[1] |
Virani SS, Alonso A, Benjamin EJ, et al. Heart disease and stroke statistics-2020 update: A report from the American Heart Association[J]. Circulation, 2020, 141(9):e139-e596.
|
[2] |
Koliaki C, Liatis S, Kokkinos A. Obesity and cardiovascular disease: Revisiting an old relationship[J]. Metabolism, 2019, 92:98-107.
doi: 10.1016/j.metabol.2018.10.011
URL
|
[3] |
Sacerdote A, Dave P, Lokshin V, et al. Type 2 diabetes mellitus, insulin resistance, and vitamin D[J]. Curr Diab Rep, 2019, 19(10):101.
doi: 10.1007/s11892-019-1201-y
URL
|
[4] |
Xu W, Tian M, Zhou Y. The relationship between insulin resistance, adiponectin and C-reactive protein and vascular endothelial injury in diabetic patients with coronary heart disease[J]. Exp Ther Med, 2018, 16(3): 2022-2026.
doi: 10.3892/etm.2018.6407
pmid: 30186434
|
[5] |
Reilly MP, Rohatgi A, McMahon K, et al. Plasma cytokines, metabolic syndrome, and atherosclerosis in humans[J]. J Investig Med, 2007, 55(1):26-35.
doi: 10.2310/6650.2007.06013
URL
|
[6] |
Gensini GG. A more meaningful scoring system for determining the severity of coronary heart disease[J]. Am J Cardiol, 1983, 51(3):606.
doi: 10.1016/s0002-9149(83)80105-2
pmid: 6823874
|
[7] |
邢小燕, 杨文英, 杨兆军. 胰岛素抵抗指数在不同糖耐量人群中诊断代谢综合征的作用[J]. 中华糖尿病杂志, 2004, 12(3):31-35.
|
[8] |
Freeman AM, Pennings N. Insulin Resistance[EB/OL]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing, 2022.
|
[9] |
Bonora E, Kiechl S, Willeit J, et al. Insulin resistance as estimated by homeostasis model assessment predicts incident symptomatic cardiovascular disease in caucasian subjects from the general population: the bruneck study[J]. Diabetes Care, 2007, 30(2):318-324.
doi: 10.2337/dc06-0919
pmid: 17259501
|
[10] |
Wang S, Shi J, Peng Y, et al. Stronger association of triglyceride glucose index than the HOMA-IR with arterial stiffness in patients with type 2 diabetes: A real-world single-centre study[J]. Cardiovasc Diabetol, 2021, 20(1):82.
doi: 10.1186/s12933-021-01274-x
pmid: 33888131
|
[11] |
Wu S, Xu L, Wu M, et al. Association between triglyceride-glucose index and risk of arterial stiffness: A cohort study[J]. Cardiovasc Diabetol, 2021, 20(1):146.
doi: 10.1186/s12933-021-01342-2
pmid: 34271940
|
[12] |
Su J, Li Z, Huang M, et al. Triglyceride glucose index for the detection of the severity of coronary artery disease in different glucose metabolic states in patients with coronary heart disease: A RCSCD-TCM study in China[J]. Cardiovasc Diabetol, 2022, 21(1):96.
doi: 10.1186/s12933-022-01523-7
pmid: 35668496
|
[13] |
Song J, Xia X, Lu Y, et al. Relationship among insulin therapy, insulin resistance, and severe coronary artery disease in type 2 diabetes mellitus[J]. J Interv Cardiol, 2022, 2022:2450024.
|
[14] |
Ormazabal V, Nair S, Elfeky O, et al. Association between insulin resistance and the development of cardiovascular disease[J]. Cardiovasc Diabetol, 2018, 17(1):122.
doi: 10.1186/s12933-018-0762-4
pmid: 30170598
|
[15] |
Ding X, Wang X, Wu J, et al. Triglyceride-glucose index and the incidence of atherosclerotic cardiovascular diseases: A meta-analysis of cohort studies[J]. Cardiovasc Diabetol, 2021, 20(1):76.
doi: 10.1186/s12933-021-01268-9
pmid: 33812373
|
[16] |
Yahagi K, Kolodgie FD, Lutter C, et al. Pathology of human coronary and carotid artery atherosclerosis and vascular calcification in diabetes mellitus[J]. Arterioscler Thromb Vasc Biol, 2017, 37(2):191-204.
doi: 10.1161/ATVBAHA.116.306256
pmid: 27908890
|
[17] |
Jin HY, Weir-McCall JR, Leipsic JA, et al. The relationship between coronary calcification and the natural history of coronary artery disease[J]. JACC Cardiovasc Imaging, 2021, 14(1):233-242.
doi: 10.1016/j.jcmg.2020.08.036
URL
|
[18] |
Sakamoto A, Virmani R, Finn AV. Coronary artery calcification: Recent developments in our understanding of its pathologic and clinical significance[J]. Curr Opin Cardiol, 2018, 33(6):645-652.
doi: 10.1097/HCO.0000000000000558
pmid: 30307412
|