1)  Venography
磁共振成相
2)  NMR
核磁共振
1.
MR SCANNER-A NEW GENERATION NUCLEAR MAGNETIC RESONANCE (NMR) LOGGING TOOL OF SCHLUMBERGER;
斯伦贝谢新一代核磁共振测井仪MR Scanner
2.
NMR Analysis of Ortho/Para Hydroxymethyl in Phenyl Phenolic Resin and Its Characters;
苯基苯酚型酚醛树脂中羟甲基邻/对位异构的核磁共振分析及性能影响
3.
Temperature Effect on NMR Relaxation Time for Bulk Fluids and Fluids in Rocks;
储层流体及其在岩石孔隙中的核磁共振弛豫温度特性
3)  Nuclear magnetic resonance (NMR)
核磁共振
1.
The nuclear magnetic resonance (NMR) logging has the best advantages compared with the conventional well logging.
核磁共振测井可以提供直观、准确的孔隙度、渗透率等参数,它所提供的参数与岩石骨架和矿物无关。
2.
The pulsed nuclear magnetic resonance (NMR) characteristics of various samples are studied.
超小型核磁共振成像仪已经应用在近代物理实验教学中,该仪器可以研究各种样品的脉冲核磁共振。
4)  MRI
核磁共振
1.
Development of Sensitive-Micro RF Coils in Desktop MRI Systems;
台式核磁共振成像仪高灵敏微型射频线圈的研制
2.
Preoperative assessment of cervical invasion in endometrial cancer:comparison of MRI and D&C;
分段诊刮与核磁共振术前诊断子宫内膜癌宫颈浸润的比较
3.
The application of MRI in the diagnosis of fetal malformation-2 cases report and reviewed the related references.;
核磁共振成像在诊断胎儿先天畸形中的应用——附2例报道及文献复习
5)  ferromagnetic resonance
铁磁共振
1.
Fundamental physical properties and ferromagnetic resonance of magnetic nano-film;
磁性纳米膜基本物性和铁磁共振研究
2.
Magnetic porperties and effect of ferromagnetic resonance of Li-Zn-Cu ferrite;
Li—Zn—Cu系铁氧体磁性和铁磁共振的研究
3.
The analysis of the ferromagnetic resonance and linewidth of resonance on magnetic nanoparticle system;
磁性纳米颗粒系统的铁磁共振和共振线宽分析
6)  nuclear magnetic resonance
核磁共振
1.
Application of ~(29)Si Nuclear Magnetic Resonance(NMR) in Research of Cement Chemistry;
~(29)Si固体核磁共振技术在水泥化学研究中的应用
2.
The discussion on carrying out pressure detection while drilling by using the parameters of the nuclear magnetic resonance and ion chromatography;
利用核磁共振和离子色谱参数开展随钻压力检测的探讨
3.
The application study and prospect of the nuclear magnetic resonance logging in Tuha Oilfield;
核磁共振录井在吐哈油田的应用研究与展望
参考词条
补充资料:13C 磁共振谱
      13C(核自旋量子数I为1/2)在静磁场中能级分裂和从射频电磁波吸收能量由低能级跃迁至高能级而产生的磁共振谱,与质子磁共振谱相似,但有以下差别:①它在高能级的寿命较长,限制了使之进行跃迁的射频电磁波的功率;②磁共振的灵敏度与旋磁比γ 的三次方成正比,而,致使13C磁共振是1H磁共振的灵敏度的1/64;③13C的天然同位素丰度为1.1%,而1H则为99.8%,所以它的灵敏度又要比1H磁共振低两个数量级;④13C磁共振谱的分辨能力高,其化学位移范围为600微克(1H磁共振的仅为20微克),从而对分子量为300~500的有机化合物几乎可分辨每一个13C峰,这在1H磁共振中决不可能。从13C磁共振可以观测不与质子相连的基团,如C=O、C呏N等基团。
  

说明:补充资料仅用于学习参考,请勿用于其它任何用途。