Analisis SNR pada Variasi Reduction Factor Sensitivity Encoding MRI Brain Sekuens DWI Axial

Herna Utami, Fani Susanto, Arga Pratama Rahardian, Muhammad Erfansyah
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Abstract

Backgroud: Brain MRI examination generally has a long scanning time because many protocols that must be used, one of them is DWI sequences, which are sequences that can provide pathological information on the brain. One way to reduce scan time is to use parallel imaging sensitivity encoding (SENSE) techniques. SENSE utilizing the spatial information RF coil phased array to reduce the acquisition time by reducing the number of sampling lines K space therefore produce quality and good spatial resolution, but its has the limitations, namely the reduction of SNR. The purpose of this research was to analyze in SNR on  the variations of SENSE value in MRI brain DWI axial slices.Methods: This research is a quantitative study with an experimental approach in 15 patients MRI Brain. Data was taken by calculating the SNR value for the region of interest (ROI) in cortex cerebri, basal ganglia, thalamus, pons and cerebellum, and then ROI in noise background. Data was analyzed through Repeated Measures Anova test by comparing the differences in SNR values obtained in MRI brain DWI axial between the use of various SENSE values, that are 2.0; 3.0 and 4.0.Results: MRI image of DWI axial brain sequence with variation of reduction factor 2.0; 3.0 and 4.0 cause different SNR values. The highest SNR is found in the variation of 2.0 and the lowest value is 4.0 but the scan time is fastest at the 4.0 variation This is because there is a reduction in the phase encoding line in the K-space on each image using SENSE and the higher the reduction factor, the higher the reduction factor. SNR will decrease.Conclusion: The higher the value of SENSE variations will decrease the SNR value but the scan time is faster.
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信噪比和方差还原因子敏感性编码MRI脑Sekuens DWI轴分析
背景:脑MRI检查通常有很长的扫描时间,因为必须使用许多协议,其中之一是DWI序列,这是一种可以提供大脑病理信息的序列。减少扫描时间的一种方法是采用并行成像灵敏度编码(SENSE)技术。SENSE利用射频线圈相控阵的空间信息通过减少K空间的采样线数来减少采集时间,从而产生高质量和良好的空间分辨率,但其存在局限性,即信噪比的降低。本研究的目的是在信噪比下分析MRI脑DWI轴向片SENSE值的变化。方法:对15例脑MRI患者进行定量实验研究。通过计算大脑皮层、基底节区、丘脑、脑桥和小脑感兴趣区域(ROI)的信噪比值,然后计算噪声背景下的ROI。通过重复测量方差检验,比较不同感官值在MRI脑DWI轴上获得的信噪比值的差异,对数据进行分析,信噪比值为2.0;3.0和4.0。结果:DWI轴向脑序列MRI图像,缩小因子变化2.0;3.0和4.0产生不同的信噪比值。最高的信噪比是在2.0的变化中发现的,最低的值是4.0,但是扫描时间在4.0的变化中是最快的,这是因为在使用SENSE的每个图像上的k空间中的相位编码线减少了,并且减少系数越高,减少系数越高。信噪比会降低。结论:SENSE变化率越大,信噪比值越低,但扫描时间越快。
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