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by Costello, James C and Heiser, Laura M and Georgii, Elisabeth and Gönen, Mehmet and Menden, Michael P and Wang, Nicholas J and Bansal, Mukesh and Ammad-Ud-Din, Muhammad and Hintsanen, Petteri and Khan, Suleiman A and Mpindi, John-Patrick and Kallioniemi, Olli and Honkela, Antti and Aittokallio, Tero and Wennerberg, Krister and Collins, James J and Gallahan, Dan and Singer, Dinah and Saez-Rodriguez, Julio and Kaski, Samuel and Gray, Joe W and Stolovitzky, Gustavo and Abbuehl, Jean-Paul and Allen, Jeffrey and Altman, Russ B and Balcome, Shawn and Battle, Alexis and Bender, Andreas and Berger, Bonnie and Bernard, Jonathan and Bhattacharjee, Madhuchhanda and Bhuvaneshwar, Krithika and Bieberich, Andrew A and Boehm, Fred and Califano, Andrea and Chan, Christina and Chen, Beibei and Chen, Ting-Huei and Choi, Jaejoon and Coelho, Luis Pedro and Cokelaer, Thomas and Collins, James C and Creighton, Chad J and Cui, Jike and Dampier, Will and Davisson, V. Jo and De Baets, Bernard and Deshpande, Raamesh and DiCamillo, Barbara and Dundar, Murat and Duren, Zhana and Ertel, Adam and Fan, Haoyang and Fang, Hongbin and Gauba, Robinder and Gottlieb, Assaf and Grau, Michael and Gusev, Yuriy and Ha, Min Jin and Han, Leng and Harris, Michael and Henderson, Nicholas and Hejase, Hussein A and Homicsko, Krisztian and Hou, Jack P and Hwang, Woochang and IJzerman, Adriaan P and Karacali, Bilge and Keles, Sunduz and Kendziorski, Christina and Kim, Junho and Kim, Min and Kim, Youngchul and Knowles, David A and Koller, Daphne and Lee, Junehawk and Lee, Jae K and Lenselink, Eelke B and Li, Biao and Li, Bin and Li, Jun and Liang, Han and Ma, Jian and Madhavan, Subha and Mooney, Sean and Myers, Chad L and Newton, Michael A and Overington, John P and Pal, Ranadip and Peng, Jian and Pestell, Richard and Prill, Robert J and Qiu, Peng and Rajwa, Bartek and Sadanandam, Anguraj and Sambo, Francesco and Shin, Hyunjin and Song, Jiuzhou and Song, Lei and Sridhar, Arvind and ... and NCI DREAM Community
Nature Biotechnology, ISSN 1087-0156, 12/2014, Volume 32, Issue 12, pp. 1202 - 1212
Journal Article
by Bansal, Mukesh and Yang, Jichen and Karan, Charles and Menden, Michael P and Costello, James C and Tang, Hao and Xiao, Guanghua and Li, Yajuan and Allen, Jeffrey and Zhong, Rui and Chen, Beibei and Kim, Minsoo and Wang, Tao and Heiser, Laura M and Realubit, Ronald and Mattioli, Michela and Alvarez, Mariano J and Shen, Yao and Gallahan, Daniel and Singer, Dinah and Saez-Rodriguez, Julio and Xie, Yang and Stolovitzky, Gustavo and Califano, Andrea and Abbuehl, Jean-Paul and Altman, Russ B and Balcome, Shawn and Bell, Ana and Bender, Andreas and Berger, Bonnie and Bernard, Jonathan and Bieberich, Andrew A and Borboudakis, Giorgos and Chan, Christina and Chen, Ting-Huei and Choi, Jaejoon and Coelho, Luis Pedro and Creighton, Chad J and Dampier, Will and Davisson, V. Jo and Deshpande, Raamesh and Diao, Lixia and Di Camillo, Barbara and Dundar, Murat and Ertel, Adam and Goswami, Chirayu P and Gottlieb, Assaf and Gould, Michael N and Goya, Jonathan and Grau, Michael and Gray, Joe W and Hejase, Hussein A and Hoffmann, Michael F and Homicsko, Krisztian and Homilius, Max and Hwang, Woochang and Ijzerman, Adriaan P and Kallioniemi, Olli and Karacali, Bilge and Kaski, Samuel and Kim, Junho and Krishnan, Arjun and Lee, Junehawk and Lee, Young-Suk and Lenselink, Eelke B and Lenz, Peter and Li, Lang and Li, Jun and Liang, Han and Mpindi, John-Patrick and Myers, Chad L and Newton, Michael A and Overington, John P and Parkkinen, Juuso and Prill, Robert J and Peng, Jian and Pestell, Richard and Qiu, Peng and Rajwa, Bartek and Sadanandam, Anguraj and Sambo, Francesco and Sridhar, Arvind and Sun, Wei and Toffolo, Gianna M and Tozeren, Aydin and Troyanskaya, Olga G and Tsamardinos, Ioannis and Van Vlijmen, Herman W. T and Wang, Wen and Wegner, Joerg K and Wennerberg, Krister and Van Westen, Gerard J. P and Xia, Tian and Yang, Yang and Yao, Victoria and Yuan, Yuan and Zeng, Haoyang and Zhang, Shihua and Zhao, Junfei and Zhou, Jian and NCI-DREAM Community and Cellworks Group
Nature Biotechnology, ISSN 1087-0156, 12/2014, Volume 32, Issue 12, pp. 1213 - 1222
Recent therapeutic successes have renewed interest in drug combinations, but experimental screening approaches are costly and often identify only small numbers... 
DRUG-COMBINATIONS | NETWORK | THERAPY | INHIBITION | MODELS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | RESISTANCE | CANCER | EXPRESSION | CHEMOTHERAPY | SYSTEMS BIOLOGY | Drug Synergism | B-Lymphocytes - drug effects | Algorithms | Computer Simulation | Humans | Drug Combinations | Pharmaceutical research | Drug therapy, Combination | Research | Computers | Drug therapy | Predictions
Journal Article
Current topics in medicinal chemistry, 2011, Volume 11, Issue 15, p. 1964
Chemogenomic approaches, which link ligand chemistry to bioactivity against targets (and, by extension, to phenotypes) are becoming more and more important due... 
Proteins | Phenotype | Receptors, G-Protein-Coupled - metabolism | Bayes Theorem | Drug Design | Ligands | Receptors, G-Protein-Coupled - classification | Genomics - methods | Receptors, G-Protein-Coupled - chemistry
Journal Article
ChemInform, ISSN 0931-7597, 10/2007, Volume 38, Issue 43
Journal Article
ChemInform, ISSN 0931-7597, 06/2007, Volume 38, Issue 24
Journal Article
Nature Photonics, ISSN 1749-4885, 2014, Volume 8, Issue 5, pp. 375 - 380
Optical frequency combs have the potential to revolutionize terabit communications(1). The generation of Kerr combs in nonlinear microresonators(2) is... 
TRANSMISSION | PHYSICS, APPLIED | SILICON PHOTONICS | CHIP | PERFORMANCE | GBIT/S | GENERATION | NOISE | OPTICS | MODULATOR | Format | Quadrature amplitude modulation | Noise | Feedback | Modulation | Coherence | Data transmission | Photonics
Journal Article
Journal of Advances in Modeling Earth Systems, ISSN 1942-2466, 2013, Volume 5, Issue 3, pp. 572 - 597
Journal Article
Pattern Recognition, ISSN 0031-3203, 07/2019, Volume 91, pp. 86 - 99
High-dimensional data requires scalable algorithms. We propose and analyze four scalable and related algorithms for semi-supervised discriminant analysis... 
Semi-supervised discriminant analysis | Semi-supervised learning | Large-scale | ROBUST SOFTWARE | ARBITRARY PENCIL-A | GENERALIZED SCHUR DECOMPOSITION | ALGORITHM | FRAMEWORK | LAMBDA-B | ERROR-BOUNDS | COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE | ENGINEERING, ELECTRICAL & ELECTRONIC | Computer science | Proteins | Algorithms
Journal Article
Journal Article
Journal of Chromatography A, ISSN 0021-9673, 12/2014, Volume 1371, pp. 184 - 195
Recently, hydroxy sterols and bile acids have gained growing interest as they are important regulators of energy homoeostasis and inflammation. The high number... 
Bile acids | HPLC-ESI-QqQ-MS/MS | Hydroxy sterols | Polar embedded stationary phase | Sterol profiling in biological matrices lipid metabolism | FXR | CHEMISTRY, ANALYTICAL | CHOLESTEROL | BIOCHEMICAL RESEARCH METHODS | METABOLISM | CLONING | 27-HYDROXYCHOLESTEROL | 7-ALPHA-HYDROXYLASE | Sterols | Analysis | Liquid chromatography | Mass spectrometry | Methods | Cells
Journal Article
THERANOSTICS, ISSN 1838-7640, 2018, Volume 8, Issue 13, pp. 3691 - 3692
Magnetic Particle Imaging (MPI) is a new imaging modality based on the visualization of Superparamagnetic Iron Oxide Nanoparticles (SPIONs) using magnetic... 
Nanoparticles | IRON-OXIDE NANOPARTICLES | MEDICINE, RESEARCH & EXPERIMENTAL | CELLS | Magnetic Particle Imaging | Preclinical Imaging | IN-VIVO | Clinical Imaging | INSTRUMENTS
Journal Article
Physics in Medicine and Biology, ISSN 0031-9155, 02/2018, Volume 63, Issue 4, p. 045005
Magnetic particle imaging (MPI) is a 3D imaging method which visualizes the spatial distribution of superparamagnetic iron oxide nanoparticles (SPIOs) with... 
stents | vascular intervention | magnetic particle imaging | HYPERTHERMIA | SAFETY | MRI | ENGINEERING, BIOMEDICAL | MPI | GRAFT | CARDIOVASCULAR INTERVENTIONS | IN-VIVO | ARTIFACTS | RESTENOSIS | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | INSTRUMENTS
Journal Article
Proceedings of SPIE - The International Society for Optical Engineering, ISSN 0277-786X, 7/2014, Volume 9147, pp. 91470W - 91470W-9
KMOS is a multi-object near-infrared integral field spectrograph built by a consortium of UK and German institutes for the ESO Paranal Observatory. We report... 
integral field spectroscopy | infrared spectrographs | multi-object spectroscopy
Conference Proceeding