Meeting ReportData Analysis & Management
A histology-based 3D model of the renal cortical labyrinth to support alpha-particle radiopharmaceutical therapy
Bonnie President, Abdul Vehab Dozic, John Aris, Ronnie Bolden, Lauren Ellis, Carlos Colon-Ortiz, Andrew Sforza, George Sgouros, Eric Frey, Robert Hobbs and Wesley Bolch
Journal of Nuclear Medicine August 2022, 63 (supplement 2) 3187;
Bonnie President
1University of Florida College of Medicine
Abdul Vehab Dozic
2University of Florida
John Aris
2University of Florida
Ronnie Bolden
2University of Florida
Lauren Ellis
2University of Florida
Carlos Colon-Ortiz
2University of Florida
Andrew Sforza
2University of Florida
George Sgouros
3Johns Hopkins University
Eric Frey
4Radiopharamceutical Imaging and Dosimetry, LLC
Robert Hobbs
5Department of Radiation Oncology and Radiation Molecular Sciences, Johns Hopkins Medical Institute, Baltimore, Maryland
Wesley Bolch
2University of Florida

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In this issue
Journal of Nuclear Medicine
Vol. 63, Issue supplement 2
August 1, 2022
A histology-based 3D model of the renal cortical labyrinth to support alpha-particle radiopharmaceutical therapy
Bonnie President, Abdul Vehab Dozic, John Aris, Ronnie Bolden, Lauren Ellis, Carlos Colon-Ortiz, Andrew Sforza, George Sgouros, Eric Frey, Robert Hobbs, Wesley Bolch
Journal of Nuclear Medicine Aug 2022, 63 (supplement 2) 3187;
A histology-based 3D model of the renal cortical labyrinth to support alpha-particle radiopharmaceutical therapy
Bonnie President, Abdul Vehab Dozic, John Aris, Ronnie Bolden, Lauren Ellis, Carlos Colon-Ortiz, Andrew Sforza, George Sgouros, Eric Frey, Robert Hobbs, Wesley Bolch
Journal of Nuclear Medicine Aug 2022, 63 (supplement 2) 3187;
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