J
Jun Ma
Researcher at Harbin Institute of Technology
Publications - 1523
Citations - 58397
Jun Ma is an academic researcher from Harbin Institute of Technology. The author has contributed to research in topics: Nasopharyngeal carcinoma & Medicine. The author has an hindex of 97, co-authored 1338 publications receiving 39643 citations. Previous affiliations of Jun Ma include Shenyang Aerospace University & University of Technology, Sydney.
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A multi-center, randomized, prospective study evaluating the optimal radiation dose of definitive concurrent chemoradiation for inoperable esophageal squamous cell carcinoma.
Yanjun Xu,Weiguo Zhu,Xiao Zheng,Wanwei Wang,Jiancheng Li,Rong Huang,Han He,Jianxiang Chen,Liping Liu,Zong-wen Sun,Xinmei Yang,Huijuan He,Ming Zeng,Juan Pu,Wangyuan Hu,Yong Bao,Zhigang Liu,Jun Ma,Ming Chen +18 more
TL;DR: The optimal radiation dose for definitive concurrent chemoradiation in esophageal squamous cell carcinoma (ESCC) using modern radiation technology is found to be 0.4013%.
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Epidemiology and treatment of invasive fungal diseases in patients with multiple myeloma: findings from a multicenter prospective study from China.
Junru Liu,He Huang,Yan Li,Lin Liu,Jianyong Li,Zhuogang Liu,Jin Lu,Jian Ouyang,Yongping Song,Daobin Zhou,Hanyun Ren,Jun Ma,Chun Wang,Li Yu,Jin Zhou,Jianmin Wang,Yang Xiao,Xiao-Jun Huang,Juan Li +18 more
TL;DR: The present multicenter study suggests that the incidence of IFD per chemotherapy courses in MM patients is 3.8 % and most patients are labelled as having possible IFD.
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Inactivation of Microcystis Aeruginosa by peracetic acid combined with ultraviolet: Performance and characteristics.
TL;DR: In this paper, the inactivation of algae by a combined process of peracetic acid and ultraviolet irradiation (UV/PAA) was systematically investigated by choosing Microcystis aeruginosa as the reference algal species.
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A Flame Retardant Ionic Conductor Additive for Safety-Reinforced Liquid Electrolyte of Lithium Batteries
Qingfu Wang,Pingping Liu,Shizhen Li,Xiao Wang,Fangzhou Li,Jun Ma,Jingchao Chai,Jianjun Zhang,Gaojie Xu,Zhaoge Huang,Guanglei Cui +10 more
TL;DR: An ionic conducting ethyl phosphate-polyethylene glycol based copolymer (abbreviated as EPCP) as a promising flame retardant additive is presented in this paper.
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Removal of phosphorus from wastewater by Diutina rugosa BL3: Efficiency and pathway.
TL;DR: In this paper, a novel phosphorus removal yeast BL3 was isolated from an alternating anaerobic/aerobic biofilter and identified as Diutina rugosa by 26S rDNA gene sequence analysis.