1Clinical analysis of multiple organ dysfunction syndrome in children after cardiac surgery71-742Replacement of plasma with artificial colloids in infants undergoing open heart surgery with cardiopulmonary bypass75-783The effects of different temperature and perfusion of cardiopulmonary bypass for the expression of the CD34 +/c-kit + stem cells in peripheral blood in infantsJiang Gan, Xu Zhi-wei79-824The usefulness of deep hypothermic circulatory arrest and regional cerebral perfusion in interrupted aortic archGuo Zheng, Wang Wei, Zhang Wei, Shen Jia, Tang Jia-zhong, Zhu De-ming83-85,705Unilateral antegrade cerebral perfusion in total aortic arch replacement surgeryWang Wei-jun, Feng Yuan, Kang Dan-feng, Ge Yun-xia, Xu Gen-xing, Xue Song86-88,666The clinical study of significant hypophosphatemia following aortic surgery with deep hypothermic circulatory arrestJiao Ruo-nan, Du Yu, Wu Hui, Liu Hong, Cao Fang-fang, Zhang Hai-tao89-91,787Risk factors for early postoperative cognitive dysfunction after cardiac valve replacementXu Tao, Zhao Zhen-zhen, Wang Jia-feng, Zhu Wen-zhong, Wang Jun92-958Strategy of cardiopulmonary bypass for aortic aneurysm surgery in 37 cases underwent the green channel emergency operationChen Xiang-zhou, Liu Mei, Xiao Ying-bin, Wang Xue-feng, Chen Lin, Li Fu-ping, Hao Jia96-1009Therapy of vasoplegic syndrome after cardiopulmonary bypassLI Ming, Zhang Zong-gang, Du Yu-kui, A Yi Bie Ke, Ai Li101-102,11510Partial support of the ovine heart with left ventricular assist device: implication for hemodynamic103-106,12811Establishment of a temperature-controlled deep hypothermic circulatory arrest model without blood priming in rats107-110,11512Study on the correlation between plasma diamine oxidase activity and the changes of extracellular matrix of intestinal mucosa in rats after cardiopulmonary bypassShang Hong-wei, Sun Sheng-bin, Xiao Ying-bin111-115