多回波磁共振成像,multi-echo magnetic resonance imaging
1)multi-echo magnetic resonance imaging多回波磁共振成像
2)T2~*-weighted gradient echo MRI梯度回波磁共振成像
3)Magnetic resonance spectroscopy磁共振波谱成像
1.Magnetic resonance spectroscopy is a method analyzing specifically atomic nucleus and their compound, which utilizes the magnetic resonance phenomena and chemical shift.磁共振波谱成像是利用核磁共振现象和化学位移作用,进行特定原子核及其化合物定量分析的方法。
2.Magnetic resonance spectroscopy (MRS) has been widely used in central nervous system and other organs.磁共振波谱成像已广泛应用于中枢神经系统及其以外多个组织、器官疾病的诊断与鉴别。
3.ObjectsMagnetic resonance spectroscopy (MRS), based on the magnetic resonance principles and chemical shift effect, is a noninvasive technique that provides the biochemical information and metabolic status of organs in vivo.目的 磁共振波谱成像(Magnetic resonance spectroscopy,MRS)利用磁共振现象和化学位移作用对特定原子核及其化合物进行分析,是无损伤地研究活体组织生化代谢的一种新技术。
英文短句/例句

1.Theory and Reconstruction Method of Parallel Magnetic Resonance Spectroscopic Imaging;并行磁共振波谱成像理论及图像重建方法研究
2.Applications of MR Spectroscopic Imaging and Diffusion Tension Imaging in Traumatic Brain Injury;磁共振波谱成像及磁共振弥散张量成像在外伤性脑损伤的应用研究
3.Relative Study of Proton Magnetic Resonance Spectroscopy(~1H-MRS) and Neuropsychology Test for Alzheimer s Disease(AD);Alzheimer病患者磁共振波谱成像与神经心理学的相关性研究
4.Magnetic resonance spectroscopy study on the edema post cerebral hemorrhage and correlating factors脑出血后脑水肿的磁共振波谱成像及相关因素的分析
5.Diagnosis of Cerebri Gliomatosis with Magnetic Resonance Image and Magnetic Resonance Spectroscopy大脑胶质瘤病的核磁共振成像及核磁波谱成像
6.Application of magnetic resonance imaging and hydrogen proton magnetic resonance spectroscopy in manganese neurotoxicity research磁共振成像和氢质子磁共振波谱在锰神经毒性研究中的应用
7.MRI and MRS Findings of Chronic Hepatic Encephalopathy慢性肝性脑病的磁共振成像及其波谱表现
8.MRI,DWI and ~1H-MRS features of viral encephalitis:report of 36 cases病毒性脑炎的核磁共振成像、扩散加权成像和质子MR波谱表现
9.Effects of Mastication on Brain Function Studied with Magnetic Resonance Spectroscopy and Functional Magnetic Resonance Imaging;咀嚼运动对脑功能影响的磁共振波谱和功能性核磁成像研究
10.continuous wave NMR spectrometer连续波核磁共振波谱仪
11.pulsed-wave NMR spectrometer脉冲波核磁共振波谱仪
12.persistent wave NMR spectroscope边疆波核磁共振波谱仪
13.Experimental Study of Blood Biochemiology, MR Diffusion Weighted Imaging and Proton MR Spectroscopy in Liver Fibrosis;血液生化学、磁共振弥散加权成像和~1H磁共振波谱分析在肝纤维化中的实验研究
14.The Study of the Value of ~1HMRS and DWI in Acute Cerebral Infarction;质子磁共振波谱和弥散加权成像在急性脑梗死中的应用
15.A Proton Magnetic Resonance Spectroscopy Imaging Study on Prefrontal Lobe and Hippocampus in Anxiety Disorder;焦虑症患者前额叶、海马磁共振质子波谱成像的研究
16.A Proton Magnetic Resonance Spectroscopy Imaging Study on Prefrontal Lobe and Hippocampus in Adolescence-onset Schizophrenia;青少年精神分裂症患者前额叶、海马磁共振质子波谱成像的研究
17.A Proton Magnetic Resonance Spectroscopy Imaging Study on Prefrontal Lobe and Hippocampus in Patients with Obsessive-compulsive Disorder;强迫症患者前额叶、海马磁共振质子波谱成像的研究
18.Experimental Study of Proton Magnetic Resonance Spectroscopy and Diffusion Weighted Imaging in Traumatic Brain Injury;创伤性脑损伤的质子磁共振波谱及弥散加权成像实验研究
相关短句/例句

T2~*-weighted gradient echo MRI梯度回波磁共振成像
3)Magnetic resonance spectroscopy磁共振波谱成像
1.Magnetic resonance spectroscopy is a method analyzing specifically atomic nucleus and their compound, which utilizes the magnetic resonance phenomena and chemical shift.磁共振波谱成像是利用核磁共振现象和化学位移作用,进行特定原子核及其化合物定量分析的方法。
2.Magnetic resonance spectroscopy (MRS) has been widely used in central nervous system and other organs.磁共振波谱成像已广泛应用于中枢神经系统及其以外多个组织、器官疾病的诊断与鉴别。
3.ObjectsMagnetic resonance spectroscopy (MRS), based on the magnetic resonance principles and chemical shift effect, is a noninvasive technique that provides the biochemical information and metabolic status of organs in vivo.目的 磁共振波谱成像(Magnetic resonance spectroscopy,MRS)利用磁共振现象和化学位移作用对特定原子核及其化合物进行分析,是无损伤地研究活体组织生化代谢的一种新技术。
4)magnetic resonance imaging/spectroscopy磁共振成像/波谱分析
5)Magnetic resonance spectroscopic imaging核磁共振波谱成像
6)proton MR spectroscopic imaging氢质子磁共振波谱成像
延伸阅读

磁共振成像磁共振成像magneticresonanceimaging利用人体组织中某种原子核的核磁共振现象,将所得射频信号经过电子计算机处理,重建出人体某一层面的图像的诊断技术。又称核磁共振成像术。英文简称MRI。磁共振成像的胸部显影片MRI在临床上主要用于以下部位:①头部。可清晰分辨脑灰质和白质,对多发性硬化等一类脱髓鞘病优于CT。对脑外伤、脑出血、脑梗塞、脑肿瘤等同CT类似,但可显示CT为等密度的硬膜下血肿。脑梗塞或脑肿瘤的早期,CT不能查出,而MRI有可能显示。对钙化和脑膜瘤显示不好。脑干及小脑病变的MRI图像由于没有伪影是首选检查方法。②脊柱。不需要造影剂就能清晰区分脊髓、硬膜囊和硬膜外脂肪。对肿瘤、脊髓空洞症、脱髓鞘病变等均有较高诊断价值。显示骨折或脱位不如常规X射线或CT,但能观察脊髓损伤情况。显示椎间盘较好,可以分辨纤维环和髓核,特别是矢状面图像可以同时显示多个椎间盘突出。③四肢。对骨质本身病变显示不如常规X射线或CT。对软组织及肌肉病变包括肿瘤及炎症都能清晰显示,特别是对早期急性骨髓炎,是一种灵敏度很高的检查方法。也是检查膝关节半月板病变的首选方法。④盆腔。对直肠及泌尿生殖系统优于CT,无辐射损害,特别适用于孕妇及胎儿检查。⑤胸部。对肺的检查不如常规X射线,对纵隔检查则优于CT,不用造影剂即可分辨纵隔血管和肿物,也是一项有价值的心血管检查技术。⑥腹部。主要用于肝、胰、脾、肾等实质脏器。