[1] BERGER M, SCHENNING K J, BROWN C H 4th, et al. Best practices for postoperative brain health: Recommendations From the Fifth International Perioperative Neurotoxicity Working Group[J]. Anesth Analg, 2018, 127(6):1406-1413. [2] MOTOMURA A, SHIMIZU M, KATO A, et al. Remote ischemic preconditioning protects human neural stem cells from oxidative stress[J]. Apoptosis, 2017, 22(11):1353-1361. [3] KONSTANTINOV I E, ARAB S, KHARBANDA R K, et al. The remote ischemic preconditioning stimulus modifies inflammatory gene expression in humans[J]. Physiol Genomics, 2004, 19(1):143-150. [4] DING Y F, ZHANG M M, HE R R. Role of renal nerve in cardioprotection provided by renal ischemic preconditioning in anesthetized rabbits[J]. Acta Physiologica Sinica, 2001, 53(1):7-12. [5] DONG J H, LIU Y X, ZHAO J, et al. High-frequency electrical stimulation of femoral nerve reduces infarct size following myocardial ischemia-reperfusion in rats[J]. Acta Physiologica Sinica, 2004, 56(5):620-624. [6] GHO B C, SCHOEMAKER R G, VAN DEN DOEL M A, et al. Myocardial protection by brief ischemia in noncardiac tissue[J]. Circulation, 1996, 94(9):2193-2200. [7] MURRY C E, JENNINGS R B, REIMER K A. Preconditioning with ischemia: a delay of lethal cell injury in ischemic myocardium[J]. Circulation, 1986, 74(5):1124-1136. [8] BOLLII R. The late phase of preconditioning[J]. Circ Res, 2000, 87(11):972-983. [9] KÜNTSCHER M V, KASTELL T, ALTMANN J, et al. Acute remote ischemic preconditioning II: The role of nitric oxide[J]. Microsurgery, 2002, 22(6):227-231. [10] ALBRECHT M, ZITTA K, BEIN B, et al. Remote ischemic preconditioning regulates HIF-1α levels, apoptosis and inflammation in heart tissue of cardiosurgical patients: a pilot experimental study[J]. Basic Res Cardiol, 2013, 108(1):314. [11] BRANDENBURGER T, HUHN R, GALAS A, et al. Remote ischemic preconditioning preserves Connexin 43 phosphorylation in the rat heart in vivo[J]. J Transl Med, 2014, 12:228. [12] OBERKOFLER C E, LIMANI P, JANG J H, et al. Systemic protection through remote ischemic preconditioning is spread by platelet-dependent signaling in mice[J]. Hepatology, 2014, 60(4):1409-1417. [13] GROSS G J, AUCHAMPACH J A. Blockade of ATP-sensitive potassium channels prevents myocardial preconditioning in dogs[J]. Circ Res, 1992, 70(2):223-233. [14] HE Z, XU N, QI S. Remote ischemic preconditioning improves the cognitive function of elderly patients following colon surgery: a randomized clinical trial[J]. Medicine: Baltimore, 2017, 96(17):e6719. [15] OH C S, KIM S H, LEE J, et al. Impact of remote ischaemic preconditioning on cerebral oxygenation during total knee arthroplasty[J]. Int J Med Sci, 2017, 14(2):115-122. [16] PANDIT V, KHAN M, ZAKARIA E R, et al. Continuous remote ischemic conditioning attenuates cognitive and motor deficits from moderate traumatic brain injury[J]. J Trauma Acute Care Surg, 2018, 85(1):48-53. [17] MEYBOHM P, KOHLHAAS M, STOPPE C, et al. RIPHeart (Remote Ischemic Preconditioning for Heart Surgery) Study: Myocardial Dysfunction, Postoperative Neurocognitive Dysfunction, and 1 Year Follow-Up[J]. J Am Heart Assoc, 2018,7(7):e008077. [18] KAHLERT P, HILDEBRANDT H A, PATSALIS P C, et al. No protection of heart, kidneys and brain by remote ischemic preconditioning before transfemoral transcatheter aortic valve implantation: interim-analysis of a randomized single-blinded, placebo-controlled, single-center trial[J]. Int J Cardiol, 2017, 231:248-254. |