An innovative multicompartmental anatomic brain phantom (StepBrain) is described to simulate the in vivo tracer uptake of gray matter, white matter, and striatum, overcoming the limitations of currently available phantoms. Methods: StepBrain was created by exploiting the potential of fused deposition modeling 3-dimensional printing to replicate the real anatomy of the brain compartments, as modeled through ad hoc processing of healthy-volunteer MR images. Results: A realistic simulation of 18F-FDG PET brain studies, using target activity to obtain the real concentration ratios, was obtained, and the results of postprocessing with partial-volume effect correction tools developed for human PET studies confirmed the accuracy of these methods in recovering the target activity concentrations. Conclusion: StepBrain compartments (gray matter, white matter, and striatum) can be simultaneously filled, achieving different concentration ratios and allowing the simulation of different (e.g., amyloid, tau, or 6-fluoro-l-dopa) tracer distributions, with a potentially valuable role for multicenter PET harmonization studies.

StepBrain: A 3-Dimensionally Printed Multicompartmental Anthropomorphic Brain Phantom to Simulate PET Activity Distributions / Pirozzi, Maria Agnese; Gaudieri, Valeria; Prinster, Anna; Magliulo, Mario; Cuocolo, Alberto; Brunetti, Arturo; Alfano, Bruno; Quarantelli, Mario. - In: THE JOURNAL OF NUCLEAR MEDICINE. - ISSN 0161-5505. - 65:(2024), pp. 1489-1492. [10.2967/jnumed.123.267277]

StepBrain: A 3-Dimensionally Printed Multicompartmental Anthropomorphic Brain Phantom to Simulate PET Activity Distributions

Pirozzi, Maria Agnese;Gaudieri, Valeria;Prinster, Anna;Magliulo, Mario;Cuocolo, Alberto;Brunetti, Arturo;Quarantelli, Mario
2024

Abstract

An innovative multicompartmental anatomic brain phantom (StepBrain) is described to simulate the in vivo tracer uptake of gray matter, white matter, and striatum, overcoming the limitations of currently available phantoms. Methods: StepBrain was created by exploiting the potential of fused deposition modeling 3-dimensional printing to replicate the real anatomy of the brain compartments, as modeled through ad hoc processing of healthy-volunteer MR images. Results: A realistic simulation of 18F-FDG PET brain studies, using target activity to obtain the real concentration ratios, was obtained, and the results of postprocessing with partial-volume effect correction tools developed for human PET studies confirmed the accuracy of these methods in recovering the target activity concentrations. Conclusion: StepBrain compartments (gray matter, white matter, and striatum) can be simultaneously filled, achieving different concentration ratios and allowing the simulation of different (e.g., amyloid, tau, or 6-fluoro-l-dopa) tracer distributions, with a potentially valuable role for multicenter PET harmonization studies.
2024
StepBrain: A 3-Dimensionally Printed Multicompartmental Anthropomorphic Brain Phantom to Simulate PET Activity Distributions / Pirozzi, Maria Agnese; Gaudieri, Valeria; Prinster, Anna; Magliulo, Mario; Cuocolo, Alberto; Brunetti, Arturo; Alfano, Bruno; Quarantelli, Mario. - In: THE JOURNAL OF NUCLEAR MEDICINE. - ISSN 0161-5505. - 65:(2024), pp. 1489-1492. [10.2967/jnumed.123.267277]
File in questo prodotto:
File Dimensione Formato  
Pirozzi et al. J Nucl Med (2024).pdf

accesso aperto

Descrizione: Articolo in rivista
Tipologia: Versione Editoriale (PDF)
Licenza: Creative commons
Dimensione 811.2 kB
Formato Adobe PDF
811.2 kB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/966080
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 2
  • ???jsp.display-item.citation.isi??? ND
social impact