
  136. Fan,Jian Bing; Chee,Mark S., Parallel genotyping of multiple patient samples.
  137. Mahgerefteh, Daniel; Chen, Hongmin; Huebner, Bernd, Passive wave division multiplexed transmitter having a directly modulated laser array.
  138. Mahgerefteh, Daniel; Zhang, Xueyan; Tayebati, Parviz, Phase correlated quadrature amplitude modulation.
  139. Hongyong Zhang JP; Masayuki Sakakura JP, Photoelectric converter and fabrication method thereof.
  140. Zhang, Hongyong; Sakakura, Masayuki, Photoelectric converter and fabrication method thereof.
  141. Mahgerefteh, Daniel; Tayebati, Parviz, Power source for a dispersion compensation fiber optic system.
  142. Mahgerefteh,Daniel; Tayebati,Parviz, Power source for a dispersion compensation fiber optic system.
  143. Hall, Dennis G., Preparation and uses of conjugated solid supports for boronic acids.
  144. Matsui, Yasuhiro; Tayebati, Parvis; McCallion, Kevin, Reach extension by using external Bragg grating for spectral filtering.
  145. Kersey, Alan; Moon, John A., Scanner having spatial light modulator.
  146. Michael Bode ; Andrew Cahill ; Manfred Schierjott DE, Semiconductor system for registering spectra, color signals, color signals, color images and the like.
  147. Zhou, Jianying; Zheng, Xueyan; McCallion, Kevin J.; Mahgerefteh, Daniel; Chen, Hongmin; Sun, Guoxi; Tayebati, Parviz, Slow chirp compensation for enhanced signal bandwidth and transmission performances in directly modulated lasers.
  148. Stokes, Edward Brittain; McNulty, Thomas Francis; Doxsee, Daniel Darcy; Srivastava, Alok Mani; Levinson, Lionel Monty; Duggal, Anil Raj, Solid state illumination system containing a light emitting diode, a light scattering material and a luminescent material.
  149. McCallion, Kevin; Mahgerefteh, Daniel; Deutsch, Michael; Tayebati, Parviz, Spectral response modification via spatial filtering with optical fiber.
  150. Estes,Michael J.; Moddel,Garret, Surface plasmon devices.
  151. Estes,Michael J.; Moddel,Garret, Surface plasmon devices.
  152. McCallion, Kevin; Deutsch, Michael; Tayebati, Parviz; Azemati, Saeid, Temperature stabilizing packaging for optoelectronic components in a transmitter module.
  153. Zheng, Xueyan; Zhou, Jianying; Bu, Vincent; Mahgerefteh, Daniel, Thermal chirp compensation in a chirp managed laser.
  154. Johnson,Bart; Mahgerefteh,Daniel; McCallion,Kevin; Fan,Zhencan (Frank); Piede,David; Tayebati,Parviz, Thermal chirp compensation systems for a chirp managed directly modulated laser (CML��) data link.
  155. Chee, Mark S.; Dickinson, Todd A.; Gunderson, Kevin; O'Neil, Don, Use of microfluidic systems in the detection of target analytes using microsphere arrays.
  156. Chee, Mark S.; Dickinson, Todd A.; Gunderson, Kevin; O'Neil, Don, Use of microfluidic systems in the detection of target analytes using microsphere arrays.
  157. Chee, Mark S.; Dickinson, Todd A.; Gunderson, Kevin; O'Neil, Don; Stuelpnagel, John R., Use of microfluidic systems in the detection of target analytes using microsphere arrays.
  158. Mahgerefteh,Daniel; Zheng,Xueyan; Matsui,Yasuhiro; Tayebati,Parviz, Versatile compact transmitter for generation of advanced modulation formats.
  159. Strzelecki, Eva M., Vertical cavity master oscillator power amplifier.
  160. Matsui, Yasuhiro; McCallion, Kevin, WDM PON based on DML.
  161. Mahgerefteh, Daniel; Tayebati, Parviz, Wavelength division multiplexing source using multifunctional filters.
  162. McCallion,Kevin; Matsui,Yasuhiro; Zhou,Jianying; Deutsch,Michael; Tayebati,Parviz; Mahgerefteh,Daniel, Widely tunable, dispersion tolerant transmitter.
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