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Journal Article
Journal of Biomedical Optics, ISSN 1083-3668, 06/2007, Volume 12, Issue 3, pp. 034015 - 0340111
Large phase II trials of fluorescence and reflectance spectroscopy using a fiber optic probe in the screening and diagnostic settings for detecting cervical... 
fiber optic probes | fluorescence spectroscopy | fluorescence and reflectance standards | device variability | reflectance spectroscopy | Fluorescence spectroscopy | Reflectance spectroscopy | Fluorescence and reflectance standards | Device variability | Fiber optic probes | CELLS | COLLAGEN | WAVELENGTHS | TISSUE | BIOCHEMICAL RESEARCH METHODS | CANCER | AUTOFLUORESCENCE | IN-VIVO DIAGNOSIS | SPECTROSCOPY | OPTICS | SPECTRA | PRECANCER | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Mass Screening - instrumentation | United States - epidemiology | Humans | Uterine Cervical Neoplasms - epidemiology | Mass Screening - statistics & numerical data | Reference Values | Spectrometry, Fluorescence - statistics & numerical data | Quality Assurance, Health Care - methods | Sensitivity and Specificity | Diagnosis, Computer-Assisted - methods | Clinical Trials, Phase II as Topic - statistics & numerical data | Diagnosis, Computer-Assisted - statistics & numerical data | Female | Spectrometry, Fluorescence - standards | Clinical Trials, Phase II as Topic - standards | Diagnosis, Computer-Assisted - instrumentation | Diagnosis, Computer-Assisted - standards | Reproducibility of Results | Uterine Cervical Neoplasms - diagnosis | Fiber Optic Technology - instrumentation | Mass Screening - standards | Fiber Optic Technology - statistics & numerical data | Spectrometry, Fluorescence - instrumentation | Optical Fibers | Quality Assurance, Health Care - standards | Equipment Failure Analysis | Index Medicus | Optical fibers | Reflectivity | Fluorescence | Diagnostic systems | Mathematical models | Devices | Patients | Reflectance
Journal Article
Gynecologic Oncology, ISSN 0090-8258, 2007, Volume 107, Issue 1, pp. S248 - S255
Abstract Objective This review evaluates the diagnostic efficacy of fluorescence spectroscopy, reflectance spectroscopy, and their combination that use both... 
Hematology, Oncology and Palliative Medicine | Obstetrics and Gynecology | Fluorescence spectroscopy | Reflectance spectroscopy | Combined fluorescence and reflectance spectroscopy | In vivo cervical diagnosis | Optical spectroscopy | Point probe spectroscopy | Cervical intraepithelial neoplasia (CIN) | Real-time diagnosis | High-grade SIL (HG-SIL) | Multispectral spectroscopy or imaging, sensitivity, and specificity of cervical diagnosis | Sqaumous intraepithelial lesion (SIL) | OPTICAL-DETECTION | SQUAMOUS INTRAEPITHELIAL LESIONS | COLLAGEN | CANCER | OBSTETRICS & GYNECOLOGY | point probe spectroscopy | UTERINE CERVIX | sqaumous intraepithelial lesion (SIL) | cervical intraepithelial neoplasia (CIN) | and specificity of cervical diagnosis | PRECANCER | reflectance spectroscopy | high-grade SIL (HG-SIL) | CIN | real-time diagnosis | fluorescence spectroscopy | EXCITATION WAVELENGTHS | in vivo cervical diagnosis | ONCOLOGY | multispectral spectroscopy or imaging | optical spectroscopy | sensitivity | combined fluorescence and reflectance spectroscopy | SPECTRA | PROGRAM | Spectrometry, Fluorescence - methods | Spectrometry, Fluorescence - instrumentation | Uterine Cervical Neoplasms - diagnosis | Humans | Cervical Intraepithelial Neoplasia - diagnosis | Image Processing, Computer-Assisted - instrumentation | Female | Optics and Photonics - instrumentation | Image Processing, Computer-Assisted - methods | Fluorescence | Spectrum analysis | Index Medicus
Journal Article
Gynecologic Oncology, ISSN 0090-8258, 2007, Volume 107, Issue 1, pp. S138 - S146
Journal Article
Gynecologic Oncology, ISSN 0090-8258, 2007, Volume 107, Issue 1, pp. S270 - S280
Abstract Objective In this review, we focus on the pilot, Phase I, II, and III clinical trials of fluorescence spectroscopy, reflectance spectroscopy, and... 
Hematology, Oncology and Palliative Medicine | Obstetrics and Gynecology | Fluorescence spectroscopy | Reflectance spectroscopy | Combined fluorescence and reflectance spectroscopy | In vivo cervical diagnosis | Squamous intraepithelial lesion (SIL) | High-grade SIL (HGSIL) | Multi-spectral device | Point probe device | Sensitivity and specificity of cervical diagnosis | Optical spectroscopy | Multi-spectral imaging | Cervical intraepithelial neoplasia (CIN) | Real-time diagnosis | SYSTEM | OPTICAL-DETECTION | SQUAMOUS INTRAEPITHELIAL LESIONS | high-grade SIL (HGSIL) | CANCER | point probe device | OBSTETRICS & GYNECOLOGY | UTERINE CERVIX | cervical intraepithelial neoplasia (CIN) | sensitivity and specificity of cervical diagnosis | PRECANCER | reflectance spectroscopy | CIN | real-time diagnosis | fluorescence spectroscopy | multi-spectral device | multi-spectral imaging | EXCITATION WAVELENGTHS | in vivo cervical diagnosis | ONCOLOGY | squamous intraepithelial lesion (SIL) | optical spectroscopy | combined fluorescence and reflectance spectroscopy | SPECTRA | PROGRAM | Spectrometry, Fluorescence - methods | Uterine Cervical Neoplasms - diagnosis | Humans | Middle Aged | Adolescent | Aged, 80 and over | Cervical Intraepithelial Neoplasia - diagnosis | Adult | Female | Aged | Clinical Trials as Topic - methods | Optics and Photonics | Fluorescence | Clinical trials | Spectrum analysis | Index Medicus
Journal Article
by Dale, Ryan and Grüning, Björn and Sjödin, Andreas and Rowe, Jillian and Chapman, Brad A and Tomkins-Tinch, Christopher H and Valieris, Renan and Batut, Bérénice and Caprez, Adam and Cokelaer, Thomas and Yusuf, Dilmurat and Beauchamp, Kyle A and Brinda, Karel and Wollmann, Thomas and Corguillé, Gildas Le and Ryan, Devon and Bretaudeau, Anthony and Hoogstrate, Youri and Pedersen, Brent S and Heeringen, Simon van and Raden, Martin and Luna-Valero, Sebastian and Soranzo, Nicola and Smet, Matthias De and Kuster, Greg Von and Kirchner, Rory and Pantano, Lorena and Charlop-Powers, Zachary and Thornton, Kevin and Martin, Marcel and Beek, Marius van den and Maticzka, Daniel and Miladi, Milad and Will, Sebastian and Gravouil, Kévin and Unneberg, Per and Brueffer, Christian and Blank, Clemens and Piro, Vitor C and Wolff, Joachim and Antao, Tiago and Gladman, Simon and Shlyakhter, Ilya and Hollander, Mattias de and Mabon, Philip and Shen, Wei and Boekel, Jorrit and Holtgrewe, Manuel and Bouvier, Dave and de Ruiter, Julian R and Cabral, Jennifer and Choudhary, Saket and Harding, Nicholas and Kleinkauf, Robert and Enns, Eric and Eggenhofer, Florian and Brown, Joseph and Cock, Peter J. A and Timm, Henning and Thomas, Cristel and Zhang, Xiao-Ou and Chambers, Matt and Turaga, Nitesh and Seiler, Enrico and Brislawn, Colin and Pruesse, Elmar and Fallmann, Jörg and Kelleher, Jerome and Nguyen, Hai and Parsons, Lance and Fang, Zhuoqing and Stovner, Endre Bakken and Stoler, Nicholas and Ye, Simon and Wohlers, Inken and Farouni, Rick and Freeberg, Mallory and Johnson, James E and Bargull, Marcel and Kensche, Philip Reiner and Webster, Timothy H and Eppley, John M and Stahl, Christoph and Rose, Alexander S and Reynolds, Alex and Wang, Liang-Bo and Garnier, Xavier and Dirmeier, Simon and Knudsen, Michael and Taylor, James and Srivastava, Avi and Rai, Vivek and Agren, Rasmus and Junge, Alexander and Guimera, Roman Valls and Khan, Aziz and Schmeier, Sebastian and He, Guowei and Pinello, Luca and Hägglund, Emil and ... and Bioconda Team and The Bioconda Team and Umeå universitet and Teknisk-naturvetenskapliga fakulteten and Kemiska institutionen
Nature Methods, ISSN 1548-7091, 07/2018, Volume 15, Issue 7, pp. 475 - 476
Journal Article
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