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基于新器官的管电流调制方法可降低头颅 CT 检查的辐射剂量:在体模研究中评估图像质量和眼部辐射剂量。

New organ-based tube current modulation method to reduce the radiation dose during computed tomography of the head: evaluation of image quality and radiation dose to the eyes in the phantom study.

机构信息

Department of Radiologic Technology, Chungbuk Health & Science University, Cheongju, Chungcheongbuk-do, 28150, Republic of Korea.

Department of Radiologic Technology, Daegu Health College, Daegu, 41453, Republic of Korea.

出版信息

Radiol Med. 2017 Aug;122(8):601-608. doi: 10.1007/s11547-017-0755-5. Epub 2017 Mar 24.

Abstract

A new organ-based tube current modulation (NOB-TCM) method was designed with the intent to decrease tube current by 30% over a prescribed 90° radial arc across the anterior aspect of the radiosensitive organ, without increasing tube current in the remaining radial arc. We compared a reference scan and five other dose-reducing methods with regard to effects on dose, practicality, and image quality to determine the most effective method for the reduction of the radiation dose to the eyes during CT examinations of the head. We compared the radiation doses to the eyes and physical image quality in different regions of interest for TCM and shielding scans. Three types of TCM scans were performed: longitudinal TCM, angular TCM, and NOB-TCM. A bismuth sheet and lead goggles were each applied for the shielding scan. Relative to the reference scan, the dose to the eye was reduced to 25.88% with NOB-TCM, 44.53% with lead goggles, and 36.91% with a bismuth shield. Relative to the reference scan, the mean signal-to-noise ratio (SNR) was decreased to 8.02% with NOB-TCM, 28.36% with lead goggles, and 32.95% with the bismuth shield. The SNR of the anterior region of interest was decreased to 11.89% with NOB-TCM and 87.89% with the bismuth shield. The average figure of merit was increased by 11.7% with longitudinal TCM and 13.39% with NOB-TCM, compared with the reference scan. NOB-TCM is a superior solution for head CT, including the orbital area, due to the reduction in radiation exposure without significant loss in image quality.

摘要

一种新的基于器官的管电流调制(NOB-TCM)方法被设计用于在前辐射敏感器官的 90°辐射弧上降低 30%的管电流,而不在其余辐射弧上增加管电流。我们比较了参考扫描和其他五种降低剂量的方法,以确定在头部 CT 检查中降低眼部辐射剂量的最有效方法,比较了 TCM 和屏蔽扫描对剂量、实用性和图像质量的影响。我们比较了 TCM 和屏蔽扫描在不同感兴趣区的眼部辐射剂量和物理图像质量。进行了三种类型的 TCM 扫描:纵向 TCM、角度 TCM 和 NOB-TCM。对于屏蔽扫描,分别应用了铋片和铅眼罩。与参考扫描相比,NOB-TCM 可将眼部剂量降低 25.88%,铅眼罩降低 44.53%,铋屏蔽降低 36.91%。与参考扫描相比,NOB-TCM 使平均信噪比(SNR)降低至 8.02%,铅眼罩降低至 28.36%,铋屏蔽降低至 32.95%。NOB-TCM 使前区兴趣区的 SNR 降低至 11.89%,铋屏蔽降低至 87.89%。与参考扫描相比,纵向 TCM 和 NOB-TCM 的平均性能系数分别提高了 11.7%和 13.39%。NOB-TCM 是一种优于头部 CT 的方法,包括眶区,因为它在不显著降低图像质量的情况下降低了辐射暴露。

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