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myocardial viability in ischemia-reperfusion injury model","Shrestha U. et al.","Molecular Imaging and Biology, 2024.","https://link.springer.com/article/10.1007/s11307-024-01932-y",{"_modelApiKey":197,"id":226,"date":227,"title":228,"author":229,"html":230,"externalLink":231},"T_w4ynVuT7SUAl2IdWFa_Q","2024-07-03","Tissue-based T cell activation and viral RNA persist for up to 2 years after SARS-CoV-2 infection","Peluso M.J. et al.","Science Translational Medicine, 2024.","https://www.science.org/doi/10.1126/scitranslmed.adk3295?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%20%200pubmed",{"_modelApiKey":197,"id":233,"date":234,"title":235,"author":201,"html":236,"externalLink":237},"XPuPwAfuQ9C1G3BnKPEPXA","2024-07-01","[18F]F-AraG imaging reveals association between neuroinflammation and brown- and bone marrow adipose tissue","Nature Communications Biology, 2024.","https://www.nature.com/articles/s42003-024-06494-x",{"_modelApiKey":197,"id":239,"date":240,"title":241,"author":242,"html":202,"externalLink":243},"CV-mUVcXTQ2CV8GjpgISFw","2023-09-03","Total-Body Dynamic Imaging and Kinetic Modeling of [18F]F-AraG in Healthy Individuals and a Non–Small Cell Lung Cancer Patient Undergoing Anti–PD-1 Immunotherapy","Omidivari N. et al.","https://jnm.snmjournals.org/content/65/9/1481.long",{"_modelApiKey":197,"id":245,"date":246,"title":247,"author":248,"html":249,"externalLink":250},"F9JjsWveRdCGt0Ip8RXhsg","2023-01-01","The other immuno-PET: Metabolic tracers in evaluation of immune responses to immune checkpoint inhibitor therapy for solid tumors.","Levi J. and Song H.","Frontiers in Immunology, 2023.","https://www.frontiersin.org/articles/10.3389/fimmu.2022.1113924/full",{"_modelApiKey":197,"id":252,"date":253,"title":254,"author":255,"html":256,"externalLink":257},"FoK4RHZGRxO-cppEwdnOlA","2022-01-01","Biodistribution of a Mitochondrial Metabolic Tracer, 18F-FAraG, in Healthy Volunteers.","Levi J, Duan H, Yaghoubi S, Packiasamy J, Huynh L, Lam T, Shaikh F, Behera D, Song H, Blecha J, Jivan S, Seo Y, VanBrocklin H.","Molecular Imaging. Volume 2022.","https://www.hindawi.com/journals/moi/2022/3667417/",{"_modelApiKey":197,"id":259,"date":260,"title":261,"author":262,"html":263,"externalLink":264},"VhrP1KRDS_6baz9nkeMw4g","2021-04-09","Longitudinal imaging of T-cells and inflammatory demyelination in a preclinical model of multiple sclerosis using 18F-FAraG PET and MRI.","Guglielmetti C, Levi J, Huynh TL, Tiret B, Blecha J, Tang R, Van Brocklin HF, Chaumeil MM.","J Nucl Med. 2021 Apr 9:jnumed.120.259325.","https://pubmed.ncbi.nlm.nih.gov/33837066/",{"_modelApiKey":197,"id":266,"date":267,"title":268,"author":269,"html":270,"externalLink":271},"PiseV3p1S7SLNdie39b5tA","2020-11-06","18F-FAraG PET for CD8 Profiling of Tumors and Assessment of Immunomodulation by Chemotherapy.","Levi J, Goth S, Huynh L, Lam T, Huynh T.L., Schulte B, Packiasamy JA. ","2020 Nov 6;jnumed.120.249078.","https://pubmed.ncbi.nlm.nih.gov/33158906/",{"_modelApiKey":197,"id":273,"date":274,"title":275,"author":276,"html":277,"externalLink":278},"DupzipauT06HJAx7bqC8rw","2019-05-07","Imaging of activated T cells as an early predictor of immune response to anti-PD-1 therapy.","Levi J, Lam T, Goth SR, Yaghoubi S, Bates J, Ren G, Jivan S, Huynh TL, Blecha JE, Khattri R, Schmidt KF, Jennings D, VanBrocklin H","Cancer Res. 2019 May 7. pii: canres.0267.2019.","http://cancerres.aacrjournals.org/content/early/2019/05/07/0008-5472.CAN-19-0267.long",{"_modelApiKey":197,"id":280,"date":281,"title":282,"author":283,"html":284,"externalLink":285},"FH1AG18qTLiIxtfhQBhQdw","2017-06-01","A PET imaging strategy to visualize activated T cells in acute graft-versus-host disease elicited by allogenic hematopoietic cell transplant.","Ronald JA, Kim BS, Gowrishankar G, Namavari M, Alam IS, D'Souza A, Nishikii H, Chuang HY, Ilovich O, Lin CF, Reeves R, Shuhendler A, Hoehne A, Chan CT, Baker J, Yaghoubi SS, VanBrocklin HF, Hawkins R, Franc BL, Jivan S, Slater JB, Verdin EF, Gao KT, Benjamin J5, Negrin R, Gambhir SS","Cancer Res. 2017 Jun 1;77(11):2893-2902.","http://cancerres.aacrjournals.org/content/77/11/2893.long",{"_modelApiKey":197,"id":287,"date":288,"title":289,"author":290,"html":291,"externalLink":292},"bdmSn56LSWmZouQNvgJnVg","2017-01-01","In vivo PET imaging of the activated immune environment in a small animal model of inflammatory arthritis.","Franc BL, Goth S, MacKenzie J, Li X, Blecha J, Lam T, Jivan S, Hawkins RA, VanBrocklin H. ","Mol Imaging. 2017 Jan 1;16:1536012117712638.","https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5480631/",{"_modelApiKey":197,"id":294,"date":295,"title":296,"author":297,"html":298,"externalLink":299},"RummgkAZRsymvqZ2IPph_A","2011-10-13","Synthesis of 2'-deoxy-2'-[18F]fluoro-9-β-D-arabinofuranosylguanine: a novel agent for imaging T-cell activation with PET","Namavari M, Chang YF, Kusler B, Yaghoubi S, Mitchell BS, Gambhir SS","Mol Imaging Biol. 2011 Oct;13(5):812-8.","https://link.springer.com/article/10.1007%2Fs11307-010-0414-x",{"_allPresentationsMeta":301,"allPresentations":303},{"count":302},23,[304,311,316,322,327,333,339,343,347,353,358,363,367,373,377,382,388,393,398,403,408,413,418],{"_modelApiKey":305,"id":306,"date":307,"title":308,"author":309,"html":310,"externalLink":37},"presentation","ffIWdJrYQvmPsd1xwhkuPA","2024-12-06","4th International congress on inflammation and infection imaging 2024 Rome","Levi J.","[18F]F-AraG in monitoring response and predicting outcomes in patients with cancer treated with PD-(L)1 therapy",{"_modelApiKey":305,"id":312,"date":313,"title":314,"author":309,"html":315,"externalLink":37},"Ez48yFRrSkymboztRnQpUA","2024-09-09","WMIC 2024 Montréal","[18F]F-AraG uptake in the vertebral bone marrow predicts survival in immunotherapy treated non-small cell lung cancer patients",{"_modelApiKey":305,"id":317,"date":318,"title":319,"author":320,"html":321,"externalLink":37},"amLXWXQQQgS8AP6CVo5EVA","2024-06-10","SNMMI 2024 Toronto","Levi J. ","Simultaneous imaging of activated lymphocytes and adipocytes with [18F]F-AraG reveals association between neuroinflammation and brown- and bone marrow adipose tissue",{"_modelApiKey":305,"id":323,"date":324,"title":319,"author":325,"html":326,"externalLink":37},"RoLjYlv1SDmZRoKt-U9Cyg","2024-06-09","Nobashi T.","Psyhological Uptake of 18F-AraG immunoPET in Non-Small Cell Lung Cancer Patients in Japan.",{"_modelApiKey":305,"id":328,"date":329,"title":330,"author":331,"html":332,"externalLink":37},"W_Fbb8wjSR6x_pfddhF4fA","2024-05-05","Immunology 2024 Chicago","Chae H-D.","Emergence of novel CD3+ Macrophages in Brown Adipose Tissue Following Adrenergic Stimulation",{"_modelApiKey":305,"id":334,"date":335,"title":336,"author":337,"html":338,"externalLink":37},"cuidQD9lSF6eGjYZyF9lUA","2024-03-15","EMIM 2024 Porto","Guglielmetti C.","18F-AraG PET imaging of activated T cells differentiates between acute and chronic lesions in a multiple sclerosis model",{"_modelApiKey":305,"id":340,"date":335,"title":336,"author":341,"html":342,"externalLink":37},"YB4vWSOXSQevr8A_sT0AXA","Wijngaarden J.E.","Pharmacokinetic analysis and simplified uptake measures for tumor lesion [18F]F-AraG PET imaging in patients with non-small cell lung cancer\n",{"_modelApiKey":305,"id":344,"date":345,"title":336,"author":309,"html":346,"externalLink":37},"DjK8JbPcRJ2LwDq9gheNVw","2024-03-13","18F-AraG Accumulates in Metabolically Active Brown- and Bone Marrow Adipose Tissue\nSee more section",{"_modelApiKey":305,"id":348,"date":349,"title":350,"author":351,"html":352,"externalLink":37},"ehx7T-ICQVyGhiNN5Vi77A","2024-03-04","CROI 2024 Colorado ","Henrich T.","[18F]F-AraG PET Imaging Reveals Unique Tissue T Cell Activation Patterns Across HIV Infection States",{"_modelApiKey":305,"id":354,"date":246,"title":355,"author":356,"html":357,"externalLink":37},"O87fYK50Thq8LUSjGgPkzg","SNNMI 2023 Chicago","Shrestha U. ","A novel mitochondrial-targeted [18F]F-AraG positron emission tomography (PET) biomarker for early diagnosis and monitoring of cardiotoxicity.",{"_modelApiKey":305,"id":359,"date":246,"title":360,"author":361,"html":362,"externalLink":37},"EhDrmihaTrW25Cu-G5XVGw","iSRS 2023 Hawaii","Blecha J.","Synthesis of [18F]F-AraG Using a Second-Generation Precursor and Its Utility Across Multiple Radiochemistry Platforms.\n\n",{"_modelApiKey":305,"id":364,"date":253,"title":365,"author":37,"html":366,"externalLink":37},"U0RVYE9TQlCz_jBgAe1TRA","Immuno-Oncology Symposium (2022), Center for Translation Cancer Research, Western University","Towards in vivo Immunoscore: Assessing Systemic Immune Response with [18F]F-AraG.",{"_modelApiKey":305,"id":368,"date":369,"title":370,"author":37,"html":371,"externalLink":372},"cCpfnbOjTE2FrUoF-RNuOg","2021-01-01","SNNMI 2021 poster presentation.","PET imaging of activated T cells in pancreatic tumors with [18F]F-AraG.","https://jnm.snmjournals.org/content/62/supplement_1/1281",{"_modelApiKey":305,"id":374,"date":369,"title":375,"author":37,"html":376,"externalLink":37},"ZZJw82eFQXK1c26FtHxb5g","WMIC 2021 Spotlight Session – Activity-based Sensing.","The other ImmunoPET: Visualizing T cell Activity with [18F]F-AraG.",{"_modelApiKey":305,"id":378,"date":369,"title":379,"author":37,"html":380,"externalLink":381},"U-LUnuxNS7eD6JNTxy5csg","SITC 2021 poster presentation.","AI-assisted whole-body assessment of immunotherapy response using [18F]F-AraG, a PET agent for activated T cells.","https://jitc.bmj.com/content/9/Suppl_2/A52",{"_modelApiKey":305,"id":383,"date":384,"title":385,"author":386,"html":387,"externalLink":37},"aSftWPEaSlmxJj3HZ_G-HA","2020-01-01","SNNMI 2020 Infection Session.","H. VanBrocklin","Henry VanBrocklin presented: Imaging viral load and T cell activation in HIV: tools for cure development.",{"_modelApiKey":305,"id":389,"date":384,"title":390,"author":391,"html":392,"externalLink":37},"ey_9uasNQSyCo_d7TcUf1Q","WMIC 2020 Cell Tracking Session","C. Guglielmett","Caroline Guglielmetti presented: Longitudinal imaging of activated T cells and inflammatory demyelination using MRI and [18F]F-AraG PET in a novel multiple sclerosis model.",{"_modelApiKey":305,"id":394,"date":384,"title":395,"author":396,"html":397,"externalLink":37},"ec-gP9NgQtOsMxpMojpvNA","WMIC 2020 Immuno-Oncology Session.","J. Levi","Jelena Levi presented: [18F]F-AraG PET for CD8 profiling of tumors and assessment of immunomodulation by chemotherapy.",{"_modelApiKey":305,"id":399,"date":384,"title":400,"author":401,"html":402,"externalLink":37},"G3ACEMzYRAeTclKwl7Wq2g","UCSF Annual Imaging Research Symposium 2020","C. Guglielmetti","Caroline Guglielmetti presented: Improving brain lesion characterization in a multiple sclerosis model using [18F]F-AraG PET and MR imaging of T cells and inflammatory demyelination.",{"_modelApiKey":305,"id":404,"date":405,"title":406,"author":37,"html":407,"externalLink":37},"JNL5qZTIT3S-8crM8Mso-Q","2019-01-01","WMIC 2019 Oncology Session. ","Poster presentation: Imaging of activated T cells as an early predictor of immune response to anti-PD-1 therapy.",{"_modelApiKey":305,"id":409,"date":405,"title":410,"author":396,"html":411,"externalLink":412},"ZFvBQcSPRF-1OQacpHA6DA","IBA Radiopharma Webinar 2019 The role of PET imaging in Immuno-Oncology.","Jelena Levi presented: ImmunoPET for imaging immune responses - 18F labeled agents.","https://www.gotostage.com/channel/c91227af67ff4be2ad68ba39372dabdb/recording/a9bc8a273e68482c9ba4a8e3d5ed2ab5/watch?source=CHANNEL",{"_modelApiKey":305,"id":414,"date":415,"title":416,"author":37,"html":417,"externalLink":37},"cuQd8_WmRvGbdgQIbVPNyw","2018-01-01","2018 American Society of Clinical Oncology Conference.","Poster presentation: A study to evaluate immunological response to PD-1 inhibition in squamous cell carcinoma of the head and neck (SCCHN) using novel PET imaging with [18F]F-AraG.",{"_modelApiKey":305,"id":419,"date":415,"title":420,"author":396,"html":421,"externalLink":37},"XAGExRNsR4CMAc_YCFba2w","WMIC 2018 Imaging in Cell and Immune Therapy (ICIT)/Endogenous Immunity and Microenvironment Workshop.","Jelena Levi presented: Evaluating immunological response using T cell specific PET imaging agent, [18F]F-AraG, in preclinical models and in clinical trials.",1778576454248]