A phantom and simulation study on body-shields to cope with radioactivity outside the field of view in 3D PET
Tomoyuki Hasegawa, Hideo Murayama, Hiroshi Matsuura, Taiga Yamaya
Abstract
Tomoyuki Hasegawa, Hideo Murayama, Hiroshi Matsuura, Taiga Yamaya
Abstract
Basic physics characteristics of body-shields to screen out radioactivity outside the field of view were analyzed by phantom experiments and Monte-Carlo simulation. The shielding effect depended primarily on the geometrical condition as in the case of end-shields. However, body-shields became more effective by increasing the shield thickness more than 10 mm as not in the case of end-shields. This characteristic difference was related with the fractions of un-scattered and shield-scattered components. A body-shield could be as effective as an end-shield if a good geometrical condition was kept with sufficient shield thickness.
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Basic physics characteristics of body-shields to screen out radioactivity outside the field of view were analyzed by phantom experiments and Monte-Carlo simulation. The shielding effect depended primarily on the geometrical condition as in the case of end-shields. However, body-shields became more effective by increasing the shield thickness more than 10 mm as not in the case of end-shields. This characteristic difference was related with the fractions of un-scattered and shield-scattered components. A body-shield could be as effective as an end-shield if a good geometrical condition was kept with sufficient shield thickness.
Key concepts: Shields, Shield, Imaging phantom, Electromagnetic shielding, Monte Carlo method, Field (mathematics), Physics, Shielding effect