Publications

Found 420 results
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Journal Article
Vosoughi A, Zhang T, Shohdy KS, Vlachostergios PJ, Wilkes DC, Bhinder B, Tagawa ST, Nanus DM, Molina AM, Beltran H et al..  2020.  Common germline-somatic variant interactions in advanced urothelial cancer.. Nat Commun. 11(1):6195.
Vosoughi A, Zhang T, Shohdy KS, Vlachostergios PJ, Wilkes DC, Bhinder B, Tagawa ST, Nanus DM, Molina AM, Beltran H et al..  2020.  Common germline-somatic variant interactions in advanced urothelial cancer.. Nat Commun. 11(1):6195.
Meyer KD, Saletore Y, Zumbo P, Elemento O, Mason CE, Jaffrey SR.  2012.  Comprehensive analysis of mRNA methylation reveals enrichment in 3' UTRs and near stop codons.. Cell. 149(7):1635-46.
Gayvert KM, Aly O, Platt J, Bosenberg MW, Stern DF, Elemento O.  2017.  A Computational Approach for Identifying Synergistic Drug Combinations.. PLoS Comput Biol. 13(1):e1005308.
Benedicto I, Lehmann GL, Ginsberg M, Nolan DJ, Bareja R, Elemento O, Salfati Z, Alam NM, Prusky GT, Llanos P et al..  2017.  Concerted regulation of retinal pigment epithelium basement membrane and barrier function by angiocrine factors.. Nat Commun. 8:15374.
Lis R, Karrasch CC, Poulos MG, Kunar B, Redmond D, Duran JGBarcia, Badwe CR, Schachterle W, Ginsberg M, Xiang J et al..  2017.  Conversion of adult endothelium to immunocompetent haematopoietic stem cells.. Nature. 545(7655):439-445.
Lis R, Karrasch CC, Poulos MG, Kunar B, Redmond D, Duran JGBarcia, Badwe CR, Schachterle W, Ginsberg M, Xiang J et al..  2017.  Conversion of adult endothelium to immunocompetent haematopoietic stem cells.. Nature. 545(7655):439-445.
Lis R, Karrasch CC, Poulos MG, Kunar B, Redmond D, Duran JGBarcia, Badwe CR, Schachterle W, Ginsberg M, Xiang J et al..  2017.  Conversion of adult endothelium to immunocompetent haematopoietic stem cells.. Nature. 545(7655):439-445.
Lis R, Karrasch CC, Poulos MG, Kunar B, Redmond D, Duran JGBarcia, Badwe CR, Schachterle W, Ginsberg M, Xiang J et al..  2017.  Conversion of adult endothelium to immunocompetent haematopoietic stem cells.. Nature. 545(7655):439-445.
Jiang Y, Ortega-Molina A, Geng H, Ying H-Y, Hatzi K, Parsa S, McNally D, Wang L, Doane AS, Agirre X et al..  2017.  CREBBP Inactivation Promotes the Development of HDAC3-Dependent Lymphomas.. Cancer Discov. 7(1):38-53.
Jiang Y, Ortega-Molina A, Geng H, Ying H-Y, Hatzi K, Parsa S, McNally D, Wang L, Doane AS, Agirre X et al..  2017.  CREBBP Inactivation Promotes the Development of HDAC3-Dependent Lymphomas.. Cancer Discov. 7(1):38-53.
Jiang Y, Ortega-Molina A, Geng H, Ying H-Y, Hatzi K, Parsa S, McNally D, Wang L, Doane AS, Agirre X et al..  2017.  CREBBP Inactivation Promotes the Development of HDAC3-Dependent Lymphomas.. Cancer Discov. 7(1):38-53.
Jiang Y, Ortega-Molina A, Geng H, Ying H-Y, Hatzi K, Parsa S, McNally D, Wang L, Doane AS, Agirre X et al..  2017.  CREBBP Inactivation Promotes the Development of HDAC3-Dependent Lymphomas.. Cancer Discov. 7(1):38-53.
Khosravi P, Lysandrou M, Eljalby M, Li Q, Kazemi E, Zisimopoulos P, Sigaras A, Brendel M, Barnes J, Ricketts C et al..  2021.  A Deep Learning Approach to Diagnostic Classification of Prostate Cancer Using Pathology-Radiology Fusion.. J Magn Reson Imaging. 54(2):462-471.
Khosravi P, Lysandrou M, Eljalby M, Li Q, Kazemi E, Zisimopoulos P, Sigaras A, Brendel M, Barnes J, Ricketts C et al..  2021.  A Deep Learning Approach to Diagnostic Classification of Prostate Cancer Using Pathology-Radiology Fusion.. J Magn Reson Imaging. 54(2):462-471.
Khosravi P, Kazemi E, Zhan Q, Malmsten JE, Toschi M, Zisimopoulos P, Sigaras A, Lavery S, Cooper LAD, Hickman C et al..  2019.  Deep learning enables robust assessment and selection of human blastocysts after in vitro fertilization.. NPJ Digit Med. 2:21.
Courtiol P, Maussion C, Moarii M, Pronier E, Pilcer S, Sefta M, Manceron P, Toldo S, Zaslavskiy M, Le Stang N et al..  2019.  Deep learning-based classification of mesothelioma improves prediction of patient outcome.. Nat Med. 25(10):1519-1525.
Page DB, Yuan J, Redmond D, Y Wen H, Durack JC, Emerson R, Solomon S, Dong Z, Wong P, Comstock C et al..  2016.  Deep Sequencing of T-cell Receptor DNA as a Biomarker of Clonally Expanded TILs in Breast Cancer after Immunotherapy.. Cancer Immunol Res. 4(10):835-844.
Page DB, Yuan J, Redmond D, Y Wen H, Durack JC, Emerson R, Solomon S, Dong Z, Wong P, Comstock C et al..  2016.  Deep Sequencing of T-cell Receptor DNA as a Biomarker of Clonally Expanded TILs in Breast Cancer after Immunotherapy.. Cancer Immunol Res. 4(10):835-844.
Page DB, Yuan J, Redmond D, Y Wen H, Durack JC, Emerson R, Solomon S, Dong Z, Wong P, Comstock C et al..  2016.  Deep Sequencing of T-cell Receptor DNA as a Biomarker of Clonally Expanded TILs in Breast Cancer after Immunotherapy.. Cancer Immunol Res. 4(10):835-844.
Rickman KA, Lach FP, Abhyankar A, Donovan FX, Sanborn EM, Kennedy JA, Sougnez C, Gabriel SB, Elemento O, Chandrasekharappa SC et al..  2015.  Deficiency of UBE2T, the E2 Ubiquitin Ligase Necessary for FANCD2 and FANCI Ubiquitination, Causes FA-T Subtype of Fanconi Anemia.. Cell Rep. 12(1):35-41.
Rickman KA, Lach FP, Abhyankar A, Donovan FX, Sanborn EM, Kennedy JA, Sougnez C, Gabriel SB, Elemento O, Chandrasekharappa SC et al..  2015.  Deficiency of UBE2T, the E2 Ubiquitin Ligase Necessary for FANCD2 and FANCI Ubiquitination, Causes FA-T Subtype of Fanconi Anemia.. Cell Rep. 12(1):35-41.
Rickman KA, Lach FP, Abhyankar A, Donovan FX, Sanborn EM, Kennedy JA, Sougnez C, Gabriel SB, Elemento O, Chandrasekharappa SC et al..  2015.  Deficiency of UBE2T, the E2 Ubiquitin Ligase Necessary for FANCD2 and FANCI Ubiquitination, Causes FA-T Subtype of Fanconi Anemia.. Cell Rep. 12(1):35-41.
Rickman KA, Lach FP, Abhyankar A, Donovan FX, Sanborn EM, Kennedy JA, Sougnez C, Gabriel SB, Elemento O, Chandrasekharappa SC et al..  2015.  Deficiency of UBE2T, the E2 Ubiquitin Ligase Necessary for FANCD2 and FANCI Ubiquitination, Causes FA-T Subtype of Fanconi Anemia.. Cell Rep. 12(1):35-41.
Puca L, Gavyert K, Sailer V, Conteduca V, Dardenne E, Sigouros M, Isse K, Kearney M, Vosoughi A, Fernandez L et al..  2019.  Delta-like protein 3 expression and therapeutic targeting in neuroendocrine prostate cancer.. Sci Transl Med. 11(484)