[1]中华人民共和国国家卫生和计划生育委员会.我国无偿献血工作进展情况[EB/OL]. http://www.moh.gov.cn/mohyzs/s3590/201206/55073.shtml.
National Health and Family Planning Commission of the Peoples Republic of China. Progress of volunteer blood do-nation in China[EB/OL]. http://www.moh.gov.cn/mo-hyzs/s3590/201206/55073.shtml.
[2]张评,高国静,蔡峥,等. SARS流行期间北京市临床供血的管理[J]. 中华医院感染杂志, 2004, 14(9): 1029-1030.
ZHANG Ping, GAO Guojing, CAI Zheng, et al. Manage-ment for blood supplying during SARS epidemic period in Beijing[J]. Chinese Journal of Nosoconmiology, 2004, 14(9): 10291030.
[3]PRASTACOS G P. Blood inventory management: an over-view of theory and practice[J]. Management Science, 1984, 30(7): 777-800.
[4]NAHMIAS S. Perishable inventory theory: a review[J]. Operations Research, 1982, 30(4): 680-708.
[5]高宝俊,宣慧玉,张莉.大型医院血液库存系统订货点控制的仿真研究[J]. 中国管理科学, 2005,13(2):76-80.
GAO Baojun, XUAN Huiyu, ZHANG Li. Simulation on the order point of an blood inventory system[J]. Chinese Journal of Management Science, 2005,13(2):76-80.
[6]高宝俊,宣慧玉,汪方军,等.需求季节性变动的血液库存系统仿真研究[J].系统工程理论与实践,2005,11(11):98-104.
GAO Baojun, XUAN Huiyu, WANG Fangjun, et al. Simu-lation of a blood inventory system with time varying demand[J]. Engineering-theory & Practice, 2005,11(11):98-104.
[7]吕昕.基于仿真技术的血液中心库存系统优化研究[J]. 工业工程与管理, 2011, 16(1): 118-122.
LV Xin. Study on Optimization of blood center inventory sys-tem based on simulation technology[J]. Industrial Engineer-ing and Management, 2011, 16(1): 118-122.
[8]KATSALIAKI K, BRAILSFORD S B. Using simulation to improve the UK blood supply chain[J]. Journal of the Operations Research Society, 2007, 58(2): 219-227.
[9]SIMONETTI A, FORSHEE R, ANDERSON S, et al. A stockandflow simulation model of the US blood supply[J]. Transfusion, 2014, 54(3): 828-838.
[10]DUAN Q L, LIAO T W. Optimization of blood supply chain with shortened shelf lives and ABO compatibility[J]. International Journal of Production Economics, 2014, 153(C): 113-129.
[11]HAIJEMA R, VAN DER WAL J, VAN DIJK N M. Blood platelet production: Optimization by dynamic programming and simulation[J]. Computers & Operations Research, 2007, 34(3): 760-779.
[12]HAIJEMA R, VAN DIJK N, VAN DER WAL J, et al. Blood platelet production with breaks: optimization by SDP and simulation[J]. International Journal of Production Economics, 2009, 121(2): 464-473.
[13]VAN DIJK N, HAIJEMA R, VAN DER WAL J, et al. Blood platelet production: a novel approach for practical optimization[J]. Transfusion, 2009, 49(3): 411-420.
[14]KOPACH R, BALCIOGLU B, CARTER M. Tutorial on constructing a red blood cell inventory management system with two demand rates[J]. European Journal of Operational Research, 2008, 185(3): 1051-1059.
[15]ZHOU D, LEUNG L C, PIERSKALLA W P. Inventory management of platelets in hospitals: optimal inventory policy for perishable products with regular and optional expedited replenishments[J]. Manufacturing & Service Operations Management, 2011, 13(4): 420-438
[16]刘波. 非常规突发事件应急血液采储优化问题研究[D]. 成都:西南交通大学, 2012.
LIU BO. Optimization of emergency blood collection and storage for unconventional emergencies[D]. Chengdu: Southwest Jiaotong University, 2012.
[17]周愉峰. 非常规突发事件应急血液保障优化关键问题研究[D]. 成都:西南交通大学, 2014.
ZHOU YUFENG. Key optimization problems in emergency blood supply under unconventional emergencies[D]. Chengdu: Southweast Jiaotong University, 2014.
[18]LANG J C. Production and inventory management with substitutions[M]. Berlin Heidelberg: Springer Verlag: 2010: 205-226.
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