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Published on: November 9, 2018
Acquisition Duration Optimization Using Visual Grading Regression in [68Ga]FAPI-46 PET Imaging of Oncologic Patients
Ted Nilsson1,2, Pawel Rasinski1,2, Örjan Smedby3
1Department of Clinical Science, Intervention, and Technology, Karolinska Institutet, Stockholm, Sweden.
Abstract:
Fibroblast activation protein is a promising target for oncologic molecular imaging with radiolabeled fibroblast activation protein inhibitors (FAPI) in a large variety of cancers. However, there are yet no published recommendations on how to set up an optimal imaging protocol for FAPI PET/CT. It is important to optimize the acquisition duration and strive toward an acquisition that is sufficiently short while simultaneously providing sufficient image quality to ensure a reliable diagnosis. The aim of this study was to evaluate the feasibility of reducing the acquisition duration of [68Ga]FAPI-46 imaging while maintaining satisfactory image quality, with certainty that the radiologist's ability to make a clinical diagnosis would not be affected. Methods: [68Ga]FAPI-46 PET/CT imaging was performed on 10 patients scheduled for surgical resection of suspected pancreatic cancer, 60 min after administration of 3.6 ± 0.2 MBq/kg. The acquisition time was 4 min/bed position, and the raw PET data were statistically truncated and reconstructed to represent images with an acquisition duration of 1, 2, and 3 min/bed position, additional to the reference images of 4 min/bed position. Four image quality criteria that focused on the ability to distinguish specific anatomic details, as well as perceived image noise and overall image quality, were scored on a 4-point Likert scale and analyzed with mixed-effects ordinal logistic regression. Results: A trend toward increasing image quality scores with increasing acquisition duration was observed for all criteria. For the overall image quality, there was no significant difference between 3 and 4 min/bed position, whereas 1 and 2 min/bed position were rated significantly (P < 0.05) lower than 4 min/bed position. For the other criteria, all images with a reduced acquisition duration were rated significantly inferior to images obtained at 4 min/bed position. Conclusion: The acquisition duration can be reduced from 4 to 3 min/bed position while maintaining satisfactory image quality. Reducing the acquisition duration to 2 min/bed position or lower is not recommended since it results in inferior-quality images so noisy that clinical interpretation is significantly disrupted.
Insights
Reducing fibroblast activation protein inhibitor (FAPI) PET/CT scan times to 3 minutes per bed position maintains diagnostic image quality. Shorter scan durations of 1-2 minutes significantly degrade image quality, impacting clinical interpretation.
Area of Science:
- Oncologic molecular imaging
- Radiopharmaceutical therapy
- Positron Emission Tomography/Computed Tomography (PET/CT)
Background:
- Fibroblast activation protein inhibitors (FAPI) are effective for molecular imaging in various cancers.
- Optimal FAPI PET/CT imaging protocols, particularly acquisition duration, require standardization.
- Balancing scan time with diagnostic image quality is crucial for reliable cancer diagnosis.
Purpose of the Study:
- To evaluate the feasibility of shortening [68Ga]FAPI-46 PET/CT imaging acquisition duration.
- To assess the impact of reduced scan times on image quality and diagnostic accuracy.
- To determine the minimum acquisition duration for satisfactory FAPI PET/CT imaging.
Main Methods:
- Ten patients with suspected pancreatic cancer underwent [68Ga]FAPI-46 PET/CT.
- Acquisition times were reduced to 1, 2, and 3 minutes per bed position from a 4-minute reference.
- Image quality was assessed using four criteria (anatomic detail, noise, overall quality) on a 4-point Likert scale.
Main Results:
- Overall image quality was comparable between 3-minute and 4-minute acquisitions.
- Acquisition times of 1 and 2 minutes resulted in significantly lower image quality scores.
- Reduced scan durations (1-3 min) showed inferior performance in distinguishing anatomic details and increased noise compared to 4 minutes.
Conclusions:
- FAPI PET/CT acquisition duration can be reduced to 3 minutes per bed position without compromising satisfactory image quality.
- Scan durations of 2 minutes or less are not recommended due to significantly disrupted clinical interpretation from image noise and degradation.
- Optimized FAPI PET/CT protocols can balance efficiency and diagnostic reliability in oncologic imaging.
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