Impact of the anode tilt on photon emission spectrum and temperature rise in an x-ray tube

Author:

Ou hadda HassanORCID,Zerfaoui Mustapha,Bahhous KarimORCID,Aboulbanine ZakariaORCID,Didi SamirORCID,Rrhioua AbdeslemORCID,Bakari Dikra

Abstract

Abstract In radiology, the photon fluence and the energy spectrum generated from an x-ray tube may depend on the anode tilt angle. In this contribution, a Monte Carlo investigation is performed to quantify this effect by modeling an x-ray tube based on published data Bujila R. et al (2020 Physica. Med. 75 44–54). The GATE simulation code is used for this purpose. The calculations have moreover confirmed this dependence; the tilt of the anode could be used to increase the photon fluence. The thermal analysis has shown that the hot spot size is dependent as well on the anode tilt angle. The thermal focus temperature (ΔT) decreases when the anode tilt angle increases. Finally, by moving the acquisition angle from 293°–337° to 248°–292° and changing the anode tilt angle from 8° to 28°, the photon fluence can be increased by 55%.

Publisher

IOP Publishing

Subject

General Nursing

Reference28 articles.

1. A validation of spekpy: a software toolkit for modelling x-ray tube spectra;Bujila;Physica. Med.,2020

2. Review of x-ray flow visualization with applications to multiphase flows;Theodore;J. Fluids Eng.,2011

3. Low radiation x-rays: benefiting people globally by reducing cancer risks;Mak;Int. J. Med. Sci.,2021

4. Patient dosimetry for x-rays used in medical imaging;Zoetelief;Journal of the ICRU,2005

5. Comparison of simulated and measured spectra from an x-ray tube for the energies between 20 and 35 kev;Yücel;Nucl. Instrum. Methods Phys. Res., Sect. A,2015

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