[1] |
Ruban A, Stoenchev K, Ashrafian H, et al.Current treatments for obesity[J]. Clinical medicine (London, England), 2019, 19(3): 205-212.
|
[2] |
中华医学会外科学分会甲状腺及代谢外科学组, 中国医师协会外科医师分会肥胖和糖尿病外科医师委员会. 中国肥胖及2型糖尿病外科治疗指南(2019版)[J]. 中国实用外科杂志, 2019, 39(4): 301-306.
|
[3] |
Poirier P, Giles Thomas D, Bray George A, et al.Obesity and Cardiovascular Disease: Pathophysiology, Evaluation, and Effect of Weight Loss[J].Circulation, 2006, 113(6): 898-918.
|
[4] |
刘勇. 心血管核磁共振技术原理及应用进展[J]. 现代医药卫生, 2017, 33(02): 174-176.
|
[5] |
王美星, 秦中胜. 3.0T心脏磁共振成像在冠心病的诊治进展[J]. 世界最新医学信息文摘, 2019, 19(A0): 85-88.
|
[6] |
Nayak KS, Hargreaves BA, Hu BS, et al. Spiral balanced steady-state free precession cardiac imaging[J]. Magnetic Resonance in Medicine, 2005, 53 (6): 1468-1473.
|
[7] |
Danias PG, Tritos NA, Stuber M, et al. Cardiac structure and function in the obese: a cardiovascular magnetic resonance imaging study[J]. Journal of cardiovascular magnetic resonance: official journal of the Society for Cardiovascular Magnetic Resonance, 2003, 5(3): 431-438.
|
[8] |
Chahal H, Mcclelland RL, Tandri H, et al. Obesity and right ventricular structure and function: the MESA-Right Ventricle Study[J]. Chest, 2012, 141(2): 388-395.
|
[9] |
De Witte D, Wijngaarden LH, Van Houten VA, et al. Improvement of Cardiac Function After Roux-en-Y Gastric Bypass in Morbidly Obese Patients Without Cardiac History Measured by Cardiac MRI[J]. Obesity Surgery, 2020, 30(7): 2475-2481.
|
[10] |
Schrauwen-Hinderling VB, Hesselink MKC, Meex R, et al. Improved Ejection Fraction after Exercise Training in Obesity Is Accompanied by Reduced Cardiac Lipid Content[J]. The Journal of Clinical Endocrinology & Metabolism, 2010, 95(4): 1932-1938.
|
[11] |
Rider OJ, Francis JM, Ali MK, et al. Beneficial Cardiovascular Effects of Bariatric Surgical and Dietary Weight Loss in Obesity[J]. Journal of the American College of Cardiology, 2009, 54(8): 718-726.
|
[12] |
Abouzeid CM, Shah T, Johri A, et al. Multimodality Imaging of the Right Ventricle[J]. Current treatment options in cardiovascular medicine, 2017, 19(11): 82-82.
|
[13] |
Valbuena-López S, Hinojar R, Puntmann VO. Cardiovascular Magnetic Resonance in Cardiology Practice: A Concise Guide to Image Acquisition and Clinical Interpretation[J]. Revista espanola de cardiologia (English ed.), 2016, 69(2): 202-210.
|
[14] |
Claus P, Omar AMS, Pedrizzetti G, et al. Tissue Tracking Technology for Assessing Cardiac Mechanics: Principles, Normal Values, and Clinical Applications[J]. JACC: Cardiovascular Imaging, 2015, 8 (12): 1444-1460.
|
[15] |
Jing L, Pulenthiran A, Nevius CD, et al. Impaired right ventricular contractile function in childhood obesity and its association with right and left ventricular changes: a cine DENSE cardiac magnetic resonance study[J]. Journal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance, 2017, 19(1): 49-49.
|
[16] |
Zhu L, Gu S, Wang Q, et al. Left ventricular myocardial deformation: a study on diastolic function in the Chinese male population and its relationship with fat distribution[J]. Quantitative imaging in medicine and surgery, 2020, 10(3): 634-645.
|
[17] |
Wang J, Li W, Sun J, et al. Improved segmental myocardial strain reproducibility using deformable registration algorithms compared with feature tracking cardiac MRI and speckle tracking echocardiography[J]. Journal of Magnetic Resonance Imaging, 2018, 48(2): 404-414.
|
[18] |
Haykowsky MJ, Nicklas BJ, Brubaker PH, et al. Regional Adipose Distribution and its Relationship to Exercise Intolerance in Older Obese Patients Who Have Heart Failure With Preserved Ejection Fraction[J]. JACC. Heart failure, 2018, 6(8): 640-649.
|
[19] |
Tsaban G, Wolak A, Avni-Hassid H, et al. Dynamics of intrapericardial and extrapericardial fat tissues during long-term, dietary-induced, moderate weight loss[J]. The American Journal of Clinical Nutrition, 2017, 106(4): 984-995.
|
[20] |
Van Schinkel LD, Sleddering MA, Lips MA, et al. Effects of bariatric surgery on pericardial ectopic fat depositions and cardiovascular function[J]. Clinical Endocrinology, 2014, 81(5): 689-695.
|
[21] |
Gaborit B, Jacquier A, Kober F, et al. Effects of Bariatric Surgery on Cardiac Ectopic Fat: Lesser Decrease in Epicardial Fat Compared to Visceral Fat Loss and No Change in Myocardial Triglyceride Content[J]. Journal of the American College of Cardiology, 2012, 60(15): 1381-1389.
|
[22] |
Monti CB, Codari M, De Cecco CN, et al. Novel imaging biomarkers: epicardial adipose tissue evaluation[J]. The British Journal of Radiology, 2019, 93(1113): 20190770.
|
[23] |
Homsi R, Meier-Schroers M, Gieseke J, et al. 3D-Dixon MRI based volumetry of peri- and epicardial fat[J]. The International Journal of Cardiovascular Imaging, 2016, 32(2): 291-299.
|
[24] |
Szczepaniak LS, Dobbins RL, Metzger GJ, et al. Myocardial triglycerides and systolic function in humans: in vivo evaluation by localized proton spectroscopy and cardiac imaging[J]. Magnetic resonance in medicine, 2003, 49(3): 417-423.
|
[25] |
Rayner JJ, Abdesselam I, Peterzan MA, et al. Very low calorie diets are associated with transient ventricular impairment before reversal of diastolic dysfunction in obesity[J]. International journal of obesity (2005), 2019, 43 (12): 2536-2544.
|
[26] |
Ng Arnold CT, Strudwick M, Van Der Geest Rob J, et al.Impact of Epicardial Adipose Tissue, Left Ventricular Myocardial Fat Content, and Interstitial Fibrosis on Myocardial Contractile Function[J]. Circulation: Cardiovascular Imaging, 2018, 11(8): e007372.
|
[27] |
Rayner JJ, Peterzan MA, Watson WD, et al. Myocardial Energetics in Obesity: Enhanced ATP Delivery Through Creatine Kinase With Blunted Stress Response[J]. Circulation, 2020, 141(14): 1152-1163.
|
[28] |
Rider OJ, Francis JM, Tyler D, et al. Effects of weight loss on myocardial energetics and diastolic function in obesity[J]. The International Journal of Cardiovascular Imaging, 2013, 29(5): 1043-1050.
|
[29] |
Rider OJ, Francis JM, Ali MK, et al. Effects of catecholamine stress on diastolic function and myocardial energetics in obesity[J]. Circulation, 2012, 125(12): 1511-1519.
|
[30] |
Alghuraibawi W, Stromp T, Holtkamp R, et al. CEST MRI reveals a correlation between visceral fat mass and reduced myocardial creatine in obese individuals despite preserved ventricular structure and function[J]. NMR in biomedicine, 2019, 32(7): e4104-e4104.
|
[31] |
Covic A, Siriopol D. Pulse Wave Velocity Ratio[J]. Hypertension, 2015, 65(2): 289-290.
|
[32] |
Mandry D, Eschalier R, Kearney-Schwartz A, et al. Comprehensive MRI analysis of early cardiac and vascular remodeling in middle-aged patients with abdominal obesity[J]. Journal of Hypertension, 2012, 30(3): 567-573.
|
[33] |
Robinson MR, Scheuermann-Freestone M, Leeson P, et al. Uncomplicated obesity is associated with abnormal aortic function assessed by cardiovascular magnetic resonance[J]. Journal of cardiovascular magnetic resonance: official journal of the Society for Cardiovascular Magnetic Resonance, 2008, 10(1): 10.
|
[34] |
Fernandez-Del-Valle M, Gonzales JU, Kloiber S, et al. Effects of resistance training on MRI-derived epicardial fat volume and arterial stiffness in women with obesity: a randomized pilot study[J]. European Journal of Applied Physiology, 2018, 118(6): 1231-1240.
|
[35] |
Rider OJ, Tayal U, Francis JM, et al. The Effect of Obesity and Weight Loss on Aortic Pulse Wave Velocity as Assessed by Magnetic Resonance Imaging[J]. Obesity, 2010, 18(12): 2311-2316.
|
[36] |
Jiang L, Shi K, Guo Y-K, et al. The additive effects of obesity on myocardial microcirculation in diabetic individuals: a cardiac magnetic resonance first-pass perfusion study[J]. Cardiovascular diabetology, 2020, 19(1): 52-52.
|
[37] |
Hall ME, Brinkley TE, Chughtai H, et al. Adiposity Is Associated with Gender-Specific Reductions in Left Ventricular Myocardial Perfusion during Dobutamine Stress[J]. PloS one, 2016, 11(1): e0146519-e0146519.
|
[38] |
Shah R V, Heydari B, Coelho-Filho O, et al. Vasodilator stress perfusion CMR imaging is feasible and prognostic in obese patients[J]. JACC. Cardiovascular imaging, 2014, 7(5): 462-472.
|
[39] |
Cavalera M, Wang J, Frangogiannis NG. Obesity, metabolic dysfunction, and cardiac fibrosis: pathophysiological pathways, molecular mechanisms, and therapeutic opportunities[J]. Translational research: the journal of laboratory and clinical medicine, 2014, 164(4): 323-335.
|
[40] |
Schelbert EB, Hsu L-Y, Anderson SA, et al. Late gadolinium-enhancement cardiac magnetic resonance identifies postinfarction myocardial fibrosis and the border zone at the near cellular level in ex vivo rat heart[J]. Circulation. Cardiovascular imaging, 2010, 3(6): 743-752.
|