| Literature DB >> 24826066 |
V Bogdan Neculaes1, Yun Zou1, Peter Zavodszky1, Louis Inzinna1, Xi Zhang1, Kenneth Conway1, Antonio Caiafa1, Kristopher Frutschy1, William Waters1, Bruno De Man1.
Abstract
A novel electron beam focusing scheme for medical X-ray sources is described in this paper. Most vacuum based medical X-ray sources today employ a tungsten filament operated in temperature limited regime, with electrostatic focusing tabs for limited range beam optics. This paper presents the electron beam optics designed for the first distributed X-ray source in the world for Computed Tomography (CT) applications. This distributed source includes 32 electron beamlets in a common vacuum chamber, with 32 circular dispenser cathodes operated in space charge limited regime, where the initial circular beam is transformed into an elliptical beam before being collected at the anode. The electron beam optics designed and validated here are at the heart of the first Inverse Geometry CT system, with potential benefits in terms of improved image quality and dramatic X-ray dose reduction for the patient.Entities:
Year: 2014 PMID: 24826066 PMCID: PMC4008761 DOI: 10.1063/1.4872033
Source DB: PubMed Journal: Phys Plasmas ISSN: 1070-664X Impact factor: 2.023