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Frontiers in Physiology|September 14, 2018
Effect of Resveratrol on Blood Rheological Properties in LPS-Challenged RatsYing Wang, Hao Cui, Fei Niu, et al.The Journal of Surgical Research|July 8, 2019
Blockade of Stellate Ganglion Remediates Hemorrhagic Shock-Induced Intestinal Barrier DysfunctionJing Zhang, Xue-Rong Lin, Yu-Ping Zhang, et al.Zhongguo Wei Zhong Bing Ji Jiu Yi Xue = Chinese Critical Care Medicine = Zhongguo Weizhongbing Jijiuyixue|September 1, 2011
[Effect of mesenteric lymph obtained during shock on pump activity and oxygen free radical on erythrocyte membrane of rat]Rui Han, Zhi-peng Li, Bei Lu, et al.Zhongguo Wei Zhong Bing Ji Jiu Yi Xue = Chinese Critical Care Medicine = Zhongguo Weizhongbing Jijiuyixue|May 11, 2007
[Role of intestinal lymphatic pathway in pathogenesis of intestine-derived bacteria/endotoxin translocation in rats in shock]Chun-yu Niu, Ya-li Hou, Zi-gang Zhao, et al.Zhongguo Ying Yong Sheng Li Xue Za Zhi = Zhongguo Yingyong Shenglixue Zazhi = Chinese Journal of Applied Physiology|June 22, 2018
[Role of mesenteric lymph drainage in the balance of ACE/ACE2 in murine myocardium following hemorrhagic shock]Zi-Jian Wang, Jun-Fen Liu, Li-Na Jiang, et al.Renal Failure|May 3, 2011
The mechanism of spleen injury in rabbits with acute renal failureZi-Gang Zhao, Chun-Yu Niu, Yu-Ping Zhang, et al.Acta Cirurgica Brasileira|October 15, 2015
Normal mesenteric lymph ameliorates lipopolysaccharide challenge-induced spleen injuryLi-min Zhang, Wen Song, Hao Cui, et al.Peerj|December 1, 2025
Bioinformatics-based identification of RAS disequilibrium involved in post-hemorrhagic shock mesenteric lymph return-mediated acute kidney injury in miceYujie Jin, Jing Wang, Shaoxuan Wang, et al.Zhongguo Ying Yong Sheng Li Xue Za Zhi = Zhongguo Yingyong Shenglixue Zazhi = Chinese Journal of Applied Physiology|July 10, 2013
[Changes of erythrocyte rheology in rabbits with acute renal failure]Guo-Jie Xu, Jing-Pei Liu, Qiang Ji, et al.Shock (Augusta, Ga.)|December 27, 2023
STELLATE GANGLION BLOCK REVERSES PHSML-INDUCED VASCULAR HYPOREACTIVITY THROUGH INHIBITING AUTOPHAGY-MEDIATED PHENOTYPIC TRANSFORMATION OF VSMCsCai-Juan Li, Hui-Bo Du, Zhen-Ao Zhao, et al.Pageof 9