Sookpeng Supawitoo, Butdee Chitsanupong
Department of Radiological Technology, Faculty of Allied Health Sciences, Naresuan University, Phitsanulok, 65000, Thailand.
Emerg Radiol. 2017 Jun;24(3):233-239. doi: 10.1007/s10140-016-1470-6. Epub 2016 Dec 2.
The study aimed to evaluate the image quality in terms of signal-to-noise ratio (SNR) and dose to the lens of the eye and the other nearby organs from the CT brain scan using an automatic tube current modulation (ATCM) system with or without CT gantry tilt is needed.
An anthropomorphic phantom was scanned with different settings including use of different ATCM, fixed tube current time product (mAs) settings and degree angles of gantry tilt. Gafchromic film XR-QA2 was used to measure absorbed dose of the organs. Relative doses and SNR for the various scan settings were compared with the reference setting of the fixed 330 mAs.
Average absorbed dose for the lens of the eyes varied from 8.7 to 21.7 mGy. The use of the ATCM system with the gantry tilt resulted in up to 60% decrease in the dose to the lens of the eye. SNR significantly decreased while tilting the gantry using the fixed mAs techniques, compared to that of the reference setting. However, there were no statistical significant differences for SNRs between the reference setting and all ATCM settings.
Compared to the reference setting of the fixed effective mAs, using the ATCM system and appropriate tilting, the gantry resulted in a substantial decrease in the dose to the lens of the eye while preserving signal-to-noise ratio. CT brain examination should be carefully controlled to optimize dose for lens of the eye and image quality of the examination.
本研究旨在评估使用或不使用CT扫描架倾斜的自动管电流调制(ATCM)系统进行CT脑部扫描时,图像在信噪比(SNR)方面的质量以及眼部晶状体和其他附近器官所接受的剂量。
使用不同的设置对一个仿真人体模型进行扫描,包括使用不同的ATCM、固定管电流时间乘积(mAs)设置以及扫描架倾斜的角度。使用Gafchromic XR-QA2胶片测量各器官的吸收剂量。将各种扫描设置下的相对剂量和SNR与固定330 mAs的参考设置进行比较。
眼部晶状体的平均吸收剂量在8.7至21.7 mGy之间变化。使用带有扫描架倾斜的ATCM系统可使眼部晶状体的剂量降低多达60%。与参考设置相比,使用固定mAs技术倾斜扫描架时SNR显著降低。然而,参考设置与所有ATCM设置之间的SNR没有统计学上的显著差异。
与固定有效mAs的参考设置相比,使用ATCM系统并进行适当倾斜,扫描架可在保持信噪比的同时大幅降低眼部晶状体的剂量。CT脑部检查应仔细控制,以优化眼部晶状体的剂量和检查的图像质量。