首页> 外文期刊>Acta Radiologica >Efficient use of automatic exposure control systems in computed tomography requires correct patient positioning.
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Efficient use of automatic exposure control systems in computed tomography requires correct patient positioning.

机译:在计算机断层扫描中有效使用自动曝光控制系统需要正确的患者定位。

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BACKGROUND: Image quality and radiation dose to the patient are important factors in computed tomography (CT). To provide constant image quality, tube current modulation (TCM) performed by automatic exposure control (AEC) adjusts the tube current to the patient's size and shape. PURPOSE: To evaluate the effects of patient centering on tube current-time product (mAs) and image noise. MATERIAL AND METHODS: An oval-shaped acrylic phantom was scanned in various off-center positions, at 30-mm intervals within a 500-mm field of view, using three different CT scanners. Acquisition parameters were similar to routine abdomen examinations at each site. The mAs was recorded and noise measured in the images. The correlation of mAs and noise with position was calculated using Pearson correlation. RESULTS: In all three scanners, the mAs delivered by the AEC changed with y-position of the phantom (P<0.001), with correlation values of 0.98 for scanners A and B and -0.98 for scanner C. With x-position, mAs changes were 4.9% or less. As the phantom moved into the y-positions, compared with the iso-center, the mAs varied by up to +70%, -34%, and +56% in scanners A, B, and C, respectively. For scanners A and B, noise in two regions of interest in the lower part of the phantom decreased with elevation, with correlation factors from -0.95 to -0.86 (P<0.02). In the x-direction, significant noise relationships (P<0.005) were only seen in scanner A. CONCLUSION: This study demonstrates that patient centering markedly affects the efficacy of AEC function and that tube current changes vary between scanners. Tube position when acquiring the scout projection radiograph is decisive for the direction of the mAs change. Off-center patient positions cause errors in tube current modulation that can outweigh the dose reduction gained by AEC use, and image quality is affected.
机译:背景:图像质量和对患者的辐射剂量是计算机断层扫描(CT)的重要因素。为了提供恒定的图像质量,通过自动曝光控制(AEC)执行的电子管电流调制(TCM)可以将电子管电流调整到患者的体形和体形。目的:评估以患者为中心的影响,以显像管电流时间乘积(mAs)和图像噪声为准。材料和方法:使用三个不同的CT扫描仪,在500mm视野内以30mm的间隔在各种偏心位置上扫描了一个椭圆形的丙烯酸模型。采集参数与每个部位的常规腹部检查相似。记录mAs并在图像中测量噪声。使用皮尔森相关性计算mAs和噪声与位置的相关性。结果:在所有三台扫描仪中,AEC传递的mAs都随着体模的y位置而变化(P <0.001),扫描仪A和B的相关值为0.98,扫描仪C的相关值为-0.98。在x位置,mAs变化不超过4.9%。当幻像移到y位置时,与等中心点相比,扫描仪A,B和C中的mAs分别变化高达+70%,-34%和+ 56%。对于扫描仪A和B,体模下部两个感兴趣区域中的噪声随高度降低而降低,相关因子从-0.95到-0.86(P <0.02)。在x方向上,仅在扫描仪A中观察到显着的噪声关系(P <0.005)。结论:这项研究表明,患者居中会明显影响AEC功能的功效,并且扫描仪之间的管电流变化会有所不同。采集侦查投影射线照片时的管位置对于mAs变化的方向至关重要。偏离中心的患者位置会引起电子管电流调制错误,其误差可能超过使用AEC所获得的剂量减少量,并且图像质量会受到影响。

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