X-ray image chain synchronization control scheme design and performance evaluation

Author:

Feng Mingjie,Chen Bin,Kong Lingyi,Wang Fei,Liu Zhaobang

Abstract

Abstract This paper describes the working principle of the image chain’s imaging system and analyzes the two imaging modes of the X-ray source as well as the two synchronization modes of the flat panel detector, with the goal of completing the design of the image chain’s system imaging. Two schemes of synchronous control of the image chain, hardware control and software control, are achieved on the basis of the design of the image chain’s imaging system. According to the experimental results, the hardware synchronization control, in comparison with the software synchronization control, enormously reduces the X-ray radiation time and the radiation received by the object as well as generating a lower CPU occupancy rate, which improves the safety of the performance of the image chain imaging system. Therefore, it can be concluded that hardware synchronization control is safer and more practical than software synchronization control. Lightweight cone-beam CT can be developed for use in mobile field hospitals and intensive care units to reduce the difficulty of doctors’ operations.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference15 articles.

1. Development and operation of a prototype cone-beam computed tomography system for X-ray medical imaging;Seo;Journal of the Korean Physical Society,2014

2. Small animal imaging using a flat panel detector-based cone beam computed tomography (FPD-CBCT) imaging system[C]//Medical Imaging 2005: Physics of Medical Imaging;Conover;International Society for Optics and Photonics,2005

3. Occlusal caries depth measurements obtained by five different imaging modalities[J];Kamburoğlu;Journal of digital imaging,2011

4. Accuracy of segmentation of tooth structures using 3 different CBCT machines[J];Shaheen;Oral surgery, oral medicine, oral pathology and oral radiology,2017

5. Using a flat-panel detector in high resolution cone beam CT for dental imaging[J];Baba;Dentomaxillofacial radiology,2004

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