2019Japanese Journal of Radiological TechnologyOpen access

Investigation of Computed Tomography Exposure Dose for Whole-body 18F-FDG PET/CT Examination in Chugoku-Shikoku Regions

Yukito Maeda, Yayoi Taniguchi, Komei Takauchi, Shingo Kageyama, Yoshiharu Kangai, Shuji Kenda

Open full text 1 citations

Abstract

Purpose: We investigated the way of thinking about the CT dose setting, the exposure dose (CTDIvol, DLP) and the image quality (standard deviation of liver: SDliver) of whole-body PET/CT examinations in the Chugoku and Shikoku regions for the optimized CT dose setting. Method: It was researched in the target 29 facilities which is equipped with 18F-FDG, PET/CT scanner in that regions. We examined how to determine the dose of complete physical PET/CT setting, the CT radiation dose (CTDIvol and DLP) and the image quality of CT fusion image that is the standard deviation of liver CT value in each facility. Result: The optimized CT dose was lower than the diagnostic CT in many facilities. The 75th percentile CTDIvol was 6.01 mGy. The 75th percentile DLP was 560.9 mGy ×cm. The SDliver was 14.6±5.3 HU. Conclusion: The CT condition was low setting in comparison with diagnostic CT in many facilities. The exposure dose was lower than the diagnostic CT dose. The image quality of the normal region of liver was very close to the diagnostic CT. Even though it was low dose, images were less noise components.

Open-access reader

About this research paper

What this paper is about

Purpose: We investigated the way of thinking about the CT dose setting, the exposure dose (CTDIvol, DLP) and the image quality (standard deviation of liver: SDliver) of whole-body PET/CT examinations in the Chugoku and Shikoku regions for the optimized CT dose setting. Method: It was researched in the target 29 facilities which is equipped with 18F-FDG, PET/CT scanner in that regions. We examined how to determine the dose of complete physical PET/CT setting, the CT radiation dose (CTDIvol and DLP) and the image quality of CT fusion image that is the standard deviation of liver CT value in each facility. Result: The optimized CT dose was lower than the diagnostic CT in many facilities. The 75th percentile CTDIvol was 6.01 mGy. The 75th percentile DLP was 560.9 mGy ×cm. The SDliver was 14.6±5.3 HU. Conclusion: The CT condition was low setting in comparison with diagnostic CT in many facilities. The exposure dose was lower than the diagnostic CT dose. The image quality of the normal region of liver was very close to the diagnostic CT. Even though it was low dose, images were less noise components.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Purpose: We investigated the way of thinking about the CT dose setting, the exposure dose (CTDIvol, DLP) and the image quality (standard deviation of liver: SDliver) of whole-body PET/CT examinations in the Chugoku and Shikoku regions for the optimized CT dose setting. Method: It was researched in the target 29 facilities which is equipped with 18F-FDG, PET/CT scanner in that regions. We examined how to determine the dose of complete physical PET/CT setting, the CT radiation dose (CTDIvol and DLP) and the image quality of CT fusion image that is the standard deviation of liver CT value in each facility. Result: The optimized CT dose was lower than the diagnostic CT in many facilities. The 75th percentile CTDIvol was 6.01 mGy. The 75th percentile DLP was 560.9 mGy ×cm. The SDliver was 14.6±5.3 HU. Conclusion: The CT condition was low setting in comparison with diagnostic CT in many facilities. The exposure dose was lower than the diagnostic CT dose. The image quality of the normal region of liver was very close to the diagnostic CT. Even though it was low dose, images were less noise components.

Key concepts: Nuclear medicine, Medicine, Image quality, Computed tomography, Scanner, Radiation dose, Percentile, PET-CT

Related papers

Back to paper searchBrowse research topicsOriginal source
Investigation of Computed Tomography Exposure Dose for Whole-body 18F-FDG PET/CT Examination in Chugoku-Shikoku Regions — Research Paper | ScholarLens