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在神经成像中使用感兴趣区域(ROI)衰减器降低眼晶状体剂量

Eye-Lens Dose Reduction using Region of Interest (ROI) Attenuators in Neuroimaging.

作者信息

Orji Martina P, Guo Chao, Xiong Zhenyu, Nagesh S V Setlur, Rudin Stephen, Bednarek Daniel R

机构信息

University at Buffalo, Canon Stroke and Vascular Research Center, Buffalo, NY, USA.

Cedars Sinai Medical Center, S. Mark Taper Foundation Imaging Center, Los Angeles, CA, USA.

出版信息

Proc SPIE Int Soc Opt Eng. 2023 Feb;12463. doi: 10.1117/12.2653984. Epub 2023 Apr 7.

Abstract

Lens dose can be high during neuro-interventional procedures, increasing the risk of cataractogenesis. Although beam collimation can be effective in reducing lens dose, it also restricts the FOV. ROI imaging with a reduced-dose peripheral field permits full-field information with reduced lens dose. This work investigates the magnitude of lens-dose reduction possible with ROI imaging. EGSnrc Monte-Carlo calculations of lens dose were made for the Zubal head phantom as a function of gantry angulation and head shift from isocenter for both large and small FOV's. The lens dose for ROI attenuators of varying transmission was simulated as the weighted sum of the lens dose from the small ROI FOV and that from the attenuated larger FOV. Image intensity and quantum mottle differences between ROI and periphery can be equalized by image processing. The lens dose varies considerably with beam angle, head shift, and field size. For both eyes, the lens-dose reduction with an ROI attenuator increases with LAO angulation, being highest for lateral projections and lowest for PA. For an attenuator with small ROI field (5 × 5 cm) and 20% transmission, the lens dose for lateral projections is reduced by about 75% compared to a full dose 10 ×10 cm FOV, while the reduction ranges between 30 and 40% for PA projections. Use of ROI attenuators can substantially reduce the dose to the lens of the eye for all gantry angles and head shifts, while allowing peripheral information to be seen in a larger FOV.

摘要

在神经介入手术过程中,晶状体剂量可能会很高,从而增加白内障形成的风险。尽管束准直在降低晶状体剂量方面可能有效,但它也会限制视野。使用低剂量周边视野的感兴趣区域(ROI)成像可在减少晶状体剂量的同时提供全视野信息。这项工作研究了通过ROI成像实现晶状体剂量降低的幅度。针对Zubal头部模型,根据机架角度和头部相对于等中心的偏移,对大视野和小视野情况下的晶状体剂量进行了EGSnrc蒙特卡罗计算。模拟了不同透射率的ROI衰减器的晶状体剂量,将其作为小ROI视野和衰减后的大视野的晶状体剂量的加权和。通过图像处理可以均衡ROI和周边区域之间的图像强度和量子斑点差异。晶状体剂量随束角、头部偏移和视野大小而有很大变化。对于双眼,使用ROI衰减器时,晶状体剂量降低幅度随左前斜(LAO)角度增加,在侧位投影时最高,在后前位(PA)时最低。对于具有小ROI视野(5×5厘米)和20%透射率的衰减器,与全剂量10×10厘米视野相比,侧位投影的晶状体剂量降低约75%,而PA投影的降低幅度在30%至40%之间。在所有机架角度和头部偏移情况下,使用ROI衰减器均可大幅降低眼部晶状体的剂量,同时还能在更大的视野中看到周边信息。

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Radiation and cataract.辐射与白内障。
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