[1] Ma R C W. Epidemiology of diabetes and diabetic complications in China [J]. Diabetologia, 2018, 61(6):1249-1260. [2] Warren A M, Knudsen S T, Cooper M E. Diabetic nephropathy: an insight into molecular mechanisms and emerging therapies[J]. Expert Opin Ther Targets, 2019, 23(1):1-13. [3] Zhang L, Long J, Jiang W, et al. Trends in chronic kidney disease in China [J]. N Engl J Med, 2016, 375(9): 905-906. [4] 郑爽爽,何悦明. 糖尿病的肾脏磁共振研究进展[J]. 北京医学, 2017, 39(1): 87-89. [5] Niendorf T, Pohlmann A, Arakelyan K, et al. How bold is blood oxygenation level-dependent (BOLD) magnetic resonance imaging of the kidney? Opportunities, challenges and future directions [J]. Acta Physiol (Oxf), 2015,213(1):19-38. [6] Jia W, Weng J, Zhu D, et al. Standards of medical care for type 2 diabetes in China 2019 [J]. Diabetes Metab Res Rev, 2019, 35(6): e3158. [7] 郭兰根. 糖尿病肾病的临床表现及诊断标准 [J]. 中国社区医师, 2010(32): 5. [8] Hall M E, Jordan J H, Juncos L A, et al. BOLD magnetic resonance imaging in nephrology [J]. Int J Nephrol Renovasc Dis, 2018, 11:103-112. [9] 周江燕,何悦明,尚润润,等. BOLD-MRI评价2型糖尿病患者降血糖治疗前后肾组织氧合状况 [J]. 中国医学影像技术, 2019, 35(2): 76-80. [10]Hansell P, Welch W J, Blantz R C, et al. Determinants of kidneyoxygen consumption and their relationship to tissue oxygen tension in diabetes and hypertension [J]. Clin Exp Pharmacol Physiol, 2013, 40(2): 123-137. [11]Ries M, Basseau F, Tyndal B, et al. Renal diffusion and BOLD MRI in experimental diabetic nephropathy [J]. J Magn Reson Imaging, 2003, 17(1):104-113. [12]Prasad P V, Edelman R R, Epstein F H. Noninvasive evaluation of intrarenal oxygenation with BOLD MRI [J]. Circulation, 1996, 94(12): 3271-3275. [13]Palm F. Intrarenal oxygen in diabetes and a possible link to diabetic nephropathy [J]. Clin Exp Pharmacol Physiol, 2006, 33(10): 997-1001. [14]Magri C J, Fava S. The role of tubular injury in diabetic nephropathy [J]. Eur J Intern Med, 2009, 20(6):551-555. [15]Pollock J S, Carmines P K. Diabetic nephropathy: nitric oxide and renal medullary hypoxia [J]. Am J Physiol Renal Physiol, 2008, 294(1): F28-29. [16]Wang Q, Guo C, Zhang L, et al. BOLD MRI to evaluate early development of renal injury in a rat model of diabetes [J]. J Int Med Res, 2018, 46(4): 1391-1403. [17]Yin W, Liu F, Li X, et al. Noninvasive evaluation of renal oxygenation in diabetic nephropathy by BOLD-MRI [J]. Eur J Radiol, 2012, 81(7): 1426-1431. [18]蒋振兴,王毓,丁玖乐,等. 血氧水平依赖MRI评估糖尿病肾病肾功能损伤的研究 [J]. 磁共振成像, 2015, 6(7): 52-56. [19]Wang Z J, Kumar R, Banerjee S, et al. Blood oxygen level-dependent (BOLD) MRI of diabetic nephropathy: preliminary experience [J]. J Magn Reson Imaging, 2011, 33(3): 655-660. [20]Siddiqi L, Hoogduin H, Visser F, et al. Inhibition of the renin-angiotensin system affects kidney tissue oxygenation evaluated by magnetic resonance imaging in patients with chronic kidney disease [J]. J Clin Hypertens, 2014, 16(3): 214-218. [21]Hall M E, Rocco M V, Morgan T M, et al. Beta-blocker use is associated with higher renal tissue oxygenation in hypertensive patients suspected of renal artery stenosis [J]. Cardiorenal Med, 2016, 6(4): 261-268. [22]李露露,蒲实,范秋灵,等.糖尿病肾病患者循环miRNA表达谱的分析[J].中国医科大学学报,2019,48(8):694-698,708. [23]马晓华,周亚男,王荣荣,等.持续低效缓慢血液透析治疗终末期糖尿病肾病临床观察[J].解放军医药杂志,2019,31(4):57-59. [24]张瑞,肖文波,汪启东,等. BOLD MRI评价原发性肾病综合征的肾内氧代谢状态 [J]. 中国医学影像技术, 2017, 33(9): 1388-1391. [25]Inoue T, Kozawa E, Okada H, et al. Noninvasive evaluation of kidney hypoxia and fibrosis using magnetic resonance imaging [J]. J Am Soc Nephrol, 2011, 22(8): 1429-1434. |