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首页> 外文期刊>Journal of the Korean Physical Society >A Study on Change in the Center Frequency Depending on the Fat Content and on Change in the Fat Saturation Image with the Use of a Self-manufactured Phantom Depending on the Center Frequency Adjustment Method in an MRI Breast Scan
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A Study on Change in the Center Frequency Depending on the Fat Content and on Change in the Fat Saturation Image with the Use of a Self-manufactured Phantom Depending on the Center Frequency Adjustment Method in an MRI Breast Scan

机译:使用自行制作的幻像根据中心频率调整方法在MRI乳腺扫描中根据脂肪含量改变中心频率并根据饱和度图像改变脂肪饱和度的研究

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This study examined the changes in the center frequency according to the fat content the using a self-manufactured phantom. In addition, the change in the fat saturation image according to when the center frequency was applied automatically or adjusted manually was analyzed to determine the importance of a manual adjustment of the center frequency. Distilled water and animal fat were solidified in a 10-ml syringe to manufacture nine phantoms for each condition (18 in total). A MR scanner at 1.5 Tesla was used to obtain a T1-weighted three dimensional fast low-angle shot (T1 3D FLASH) dynamic fat saturation image according to the spectral attenuated inversion recovery(SPAIR) method. The images obtained were classified into the following before analyzing the center frequencies for each image: Test A (image where fat was not saturated), Test B (image where fat was saturated in an automatic adjustment of the center frequency), and Test C (image where fat was saturated in a manual adjustment of the center frequency). The signal intensity (SI) values of water, fat and background were measured to calculate the signal to noise ratio (SNR) before examining the difference in the SNRs of water and fat (SNR difference = water SNR - fat SNR). The mean center frequency in Tests A, B and C was 63.631179 MHz when the fat content was 70% or lower. The mean center frequency for Tests A and B was 63.631002 MHz when the fat content was 80% or higher, which was 226 Hz lower than that for Test C (63.631228 MHz). The water SIs of Tests A, B and C with increasing fat content showed a pattern of change similar to that of the fat SIs of Tests A and C. On the other hand, the fat SI of Test B was similar to that of Test A when the fat content was 80%, which showed a large difference in change. The water SNRs of Tests A, B and C, and the fat SNR and SNR differences of Tests A and C showed similar changes according to the fat content. The difference between the fat SNR and the SNR of Test B was similar to that of Test A when the fat content was 80%.
机译:这项研究使用自制的体模检查了中心频率根据脂肪含量的变化。另外,分析了根据自动施加中心频率或手动调整中心频率时的脂肪饱和度图像的变化,以确定手动调整中心频率的重要性。将蒸馏水和动物脂肪在10毫升注射器中固化,以针对每种情况制造9个幻影(共18个)。根据频谱衰减反转恢复(SPAIR)方法,使用1.5特斯拉的MR扫描仪获得T1加权的三维快速低角度拍摄(T1 3D FLASH)动态脂肪饱和图像。在分析每个图像的中心频率之前,将获得的图像分为以下几类:测试A(脂肪未饱和的图像),测试B(通过自动调整中心频率使脂肪饱和的图像)和测试C(手动调整中心频率后脂肪饱和的图像)。测量水,脂肪和背景的信号强度(SI)值,以计算信噪比(SNR),然后检查水和脂肪的SNR差异(SNR差异=水SNR-脂肪SNR)。当脂肪含量为70%或更低时,测试A,B和C的平均中心频率为63.631179 MHz。当脂肪含量为80%或更高时,测试A和B的平均中心频率为63.631002 MHz,比测试C的平均中心频率(63.631228 MHz)低226 Hz。脂肪含量增加的测试A,B和C的水SI的变化规律与测试A和C的脂肪SI相似。另一方面,测试B的脂肪SI与测试A相似当脂肪含量为80%时,变化变化很大。试验A,B和C的水SNR和试验A和C的脂肪SNR和SNR差异根据脂肪含量显示相似的变化。当脂肪含量为80%时,脂肪SNR和测试B的SNR之间的差异与测试A相似。

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