MAGNETIC_RESONANCE_IMAGING

作品数:1471被引量:4199H指数:22
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相关作者:夏黎明彭卫军高嵩王承缘朱文珍更多>>
相关机构:华中科技大学复旦大学复旦大学附属肿瘤医院东南大学更多>>
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Diffusion-tensor imaging as an adjunct to dynamic contrastenhanced MRI for improved accuracy of differential diagnosis between breast ductal carcinoma in situ and invasive breast carcinoma被引量:14
《Chinese Journal of Cancer Research》2015年第2期209-217,共9页Yuan Wang Xiaopeng Zhang Kun Cao Yanling Li Xiaoting Li Liping Qi Lei Tang Zhilong Wang Shunyu Gao 
supported by the National Basic Research Program of China(973 Program)(Grant No.2011CB707705);National Natural Science Foundation of China(Grant No.81471640,81371715);the Capital Health Research and Development of Special Foundation(Grant No.2011-2015-02)
Objective: To determine the value of diffusion-tensor imaging (DTI) as an adjunct to dynamic contrastenhanced magnetic resonance imaging (DCE-MRI) for improved accuracy of differential diagnosis between breast du...
关键词:Breast carcinoma in situ diffusion tensor imaging magnetic resonance imaging BREAST 
Acupuncture at Waiguan(SJ5) and sham points influences activation of functional brain areas of ischemic stroke patients: a functional magnetic resonance imaging study被引量:22
《Neural Regeneration Research》2014年第3期293-300,共8页Ji Qi Junqi Chen Yong Huang Xinsheng Lai Chunzhi Tang Junjun Yang Hua Chen Shanshan Qu 
the State Plan for Development of Basic Research in Key Areas(973 Program)in China,No.2006CB504505,2012CB518504;the Key Subject Construction Project of"211 Engineering"III Stage of Guangdong Province in China;the Guangdong Provincial"College Students’Innovative Experiment Plan"Project in China,No.1212112038
Most studies addressing the specificity of meridians and acupuncture points have focused mainly on the different neural effects of acupuncture at different points in healthy individuals. This study examined the effect...
关键词:nerve regeneration ACUPUNCTURE Waiguan (SJS) brain injury ischemic stroke function-al magnetic resonance imaging Brodmann area sham point 973 Program neural regeneration 
Measurement of Fluid Flow in Pipe and Porous Media by High-Resolution Magnetic Resonance Imaging
《China Ocean Engineering》2012年第2期317-328,共12页蒋兰兰 宋永臣 刘瑜 豆斌林 朱宁军 赵佳飞 BULITI Abudul 
financially supported by the Major State Basic Research Development Program of China(973 Program,Grant No.2011CB707304);the National Natural Science Foundation of China(Grant Nos.51006016,51006017,51106018 and 51106019)
The objective of this study is to understand the process of fluid flow in pipe and porous media with different pore structures. High-resolution Magnetic Resonance Imaging (MRI) technique was used to visualize the po...
关键词:MRI pore structure velocity distribution pipe flow porous media 
The detection of tetrahydrofuran hydrate formation and saturation using magnetic resonance imaging technique被引量:2
《Journal of Natural Gas Chemistry》2010年第3期224-228,共5页Yu Liu Yongchen Song Yongjun Chen Lei Yao Qingping Li 
supported by the National Science Foundation of China (NO.50736001);the National High Technology Research and Development Program("863" Program) of China (NO. 2006AA09209-5) ;the Major State Basic Research Development Program (973 Program) of China (NO. 2009CB219507)
Tetrahydrofuran(THF) hydrate was formed in bulk as well as in glass beads pack with a mean diameter of 3.0 mm by controlling the temperature under ambient pressure.Images of THF hydrate formation procedure were obta...
关键词:tetrahydrofuran hydrate magnetic resonance imaging glass beads SATURATION 
Process Modeling of Ferrofluids Flow for Magnetic Targeting Drug Delivery
《Chinese Journal of Mechanical Engineering》2009年第3期440-445,共6页LIU Handan WANG Shigang XU Wei 
supported by National Natural Science Foundation of China (Grant No. 50875169);National Basic Research Program of China (973 Program, Grant No. 2007CB936004).
Among the proposed techniques for delivering drugs to specific sites within the human body, magnetic targeting drug delivery surpasses due to its non-invasive character and its high targeting efficiency. Although ther...
关键词:Magnetic targeting drug delivery FERROFLUIDS magnetic nano-particels process modeling HYDRODYNAMICS computational fluid dynamics(CFD) numerical simulation Magnetic resonance imaging 
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