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Low coherence interferometry for detecting and characterizing plaques 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01B-009/02
  • G01B-011/02
출원번호 US-0039987 (2005-01-21)
발명자 / 주소
  • Alphonse,Gerard A.
출원인 / 주소
  • Medeikon Corporation
대리인 / 주소
    Cantor Colburn LLP
인용정보 피인용 횟수 : 170  인용 특허 : 109

초록

초록이 없습니다.

대표청구항

대표청구항이 없습니다.

이 특허에 인용된 특허 (109)

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  4. Motafakker-Fard, Ali; Vacas Jacques, Paulino; Tearney, Guillermo; Rosenberg, Mireille, Apparatus and method for providing diffuse spectroscopy co-registered with optical frequency domain imaging.
  5. 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.
  6. 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.
  7. 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.
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  59. Montgomery, Robert M.; Carmean, Randy L.; Middleton, IV, Charles Franklin; Tonti, James G., Interferometric material sensing apparatus including adjustable coupling and associated methods.
  60. Montgomery, Robert M.; Carmean, Randy L.; Middleton, IV, Charles Franklin; Tonti, James G., Interferometric material sensing apparatus including adjustable coupling and associated methods.
  61. Montgomery, Robert M.; Carmean, Randy L.; Middleton, IV, Charles Franklin; Tonti, James G., Interferometric material sensing apparatus including adjustable reference arm and associated methods.
  62. Montgomery, Robert M.; Carmean, Randy L.; Middleton, IV, Charles Franklin; Tonti, James G., Interferometric sensing apparatus including adjustable coupling and associated methods.
  63. Montgomery, Robert M.; Carmean, Randy L.; Middleton, IV, Charles Franklin; Tonti, James G., Interferometric sensing apparatus including adjustable coupling and associated methods.
  64. Montgomery, Robert M.; Carmean, Randy L.; Middleton, IV, Charles Franklin; Tonti, James G., Interferometric sensing apparatus including adjustable reference arm and associated methods.
  65. Alphonse,Gerard A., Low coherence interferometry utilizing magnitude.
  66. Alphonse,Gerard A., Low coherence interferometry utilizing phase.
  67. Jennings, Dean; Thomas, Timothy N.; Moffatt, Stephen; Li, Jiping; Adams, Bruce E.; Howells, Samuel C., Method and apparatus for decorrelation of spatially and temporally coherent light.
  68. Jennings, Dean; Thomas, Timothy N.; Moffatt, Stephen; Li, Jiping; Adams, Bruce E.; Howells, Samuel C., Method and apparatus for decorrelation of spatially and temporally coherent light.
  69. Tearney, Guillermo J.; Bouma, Brett E., Method and apparatus for determination of atherosclerotic plaque type by measurement of tissue optical properties.
  70. Tearney, Guillermo J.; Bouma, Brett Eugene, Method and apparatus for determination of atherosclerotic plaque type by measurement of tissue optical properties.
  71. Tearney, Guillermo J.; Shishkov, Milen; Bouma, Brett E., Method and apparatus for imaging of vessel segments.
  72. Tearney, Guillermo J.; Shishkov, Milen; Bouma, Brett Eugene, Method and apparatus for imaging of vessel segments.
  73. Tearney, Guillermo J.; Shishkov, Milen; Bouma, Brett Eugene, Method and apparatus for imaging of vessel segments.
  74. Kang, Dongkyun; Kim, Minkyu; Tearney, Guillermo J., Method and apparatus for microscopic imaging.
  75. Tearney, Guillermo J.; Bouma, Brett E.; Yelin, Dvir, Method and apparatus for optical imaging via spectral encoding.
  76. Tearney, Guillermo J.; Bouma, Brett E.; Yelin, Dvir, Method and apparatus for optical imaging via spectral encoding.
  77. Tearney, Guillermo J.; Yelin, Dvir; Bouma, Brett E., Method and apparatus for optical imaging via spectral encoding.
  78. Tearney, Guillermo J.; Yelin, Dvir; Bouma, Brett E., Method and apparatus for optical imaging via spectral encoding.
  79. Tearney, Guillermo J.; Yelin, Dvir; Bouma, Brett Eugene, Method and apparatus for optical imaging via spectral encoding.
  80. Tearney, Guillermo J.; Yelin, Dvir; Bouma, Brett Eugene, Method and apparatus for optical imaging via spectral encoding.
  81. Tearney, Guillermo J.; Yelin, Dvir; Bourna, Brett Eugene, Method and apparatus for optical imaging via spectral encoding.
  82. Yun, Seok-Hyun; Bouma, Brett E.; Tearney, Guillermo J.; De Boer, Johannes Fitzgerald, Method and apparatus for performing optical imaging using frequency-domain interferometry.
  83. Yun, Seok-Hyun; Bouma, Brett E.; Tearney, Guillermo J.; De Boer, Johannes Fitzgerald, Method and apparatus for performing optical imaging using frequency-domain interferometry.
  84. Yun, Seok-Hyun; Bouma, Brett Eugene; Tearney, Guillermo J.; De Boer, Johannes Fitzgerald, Method and apparatus for performing optical imaging using frequency-domain interferometry.
  85. Yun, Seok-Hyun; Bouma, Brett Eugene; Tearney, Guillermo J.; De Boer, Johannes Fitzgerald, Method and apparatus for performing optical imaging using frequency-domain interferometry.
  86. Yun, Seok-Hyun; Bouma, Brett Eugene; Tearney, Guillermo J.; De Boer, Johannes Fitzgerald, Method and apparatus for performing optical imaging using frequency-domain interferometry.
  87. Yun, Seok-Hyun; Bouma, Brett Eugene; Tearney, Guillermo J.; De Boer, Johannes Fitzgerald, Method and apparatus for performing optical imaging using frequency-domain interferometry.
  88. Yun, Seok-Hyun; Bouma, Brett Eugene; Tearney, Guillermo J.; de Boer, Johannes Fitzgerald, Method and apparatus for performing optical imaging using frequency-domain interferometry.
  89. Tearney, Guillermo J.; Shishkov, Milen; Bouma, Brett E.; Vakoc, Benjamin J.; Nishioka, Norman S., Methods and systems for optical imaging or epithelial luminal organs by beam scanning thereof.
  90. Tearney, Guillermo J.; Shishkov, Milen; Bouma, Brett Eugene; Vakoc, Benjamin J.; Nishioka, Norman S., Methods and systems for optical imaging or epithelial luminal organs by beam scanning thereof.
  91. Desjardins, Adrien; Vakoc, Benjamin J.; Tearney, Guillermo J.; Bouma, Brett Eugene, Methods and systems for performing angle-resolved Fourier-domain optical coherence tomography.
  92. Desjardins, Adrien E.; Vakoc, Benjamin J.; Tearney, Guillermo J.; Bouma, Brett Eugene, Methods and systems for performing angle-resolved fourier-domain optical coherence tomography.
  93. Tearney, Guillermo J.; Bouma, Brett E., Methods for tissue analysis.
  94. Bouma, Brett Eugene; Motaghiannezam, Reza; Tearney, Guillermo J., Methods, arrangements and apparatus for utilizing a wavelength-swept laser using angular scanning and dispersion procedures.
  95. Yun, Seok-Hyun; Scarcelli, Giuliano, Methods, arrangements and systems for obtaining information associated with a sample using optical microscopy.
  96. Yun, Seok-Hyun, Methods, arrangements and systems for obtaining information associated with an anatomical sample using optical microscopy.
  97. Yun, Seok-Hyun; De Boer, Johannes F.; Tearney, Guillermo J.; Bouma, Brett Eugene, Methods, arrangements and systems for polarization-sensitive optical frequency domain imaging of a sample.
  98. Rowe, Steven M.; Tearney, Guillermo J.; Bouma, Brett Eugene; Liu, Linbo; Sorscher, Eric J.; Chu, Kengyeh Ken; Diephuis, Bradford James; Wilsterman, Eric James; Dierksen, Gregory Andrew, Methods, systems, arrangements and computer-accessible medium for providing micro-optical coherence tomography procedures.
  99. Nadkarni, Seemantini K.; Tearney, Guillermo J., Non-contact optical system, computer-accessible medium and method for measurement at least one mechanical property of tissue using coherent speckle technique(s).
  100. Kim, Jeehyun; Jung, Hee-Young; Lee, Changho; Lee, Seung-Yeol, Non-invasive method and apparatus for screening high-quality seeds.
  101. Newhauser, Richard R.; Askew, Mark W., Occlusion-crossing devices.
  102. Spencer, Maegan K.; Simpson, John B.; Davies, Stephen C., Occlusion-crossing devices, atherectomy devices, and imaging.
  103. Simpson, John B.; Patel, Himanshu N.; Zung, Michael; McNall, Charles W.; Gupta, Priyanshu; Spencer, Maegan K.; White, Christopher B.; Jackson, Dennis W.; Black, John F., Occlusion-crossing devices, imaging, and atherectomy devices.
  104. Simpson, John B.; Patel, Himanshu N.; Zung, Michael; McNall, Charles W.; Gupta, Priyanshu; Spencer, Maegan K.; White, Christopher B.; Jackson, Dennis W.; Black, John F., Occlusion-crossing devices, imaging, and atherectomy devices.
  105. Vardi, Gil M.; Spivak, Victor, Opitcal-acoustic imaging device.
  106. Black, John F.; Spencer, Maegan K.; Zung, Michael; McNall, Charles W.; Lumabas, Evangeline; Rosenthal, Michael H.; Simpson, John B., Optical coherence tomography for biological imaging.
  107. Kankaria, Manish, Optical coherence tomography with graded index fiber for biological imaging.
  108. Eberle, Michael J.; Bates, Kenneth N.; Morey, William W., Optical imaging probe.
  109. Eberle, Michael J.; Bates, Kenneth N.; Morey, William W., Optical imaging probe.
  110. Eberle, Michael J.; Bates, Kenneth N.; Morey, William W., Optical imaging probe.
  111. Eberle, Michael J., Optical imaging probe connector.
  112. Eberle, Michael J.; Bates, Kenneth N.; Morey, William W., Optical imaging probe connector.
  113. Eberle, Michael J.; Bates, Kenneth N.; Morey, William W., Optical imaging probe connector.
  114. Eberle, Michael J., Optical imaging probe connector method by deforming a cross section and cutting at an oblique angle.
  115. Eberle, Michael J., Optical imaging probe having a handle with a cleaning mechanism.
  116. Eberle, Michael J.; Tasker, Diana Margaret; Rourke, Howard Neil, Optical ultrasound receiver.
  117. Eberle, Michael J.; Tasker, Diana Margaret; Rourke, Howard Neil, Optical ultrasound receiver.
  118. Eberle, Michael J.; Tasker, Diana Margaret; Rourke, Howard Neil, Optical ultrasound receiver.
  119. Vardi, Gil M.; Spivak, Victor, Optical-acoustic imaging device.
  120. Bouma, Brett Eugene; Yun, Seok-Hyun (Andy); Oh, Wang-Yuhl (William); De Boer, Johannes F.; Tearney, Guillermo J., Process and apparatus for a wavelength tuning source.
  121. Bouma, Brett Eugene; Yun, Seok-Hyun (Andy); Oh, Wang-Yuhl (William); De Boer, Johannes F.; Tearney, Guillermo J., Process and apparatus for a wavelength tuning source.
  122. Bouma, Brett Eugene; Yun, Seok-Hyun (Andy); Oh, Wang-Yuhl (William); De Boer, Johannes F.; Tearney, Guillermo J., Process and apparatus for a wavelength tuning source.
  123. Bouma, Brett; Yun, Seok Hyun (Andy); Oh, Wang Yuhl (William); deBoer, Johannes; Tearney, Guillermo, Process and apparatus for a wavelength tuning source.
  124. Yun, Seok-Hyun; de Boer, Johannes F., Process, arrangements and systems for providing frequency domain imaging of a sample.
  125. Yun, Seok-Hyun; de Boer, Johannes F., Process, arrangements and systems for providing frequency domain imaging of a sample.
  126. Cense, Abraham J.; Yun, Seok-Hyun; de Boer, Johannes F., Process, system and software arrangement for a chromatic dispersion compensation using reflective layers in optical coherence tomography (OCT) imaging.
  127. de Boer, Johannes Fitzgerald; Park, Boris Hyle, Process, system and software arrangement for determining at least one location in a sample using an optical coherence tomography.
  128. Bouma, Brett Eugene; Chan, Raymond C.; Tearney, Guillermo J., Process, system and software arrangement for measuring a mechanical strain and elastic properties of a sample.
  129. Mujat, Mircea; Chan, Raymond C.; de Boer, Johannes F., Processes, arrangements and systems for providing a fiber layer thickness map based on optical coherence tomography images.
  130. Alphonse, Gerard A.; Carlin, Donald B.; Rappaport, Fred, Single trace multi-channel low coherence interferometric sensor.
  131. Tearney, Guillermo J.; Iftimia, Nicusor; Bouma, Brett E., Speckle reduction in optical coherence tomography by path length encoded angular compounding.
  132. Tearney, Guillermo J.; Iftimia, Nicusor; Bouma, Brett E., Speckle reduction in optical coherence tomography by path length encoded angular compounding.
  133. Tearney, Guillermo J.; Iftimia, Nicusor; Bouma, Brett Eugene, Speckle reduction in optical coherence tomography by path length encoded angular compounding.
  134. Tearney, Guillermo J.; Iftimia, Nicusor; Bouma, Brett Eugene, Speckle reduction in optical coherence tomography by path length encoded angular compounding.
  135. Tearney, Guillermo J.; Bouma, Brett Eugene; Shishkov, Milen Stefanov; Rosen, Jonathan Jay, Spectrally encoded miniature endoscopic imaging probe.
  136. Shishkov, Milen; Tearney, Guillermo J.; Bouma, Brett Eugene; Yelin, Dvir; Iftimia, Nicusor, Spectrally-encoded endoscopy techniques and methods.
  137. Shishkov, Milen; Tearney, Guillermo J.; Bouma, Brett Eugene; Yelin, Dvir; Iftimia, Nicusor, Spectrally-encoded endoscopy techniques, apparatus and methods.
  138. Shishkov, Milen; Tearney, Guillermo J.; Bouma, Brett Eugene; Yelin, Dvir; Iftimia, Nicusor, Spectrally-encoded endoscopy techniques, apparatus and methods.
  139. de Boer, Johannes F.; De Groot, Mattijs, System and method for efficient detection of the phase and amplitude of a periodic modulation associated with self-interfering fluorescence.
  140. Berkeley, Andrew; Rempel, David; Silver, Jason, System and method for generating a wide-field OCT image of a portion of a sample.
  141. Caplan, Jay D.; Tan, Huwei, System and method for intravascular structural analysis compensation of chemical analysis modality.
  142. Shishkov, Milen; Bouma, Brett Eugene; Tearney, Guillermo J., System and method for optical coherence imaging.
  143. Tearney, Guillermo J.; Shishkov, Milen; Bouma, Brett E., System and method for optical coherence imaging.
  144. Yun, Seok-Hyun; Bouma, Brett Eugene; Tearney, Guillermo J.; De Boer, Johannes F., System and method for optical coherence imaging.
  145. Evans, Conor L.; De Boer, Johannes F.; De Groot, Mattijs, System and method for self-interference fluorescence microscopy, and computer-accessible medium associated therewith.
  146. Vakoc, Benjamin; Siddiqui, Meena; Tozburun, Serhat, System, apparatus and method for utilizing optical dispersion for fourier-domain optical coherence tomography.
  147. Vakoc, Benjamin; Siddiqui, Meena; Tozburun, Serhat, System, apparatus and method for utilizing optical dispersion for fourier-domain optical coherence tomography.
  148. de Boer, Johannes F.; Vermeer, Koenraad, System, method and computer accessible medium for determining eye motion by imaging retina and providing feedback for acquisition of signals from the retina.
  149. Tearney, Guillermo J.; Bouma, Brett E.; Yuan, Jing, System, method and computer-accessible medium for providing wide-field superresolution microscopy.
  150. Colice, Christopher Max; Bouma, Brett E.; Tearney, Guillermo J.; Ha, Jinyong; Shishkov, Milen, System, method and computer-accessible medium for tracking vessel motion during three-dimensional coronary artery microscopy.
  151. Colice, Christopher Max; Bouma, Brett Eugene; Tearney, Guillermo J.; Ha, Jinyong; Shishkov, Milen, System, method and computer-accessible medium for tracking vessel motion during three-dimensional coronary artery microscopy.
  152. Vakoc, Benjamin J.; Oh, Wang Y.; Tearney, Guillermo J.; Bouma, Brett E., Systems and methods for extending imaging depth range of optical coherence tomography through optical sub-sampling.
  153. Yelin, Dvir; Yun, Seok-Hyun; Bouma, Brett Eugene; Tearney, Guillermo J, Systems and methods for generating data based on one or more spectrally-encoded endoscopy techniques.
  154. Bates, Kenneth N.; Vardi, Gil M., Systems and methods for minimally-invasive optical-acoustic imaging.
  155. Bates, Kenneth N.; Vardi, Gil M., Systems and methods for minimally-invasive optical-acoustic imaging.
  156. Bates, Kenneth N.; Vardi, Gil M., Systems and methods for minimally-invasive optical-acoustic imaging.
  157. Bates, Kenneth N.; Vardi, Gil M., Systems and methods for minimally-invasive optical-acoustic imaging.
  158. Bates, Kenneth N.; Vardi, Gil M., Systems and methods for minimally-invasive optical-acoustic imaging.
  159. Bates, Kenneth N.; Vardi, Gil M., Systems and methods for minimally-invasive optical-acoustic imaging.
  160. Vakoc, Benjamin J.; Tearney, Guillermo J.; Bouma, Brett E., Systems and methods for providing beam scan patterns for high speed doppler optical frequency domain imaging.
  161. Tearney, Guillermo J.; Bouma, Brett Eugene; Yoo, Hongki; Shishkov, Milen; Gardecki, Joseph; Shubochkin, Roman; Morse, Theodore; Jaffer, Farouc Amin, Systems, devices, methods, apparatus and computer-accessible media for providing optical imaging of structures and compositions.
  162. Tearney, Guillermo J.; Bouma, Brett E.; Gardecki, Joseph A.; Liu, Linbo, Systems, methods and computer-accessible medium which provide microscopic images of at least one anatomical structure at a particular resolution.
  163. Tearney, Guillermo J.; Bouma, Brett E.; Gardecki, Joseph A.; Liu, Linbo, Systems, methods and computer-accessible medium which provide microscopic images of at least one anatomical structure at a particular resolution.
  164. Tearney, Guillermo J.; Bouma, Brett E.; Gardecki, Joseph A.; Liu, Linbo; McLeod, Robert R., Systems, methods and computer-accessible medium which provide microscopic images of at least one anatomical structure at a particular resolution.
  165. Tearney, Guillermo J.; Bouma, Brett E.; Gardecki, Joseph A.; Liu, Linbo; Mcleod, Robert R., Systems, methods and computer-accessible medium which provide microscopic images of at least one anatomical structure at a particular resolution.
  166. Tearney, Guillermo J.; Bouma, Brett Eugene; Gardecki, Joseph A.; Liu, Linbo, Systems, methods and computer-accessible medium which provide microscopic images of at least one anatomical structure at a particular resolution.
  167. Vakoc, Benjamin J.; Zhang, Ziyi, Systems, methods, apparatus and computer-accessible-medium for providing polarization-mode dispersion compensation in optical coherence tomography.
  168. Tearney, Guillermo J.; Bouma, Brett Eugene; Evans, John A., Systems, processes and software arrangements for evaluating information associated with an anatomical structure by an optical coherence ranging technique.
  169. Tearney, Guillermo J.; Bouma, Brett Eugene; Evans, John A., Systems, processes and software arrangements for evaluating information associated with an anatomical structure by an optical coherence ranging technique.
  170. Koshimizu, Chishio; Matsudo, Tatsuo, Temperature measuring method, substrate processing system and component to be provided in substrate processing apparatus of the substrate processing system.
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