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Effects of Variations in Imaging Parameters on Image Quality of Non Contrast Computed Tomography Scans of Brain: A Cross-sectional Study

机译:成像参数变化对脑非对比计算断层扫描的图像质量的影响:横截面研究

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The radiation dose absorbed during Computed Tomography (CT) investigation of the head, which could be reduced by altering the scan parameters, is of great concern considering the radiosensitive organs around this region.Aim: To investigate the relationship between variations in scan parameters and image quality in brain CT scanning.Materials and Methods: This was an experimental crosssectional study conducted at a private diagnostic clinic in Enugu State, Nigeria, from September 2018 to February 2019 with a total sample size of 150. All adult patients who reported at the centre for non contrast CT of brain during the study period {but not limited to participants with Anteroposterior Circumference Diameter (APCD) 170-180 cm of brain} were selected using consecutive sampling method. The samples was divided into three groups, a control group and two experimental groups. Scan parameters such as kilovolts (kV), milliamperes (mA) and Gantry Rotation Time (GRT) varied across the three groups studied and the corresponding image parameters such as image noise, Contrast to Noise Ratio (CNR) and Signal to Noise Ratio (SNR) were obtained and statistically analysed using both descriptive and inferential statistics.Results: There were statistically significant correlations of image parameters with scan parameters Group I (control): (CNR: r=0.857, p-value <0.001; Image noise: r=0.206, p-value=0.125, and SNR: r=0.875, p-value <0.001) (CNR: r=0.857, p-value <0.001; Image noise: r=0.211, p=0.115 and Image noise: r=- 0.164, p-value=0.124 and SNR: r=0.880, p-value <0.001) for mA and kV, respectively. Group II (CNR: r=0.744, p-value<0.001, Image noise: r=0.521, p-value=0.024, and SNR: r=0.765, p-value <0.001), (CNR=r=0.761, p-value <0.001, Image noise: r=0.241, p-value=0.011 and SNR: r=0.780, p-value p=0.024) for mA and GRT, respectively. Group III (CNR: r=0.684, p-value=0.032; Image noise: r=0.646, p-value=0.032 and SNR: r=0.664, p-value=0.001) for mA. There was statistically significant relationship between scan parameters and radiation does parameters across all the sub groups at p-value<0.05.Conclusion: Altering the scan parameters (mA, kV and GRT) during CT brain investigation has tremendous effects on the image quality, particularly on the image noise and also on the radiation dose received by the patients.
机译:通过改变扫描参数可以减少的计算机断层扫描(CT)调查期间吸收的辐射剂量是考虑到该区域周围的放射敏的器官的重要关注。探讨扫描参数和图像的变化之间的关系脑CT扫描中的质量。材料和方法:这是在尼日利亚尼日利亚镇埃尤州私人诊断诊所进行的实验循环研究,从2018年9月到2019年2月,总样本大小为150.所有在中心报告的成年患者对于在研究期间脑的非对比度CT {但不限于使用连续采样方法选择170-180cm的前圆周直径(APCD)的参与者。将样品分为三组,对照组和两组实验组。扫描参数如千伏(KV),毫安(MA)和龙门旋转时间(GRT)在研究的三个组上变化,以及诸如图像噪声的相应图像参数,与噪声比(CNR)对比(CNR)和信噪比(SNR使用描述性和推理统计数据获得并统计分析0.206,p值= 0.125和SNR:r = 0.875,p值<0.001)(CNR:r = 0.857,p值<0.001;图像噪声:r = 0.211,p = 0.115和图像噪声:r = - MA和KV分别为0.164,p值= 0.124和SNR:r = 0.880,p值<0.001)。第II组(CNR:r = 0.744,P值<0.001,图像噪声:r = 0.521,p值= 0.024和SNR:r = 0.765,p值<0.001),(CNR = r = 0.761,p -Value <0.001,图像噪声:r = 0.241,p值= 0.011和SNR:r = 0.780,对于MA和GRT的r = 0.780,p值P = 0.024)。第三组(CNR:r = 0.684,p值= 0.032;图像噪声:r = 0.646,p值= 0.032和SNR:r = 0.664,p值= 0.001)。扫描参数和辐射之间存在统计学上的关系,在P值<0.05的所有子组之间进行参数。结论:在CT脑调查期间改变扫描参数(MA,KV和GRT)对图像质量有巨大影响,特别是在图像噪声和患者接收的辐射剂量上。

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