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ACKNOWLEDGING SAIRF & NIH S10 SIG EQUIPMENT
If you used the SAIRF services and/or equipment, you are responsible for acknowledging the SAIRF in publications, posters and presentations. If you used equipment that was funded by the NIH via S10 Shared Instrumentation Grant (SIG), then you must acknowledge the NIH S10 grant as well. For example, “The authors would like to acknowledge the Cancer Center Support Grant: NCI P30 CA014520, University of Wisconsin Small Animal Imaging & Radiotherapy Facility and [insert one of the following NIH S10 Shared Instrumentation Grants] for supporting this work.”
-MiLabs microSPECT/CT SIG: NIH S10OD028670-01
-Faxitron Digital X-Ray SIG: NIH S10OD023676-01
-VisualSonics US/PA SIG: NIH S10-OD018505
For more information, including instructions for retroactively adding acknowledgements, see Acknowledging CCSG, SAIRF and NIH S10 Instrumentation Grants.
ACKNOWLEDGING UWCCC
If you reside in UWCCC space, receive UWCCC Cancer Center Support Grant (CCSG) funding, or use any UWCCC shared resource, you are responsible for acknowledging the “University of Wisconsin Carbone Cancer Center Support Grant P30 CA014520” in publications, posters and presentations. For more information, see Acknowledging UWCCC Policies.
You get in the journal…we get you on the cover!
Publications, Proceedings, & Awards
Research reported in the following publications utilized the imaging services of the Small Animal Imaging and Radiotherapy Facility (SAIRF) and acknowledged the University of Wisconsin Carbone Cancer Center Support Grant P30 CA014520.
R. B. Patel; R. Hernandez; P. Carlson; J. Grudzinski; A. M. Bates; J. C. Jagodinsky; A. Erbe; I. R. Marsh; I. Arthur; E. Aluicio-Sarduy; R. N. Sriramaneni; W. J. Jin; C. Massey; A. L. Rakhmilevich; D. Vail; J. W. Engle; T. Le; K. Kim; B. Bednarz; P. M. Sondel; J. Weichert; Z. S. Morris; Low-dose targeted radionuclide therapy renders immunologically cold tumors responsive to immune checkpoint blockade Science Translational Medicine. 2021 Jul 14; doi:10.1126/scitranslmed.abb3631 | |
Erwin GS, Grieshop MP, Ali A, Qi J, Lawlor M, Kumar D, Ahmad I, McNally A, Teider N, Worringer K, Sivasankaran R, Syed DN, Eguchi A, Ashraf MD, Jeffery JJ, Xu M, Park PMC, Mukhtar H, Srivastava AK, Faruq M, Bradner JE, Ansari AZ. Synthetic transcription elongation factors license transcription across repressive chromatin. Science. DOI: 10.1126/science.aan6414 | |
Goel S, Ferreira CA, Chen F, Ellison PA, Siamof CM, Barnhart TE, Cai W. Activatable hybrid nanotheranostics for tetramodal imaging and synergistic photothermal/photodynamic therapy. Advanced Materials, 2018, ePub. (NIHMSID 920778) | |
Koziolová E, Goel S, Chytil P, Janoušková O, Barnhart TE, Cai W, Etrych T. A tumor-targeted polymer theranostics platform for positron emission tomography and fluorescence imaging. Nanoscale, 2017, 10906-10918. (PMCID: PMC5551419) | |
Hernandez R, Graves SA, Gregg T, VanDeusen HR, Fenske RJ, Wienkes HN, England CG, Valdovinos HF, Jeffery JJ, Barnhart TE, Severin GW, Nickles RJ, Kimple ME, Merrins MJ, Cai W. Radiomanganese PET detects changes in functional β-cell mass in mouse models of diabetes. Diabetes, 2017, 66, 2163-2174. (PMCID: PMC5521871) | |
Zhan Y, Shi S, Ehlerding EB, Graves SA, Goel S, Engle JW, Liang J, Tian J, Cai W. Radiolabeled, antibody-conjugated manganese oxide nanoparticles for tumor vasculature targeted positron emission tomography and magnetic resonance imaging. ACS Applied Materials & Interfaces, 2017, 9, 38304-38312. (PMCID: PMC5680099) | |
Hernandez R, Heskamp S, Rijpkema M, Bos DL, Goldenberg DM, McBride WJ, Morgenstern A, Bruchertseifer F, Cai W, Boerman OC. Preventing radiobleaching of cyanine fluorophores enhances stability of nuclear/NIRF multimodality imaging agents. Theranostics, 2017, 7, 1-8. (PMCID: PMC5196880) | |
Zhang R, Schroeder A, Grudzinski J, Rosenthal E, Warram J, Pinchuk A, Eliceiri K, Kuo J, Weichert J. Beyond the Margins: Real-Time Detection of Cancer with Targeted Fluorophores. Nature Reviews Clinical Oncology. 2017 Jun;14(6):347-364. doi: 10.1038/nrclinonc.2016.212. | |
Foley TM, Payne SN, Pasch CA, Yueh AE, Van De Hey DR, Korkos DP, Clipson L, Maher ME, Matkowskyj KA, Newton MA, Deming DA. Dual PI3K/mTOR Inhibition in Colorectal Cancers with APC and PIK3CA Mutations. Molecular Cancer Research. 2017 Feb 9;15(3):317-327. doi: 10.1158/1541-7786.MCR-16-0256 | |
Mendoza MGG, Inman DR, Ponik SM, Jeffery JJ, Sheerar DS, Van Doorn RR, Keely PJ. Neutrophils drive accelerated tumor progression in the collagen-dense mammary tumor microenvironment. Breast Cancer Research, 2016; 18(1). DOI: 10.1186/s13058-016-0703-7 | |
Bouchlaka MN, Ludwig KD, Gordon JW, Kutz MP, Bednarz BP, Fain SB, Capitini CN. 19F-MRI for monitoring human NK cells in vivo. OncoImmunology. 2016 May; 5(5): e1143996. doi: 10.1080/2162402X.2016.1143996 | |
Esbona K, Inman D, Saha S, Jeffery JJ, Schedin P, Wilke L, Keely P. COX-2 modulates mammary tumor progression in response to collagen density. Breast Cancer Research, 2016; 18:35. doi: | |
Yang Y, Hernandez R, Rao J, Yin L, Qu Y, Wu J, England CG, Graves SA, Lewis CM, Wang P, Meyerand ME, Nickles RJ, Bian XW, Cai W. Targeting CD146 with a 64Cu-labeled antibody enables in vivo immunoPET imaging of high-grade gliomas. Proceedings of the National Academy of Sciences of the United States of America. 2015 Nov; 112(47), E6525-E6534. (PMCID: PMC4664343). | |
Luo H, Hernandez R, Hong H, Graves SA, Yang Y, England CG, Theuer CP, Nickles RJ, Cai W. Non-invasive brain cancer imaging with a bispecific antibody fragment, generated via click chemistry. Proceedings of the National Academy of Sciences of the United States of America. 2015 Oct 13;112(41):12806-11. doi10.1073/pnas.1509667112 | |
Payne S, Maher M, Tran N, Van DeHey D, Foley T, Yeuh A, Leystra AA, Pasch C, Jeffery JJ, Clipson L, Matkowskyj KA, Deming DA. PIK3CA mutations can initiate pancreatic tumorigenesis and are targetable with PI3K inhibitors. Oncogenesis, 2015; 4, e169; doi:10.1038/oncsis.2015.28. | |
Swanson KI, Clark PA, Zhang RR, Kandela, IK, Farhoud, M, Weichert, JP, Kuo, JS. Fluorescent Cancer-Selective Alkylphosphocholine Analogs for Intraoperative Glioma Detection. Neurosurgery. 2015 Feb; 76(2):115-124. doi:10.1227/NEU.0000000000000622. | |
Weichert JP, Clark PA, Kandela IK, Abram M, Clarke W, Longino MA, Pinchuk AN, Farhoud M, Swanson KI, Floberg JM, Grudzinski JJ, Titz B, Traynor AM, Chen H, Hall LT, Pazoles CJ, Pickhardt PJ, Kuo JS. Alkylphosphocholine analogs for broad spectrum cancer imaging and therapy. Science Translational Medicine. 2014 Jun 11; 6:240ra75. doi:10.1126/scitranslmed.3007646 | |
Peng Y, Li M, Clarkson BD, Pehar M, Lao PJ, Hillmer AT, Barnhart TE, Christian BT, Mitchell HA, Bendlin BB, Sandor M, Puglielli L. Deficient import of acetyl-CoA into the ER lumen causes neurodegeneration and propensity to infections, inflammation, and cancer. J Neurosci. 2014; 34(20):6772-6789. doi:10.1523/JNEUROSCI.0077-14.2014 |
See the Accordion panels below. Click a year to view all publications from that year, or click “Expand all” to view all publications.
- 2020 NIH S10 Shared Instrumentation Grant (MILabs U-SPECT6CTUHR)
- 2019 UW–Madison Cool Science Image Contest Winner
- 2014 The Why Files “Cool Science Image Contest” Winner
- 2009 “Image of the Year” Honorable Mention
- 2009 “Image of the Year” Honorable Mention
- 2009 “Best Presented Image of the Year” Honorable Mention
- 2008 “Image of the Year” Winner
- 2007 “Image of the Year” Honorable Mention
- 2007 First Place, Research: Ambay RS, Halberg RB, Grudzinski J, Gard CG, Christensen MB, Reeder SB, Gutowski KA, Weichert JP. A Novel Approach to Monitoring Cancer after Placement of Silicone Implants. Midwest Association of Plastic Surgeons, May 4-5, 2007, Chicago, IL
- 2006 “Most Innovative Image of the Year”
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2006 NIH S10 Shared Instrumentation Grant (Siemens Inveon PET/CT)
Publications by Year
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2024 Publications
2023 Publications
2022 Publications
2021 Publications
2020 Publications
2019 Publications