Share:
Share this content in WeChat
X
Editorial
Cardiac MR: recent technical developments
ZHAO Shi-hua 

DOI:10.3969/j.issn.1674-8034.2014.05.S1.015.


[Abstract] Recently, in addition to routine clinical cardiac magnetic resonance imaging (CMR), several new CMR diagnostic techniques have emerged, including quantitative imaging and non-contrast imaging. The former consists of parametric T1, T2 mapping, 4D flow and diffusion tensor imaging (DTI). The latter consists of whole heart MR coronary angiography (WH-MRCA) and blood oxygenation level dependent (BOLD).
[Keywords] Magnetic resonance imaging;Cardiovascular system;Progress

ZHAO Shi-hua * Department of Radiology, State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, 100037, China

*Correspondence to: ZHAO SH, E-mail: cjr.zhaoshihua@vip.163.com

Conflicts of interest   None.

Received  2014-08-19
Accepted  2014-09-25
DOI: 10.3969/j.issn.1674-8034.2014.05.S1.015
DOI:10.3969/j.issn.1674-8034.2014.05.S1.015.

[1]
Lee JJ, Liu S, Nacif MS, et al. Myocardial T1 and extracellular volume fraction mapping at 3 tesla. J Cardiovasc Magn Reson, 2011;13:75.
[2]
Piechnik SK, Ferreira VM, Dall’ Armellina E, et al. Shortened Modified Look-Locker Inversion recovery (ShMOLLI) for clinical myocardial T1-mapping at 1.5 and 3 T within a 9 heartbeat breathhold. J Cardiovasc Magn Reson, 2010, 12:69.
[3]
尹刚,贺光军,赵世华.心血管MRI第三部分—心血管磁共振临床应用概述.磁共振成像, 2013,4(6):450-458.
[4]
Ugander M, Oki AJ, Hsu LY, et al. Extracellular volume imaging by magnetic resonance imaging provides insights into overt and sub-clinical myocardial pathology. Eur Heart J, 2012, 33(10):1268-1278.
[5]
Flett AS, Hayward MP, Ashworth MT, et al. Equilibrium contrast cardiovascular magnetic resonance for the measurement of diffuse myocardial fibrosis: preliminary validation in humans. Circulation, 2010, 122(2):138-144.
[6]
White SK, Sado DM, Flett AS, et al. Characterising the myocardial interstitial space: the clinical relevance of non-invasive imaging. Heart (British Cardiac Society), 2012, 98(10):773-779.
[7]
Puntmann VO, Voigt T, Chen Z, et al. Native T1 mapping in differentiation of normal myocardium from diffuse disease in hypertrophic and dilated cardiomyopathy. JACC Cardiovascular imaging, 2013, 6(4):475-484.
[8]
Wong TC, Piehler K, Meier CG, et al. Association between extracellular matrix expansion quantified by cardiovascular magnetic resonance and short-term mortality. Circulation, 2012, 126(10):1206-1216.
[9]
Abdel-Aty H, Cocker M, Meek C, et al. Edema as a very early marker for acute myocardial ischemia: a cardiovascular magnetic resonance study. J Am Coll Cardiol, 2009, 53(14):1194-1201.
[10]
Wassmuth R, Prothmann M, Utz W, et al. Variability and homogeneity of cardiovascular magnetic resonance myocardial T2-mapping in volunteers compared to patients with edema. J Cardiovasc Magn Reson, 2013,15:27.
[11]
Verhaert D, Thavendiranathan P, Giri S, et al. Direct T2 quantification of myocardial edema in acute ischemic injury. JACC Cardiovascular imaging2011, 4(3):269-278.
[12]
Stankovic Z, Allen BD, Garcia J, et al. 4D flow imaging with MRI. Cardiovasc Diagn Ther, 2014, 4(2):173-192.
[13]
Markl M, Frydrychowicz A, Kozerke S, et al. 4D flow MRI. J Magn Reson Imaging, 2012, 36(5):1015-1036.
[14]
Markl M, Kilner PJ, Ebbers T. Comprehensive 4D velocity mapping of the heart and great vessels by cardiovascular magnetic resonance. J Cardiovasc Magn Reson, 2011,13:7.
[15]
聂泰明,姜兴岳,王静.扩散张量成像在不典型脑膜瘤与星形细胞肿瘤鉴别诊断中的价值.磁共振成像, 2013, 4(5):325-329.
[16]
侯欣,杨健,鱼博浪.磁共振扩散张量成像在新生儿脑发育的应用及展望.磁共振成像, 2012, 3(1):74-78.
[17]
Wu MT, Tseng WY, Su MY, et al. Diffusion tensor magnetic resonance imaging mapping the fiber architecture remodeling in human myocardium after infarction: correlation with viability and wall motion. Circulation, 2006, 114(10):1036-1045.
[18]
Wu MT, Su MY, Huang YL, et al. Sequential changes of myocardial microstructure in patients postmyocardial infarction by diffusion-tensor cardiac MR: correlation with left ventricular structure and function. Circ Cardiovasc Imaging, 2009, 2(1):32-40.
[19]
Pouleur AC, le Polain de Waroux JB, Kefer J, et al. Direct comparison of whole-heart navigator-gated magnetic resonance coronary angiography and 40-and 64-slice multidetector row computed tomography to detect the coronary artery stenosis in patients scheduled for conventional coronary angiography. Circ Cardiovasc Imaging, 2008,1(2):114-121.
[20]
Sakuma H, Ichikawa Y, Chino S, et al. Detection of coronary artery stenosis with whole-heart coronary magnetic resonance angiography. J Am Coll Cardiol, 2006, 48(10):1946-1950.
[21]
Kato S, Kitagawa K, Ishida N, et al. Assessment of coronary artery disease using magnetic resonance coronary angiography: a national multicenter trial. J Am Coll Cardiol, 2010, 56(12):983-991.
[22]
Pauling L, Coryell CD. The Magnetic Properties and Structure of Hemoglobin, Oxyhemoglobin and Carbonmonoxyhemoglobin. Proc Natl Acad Sci USA, 1936, 22(0027-8424 ( DOI: )):210.
[23]
王绍娟,王利伟,黄海青,等.磁敏感成像序列在脑微出血诊断中的价值.磁共振成像, 2013, 4(5):335-338.
[24]
陈思攀,王晓明.血氧水平依赖功能磁共振成像在脑肿瘤诊治中的应用.磁共振成像, 2012, 3(1):69-73.
[25]
Friedrich MG, Karamitsos TD. Oxygenation-sensitive cardiovascular magnetic resonance. J Cardiovasc Magn Reson, 2013, 15:43.
[26]
Manka R, Paetsch I, Schnackenburg B, et al. BOLD cardiovascular magnetic resonance at 3.0 tesla in myocardial ischemia. J Cardiovasc Magn Reson, 2010, 12:54.
[27]
Karamitsos TD, Leccisotti L, Arnold JR, et al. Relationship between regional myocardial oxygenation and perfusion in patients with coronary artery disease: insights from cardiovascular magnetic resonance and positron emission tomography. Circ Cardiovasc Imaging, 2010, 3(1):32-40.
[28]
Arnold JR, Karamitsos TD, Bhamra-Ariza P, et al. Myocardial oxygenation in coronary artery disease: insights from blood oxygen level-dependent magnetic resonance imaging at 3 tesla. J Am Coll Cardiol, 2012, 59(22): 1954-1964.

PREV Clinical application and advances of functional magnetic resonance imaging
NEXT Status analysis and strategic proposal for developing domestic MRI industry in China
  



Tel & Fax: +8610-67113815    E-mail: editor@cjmri.cn