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To quantify the reduction of radiation liver cancer patients are exposed to during transarterial chemoembolization (TACE), while maintaining diagnostic image quality, using a new C-arm imaging platform.
The purpose of our study was to quantify the reduction of radiation that liver cancer patients are exposed to during transarterial chemoembolization (TACE) while maintaining diagnostic image quality, using a new C-arm imaging platform.
With improved image quality, the next logical step would be to reduce the radiation dose whilst maintaining diagnostic image quality.
A new X-ray imaging platform (AlluraClarity; Philips Healthcare, Best, Netherlands) which incorporates optimized acquisition parameters and several real-time image processing algorithms with the goal to reduce radiation exposure while maintaining diagnostic image quality was recently made available.
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Much of the radiation dose reduction achieved by reducing kV is offset in the presence of automatic exposure control (AEC), which increases the tube current to maintain a user-specified noise level [26]; for example, to maintain diagnostic image quality, the tube current approximately doubles for a reduction from 120 to 100 kV [27].
F-FDG PET/CT oncologic imaging can be successfully performed at extended injection-to-scan acquisition time intervals of up to approximately 5 half-lives for F-FDG while maintaining good/adequate diagnostic image quality.
Our current retrospective data analysis demonstrates that F-FDG PET/CT oncologic imaging can be successfully performed at extended injection-to-scan acquisition time intervals of up to approximately 5 half-lives for F-FDG while maintaining good/adequate diagnostic image quality.
First, F-FDG PET/CT imaging performed at extended injection-to-scan acquisition times of up to a mean time of 530 minutes (i.e., approximately 5 half-lives for F-FDG) was able to maintain a designation of good/adequate diagnostic image quality deemed necessary for clinical interpretation.
Scores 1 3 were considered compatible with a diagnostic image quality.
Its diagnostic image is very similar to that of CAT.
Optimized fat suppression limits artefacts thereby increasing diagnostic image quality.
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