首页> 外文会议>Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE >Evaluation of velocity measurements for keyhole imaging combined phase contrast MR angiography
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Evaluation of velocity measurements for keyhole imaging combined phase contrast MR angiography

机译:锁孔成像结合相衬MR血管造影的速度测量评估

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Phase Contrast MR Angiography (PC MRA) is excellent MRA technique for measuring the velocity of vessels in the human body. PC MRA need to at least 4 images for angiogram reconstruction and it caused longer scan time. Therefore, we used keyhole imaging combined PC MRA to reduce the scan time. However, keyhole imaging can lead the erroneous effects as loss of phase information or frequency discontinuous. In this study, we applied the keyhole imaging combined 2D PC MRA for improving the temporal resolution and also measured the velocity to evaluate the accuracy of phase information. We used 0.32T MRI scanner (MagfinderII, Genpia, Korea). Using the 2D PC MRA pulse sequence, the vascular images for a human brain targeted on the Superior Sagittal Sinus (SSS) were obtained. We applied tukey window function for keyhole images to minimize the ringing artifact and erroneous factors that are induced frequency discontinuous and phase information loss. We also applied zero-padded algorithm to peripheral missing k-space lines to compare keyhole imaging results and the artifact power (AP) value was measured on the complex difference images to validate the image quality. Consider as based on our results, heavy image distortions and artifacts were shown until using at least 50% keyhole factor. Using above the 50% keyhole factors are shown well reconstructed and matched for magnitude images and velocity information measurements. In conclusion, we confirmed the image quality and velocity information of keyhole technique combined 2D PC MRA. Especially, velocity information were measured similar to the full sampled k-space image despite of frequency discontinuous and phase information loss in the keyhole imaging reconstruction process. Consequently, the keyhole imaging combined 2D PC MRA will give some clinical usefulness and advantages as improving the temporal resolution and measuring the velocity information via selecting the appropriate keyhole factor at low tesla MRI system.
机译:相衬MR血管造影(PC MRA)是一种出色的MRA技术,可用于测量人体血管的速度。 PC MRA至少需要4幅图像才能进行血管造影重建,并且扫描时间更长。因此,我们使用锁孔成像结合PC MRA来减少扫描时间。但是,锁孔成像会由于相位信息丢失或频率不连续而导致错误的结果。在这项研究中,我们应用了结合2D PC MRA的锁孔成像技术来改善时间分辨率,并测量了速度以评估相位信息的准确性。我们使用0.32T MRI扫描仪(MagfinderII,Genpia,韩国)。使用2D PC MRA脉冲序列,获得了针对上矢状窦(SSS)的人脑的血管图像。我们为钥匙孔图像应用了tukey窗口功能,以最大程度地减少振铃伪影和错误因素,这些因素是引起频率不连续和相位信息丢失的原因。我们还对外围缺失的k空间线应用了零填充算法,以比较钥匙孔成像结果,并在复杂差异图像上测量了伪像功率(AP)值,以验证图像质量。考虑到根据我们的结果,直到使用至少50%的锁眼系数,才显示出严重的图像失真和伪影。使用50%以上的钥匙孔因子可以很好地重建和匹配,以进行幅值图像和速度信息测量。总之,我们确认了结合2D PC MRA的锁孔技术的图像质量和速度信息。尤其是,尽管在钥匙孔成像重建过程中出现了频率不连续和相位信息丢失的情况,但仍与全采样k空间图像相似地测量了速度信息。因此,通过在低特斯拉MRI系统中选择合适的锁孔系数,将锁孔成像与2D PC MRA结合起来将具有一定的临床实用性和优势,如改善时间分辨率和测量速度信息。

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