DOI: 10.2174/0115734056519233260918120340 ISSN: 1573-4056

Effects of Dental Metal Implant Number and Configuration on PET/CT Quantification and Image Quality: A Phantom-Based Study

Emine Tuna Akdogan, Sinem Coşkun, Nami Yeyin, Rabia Lebriz Uslu Beşli, Mustafa Demir

Introduction/Objectives:

Dental metal implants can generate artifacts in PET/CT imaging, particularly in the head and neck region, affecting quantitative accuracy. This study evaluated variations in standardized uptake value (SUV), contrast (C), and contrast-to-noise ratio (CNR) across predefined dental implant configurations differing in both implant number and spatial arrangement and assessed their effects on simulated tongue, nasopharyngeal, and laryngeal lesions.

Methods:

A custom-designed head and neck phantom containing extracted human teeth and up to eight titanium dental implants was used. Simulated tongue, nasopharyngeal, and laryngeal tumors were filled with F-18 FDG. PET/CT scans were acquired using seven implant configurations (0–8 implants) and reconstructed as attenuation-corrected (AC), AC with metal artifact reduction (AC+MAR), and non-attenuation-corrected (NoAC) images. SUV, contrast, and CNR were calculated using standardized ROIs.

Results:

Compared with the implant-free configuration, tongue tumor SUV decreased by 11% and 9.1% on AC and AC+MAR images, respectively, at eight implants. Nasopharyngeal and laryngeal SUV showed only minimal descriptive change with increasing implant number and configurations on AC+MAR images. Contrast and CNR followed similar trends on AC and AC+MAR images, whereas NoAC images consistently showed substantially lower contrast and CNR regardless of implant number.

Discussion:

Although MAR reduced implant-induced artifacts and partially attenuated SUV underestimation, it did not eliminate the configuration-dependent trend observed across the predefined implant arrangements. Lesions farther from the implants appeared less affected after MAR; however, this should be regarded as a hypothesis-generating observation from a single phantom experiment, requiring validation in patient studies and phantom models with varying implant-to-lesion distances.

Conclusion:

Dental implants may affect PET/CT quantification, particularly for lesions adjacent to multiple implants; SUV measurements in these regions should be interpreted with caution.