3D-Printed Dose Caddy for Administration of Radiopharmaceutical Therapy

With the commercial production of standardized radiopharmaceutical therapy doses, a practical dose administration and delivery device was sought to aid in dose administration. In particular, a device was needed to reduce staff radiation exposure associated with the manual injection of commercially available radiopharmaceutical doses dispensed in 20-mL syringes, despite the use of a standard syringe shield. With the use of commercially available materials, tabletop 3-dimensional printers, and open-source software, we designed, printed, and tested a dose administration caddy with syringe plunger extension using inexpensive and easy-to-find acrylonitrile butadiene styrene filaments. This caddy allows for a highly adaptable setup that offers ease of use, simplicity, and a rugged design that significantly reduces the radiation dose to the operator by 5-fold overall by 25-fold to the hand and 15.5 fold to the body.

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Publication Details

Journal
Journal of Nuclear Medicine Technology
Published
2026-10-06
DOI
https://doi.org/10.2967/jnmt.125.271892
Primary Topic
Radiopharmaceutical Chemistry and Applications
Type
article
Field-Weighted Citation Impact
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article

3D-Printed Dose Caddy for Administration of Radiopharmaceutical Therapy

David J. Lubin, Meghan Stanton, Garrett DePalma, Markus Lämmle et al.
Journal of Nuclear Medicine Technology
Radiopharmaceutical Chemistry and Applications
article

3D-Printed Dose Caddy for Administration of Radiopharmaceutical Therapy

David J. Lubin, Meghan Stanton, Garrett DePalma, Markus Lämmle, Ketan Dayma, Leen Alkukhun, David Salerius, Kent Ogden, Paul Depew, Kurt Wilson
article en

Abstract

With the commercial production of standardized radiopharmaceutical therapy doses, a practical dose administration and delivery device was sought to aid in dose administration. In particular, a device was needed to reduce staff radiation exposure associated with the manual injection of commercially available radiopharmaceutical doses dispensed in 20-mL syringes, despite the use of a standard syringe shield. With the use of commercially available materials, tabletop 3-dimensional printers, and open-source software, we designed, printed, and tested a dose administration caddy with syringe plunger extension using inexpensive and easy-to-find acrylonitrile butadiene styrene filaments. This caddy allows for a highly adaptable setup that offers ease of use, simplicity, and a rugged design that significantly reduces the radiation dose to the operator by 5-fold overall by 25-fold to the hand and 15.5 fold to the body.

Journal of Nuclear Medicine Technology
Brigham and Women's Hospital (US), Emory Healthcare (US), Emory University (US), SUNY Upstate Medical University (US), Emory Clinic (US), Upstate University Hospital (US)
Openalex Percentile: Top 12%
Radiopharmaceutical Chemistry and Applications
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3D-Printed Dose Caddy for Administration of Radiopharmaceutical Therapy — David J. Lubin, Meghan Stanton, et al. · Journal of Nuclear Medicine Technology (2026) | TGRS Research Map | TGRS