[1] 马庆国, 付辉建, 卞军. 神经工业工程: 工业工程发展的新阶段[J]. 管理世界, 2012, 28(6): 163-168 MA Qingguo, FU Huijian, BIAN Jun. Neuro-industrial engineering: a new stage in the development of industrial engineering[J]. Management World, 2012, 28(6): 163-168 [2] 马庆国, 王小毅. 认知神经科学、神经经济学与神经管理学[J]. 管理世界, 2006, 22(10): 139-149 MA Qingguo, WANG Xiaoyi. Cognitive neuroscience, neuroeconomics and neural management[J]. World of Management, 2006, 22(10): 139-149 [3] 金晶. 安全标志信号词风险信息处理实验研究[D]. 杭州: 浙江大学, 2011. JIN Jing. Experimental research on risk information processing of safety sign signal words[D]. Hangzhou: Zhejiang University, 2011. [4] 尚倩. 基于心理负荷的生产效率研究[D]. 杭州: 浙江大学, 2013. SHANG Qian. Research on productive efficiency based on psychological load[D]. Hanagzhou: Zhejiang University, 2013. [5] 卞军. 安全管理中安全标志及其设计要素的感知机理研究[D]. 杭州: 浙江大学, 2014. BIAN Jun. Research on the perception mechanism of safety signs and design elements in safety management[D]. Hangzhou: Zhejiang University, 2014. [6] LI W C, YU C S, GREAVES C M, et al. How cockpit design impacts pilots' attention distribution and perceived workload during aiming a stationary target[J]. Procedia Manufacturing, 2015, 3: 5663-5669 [7] DI STASI L, ATOLI A, GEA M, et al. A neuroergonomic approach to evaluating mental workload in hypermedia interactions[J]. International Journal of Industrial Ergonomics, 2011, 41(3): 298-304 [8] 戚作秋, 王宏, 常文文, 等. 生产性噪声对工作人员脑认知影响的ERP分析[J]. 东北大学学报(自然科学版), 2017, 38(11): 1590-1594 QI Zuoqiu, WANG Hong, CHANG Wenwen, et al. ERP analysis of the effect of productive noise on the brain cognition of workers[J]. Journal of Northeast University (Natural Science Edition), 2017, 38(11): 1590-1594 [9] OKAMOTO Y, NAKAGAWA S. Effects of daytime light exposure on cognitive brain activity as measured by the ERP P300[J]. Physiology & Behavior, 2015, 138: 313-318 [10] 汝涛涛, 李芸, 钱柳. 环境光照的认知功效及其调节因素与作用机理[J]. 心理科学进展, 2019, 27(10): 1687-1702 RU Taotao, LI Yun, QIAN Liu. Cognitive efficacy of environmental light and its regulatory factors and mechanism[J]. Progress in Psychological Science, 2019, 27(10): 1687-1702 [11] LEUTHOLD H. The simon effect in cognitive electrophysiology a short review[J]. Psychologica, 2011, 136: 203-211 [12] MELARA R D. WANG H, VU KIM-PHUONG L, et al Attentional origins of the Simon effect: Behavioral and electrophysiological evidence[J]. Brain Research, 2008, 1215: 147-159 [13] GIRAUDET L, IMBERT J P, BÉRENGER M, et al. The neuroergonomic evaluation of human machine interface design in air traffic control using behavioral and EEG/ERP measures[J]. Behavioural Brain Research, 2015, 294: 246-253 [14] ZHOU B, ZHANG J X, TAN L, et al. Spatial congruence in working memory: an ERP study[J]. Neuro Report, 2004, 15(18): 2795-2799 [15] STEINER G Z, BARRY R J, GONSALVEZ C J, et al. Can working memory predict target-to-target interval effects in the P300?[J]. International Journal of Psychophysiology, 2013, 89(3): 399-408 [16] 杨元, 刘文金, 李国华. 用户对家具产品不同偏好的脑认知探微[J]. 林业工程学报, 2019, 4(5): 152-158 YANG Yuan, LIU Wenjin, LI Guohua. Brain cognition of users' different preferences for furniture products[J]. Journal of Forestry Engineering, 2019, 4(5): 152-158 [17] CUTHBERT B N, SCHUPP H T, BRADLEY M M, et al. Brain potentials in affective picture processing: covariation with autonomic arousal and affective report[J]. Biological Psychology, 2000, 52(2): 95-111 [18] POLICH J, CRIADO J R. Neuropsychology and neuropharmacology of P3a and P3b[J]. Internation Journal of Psychophysiology, 2006, 60(2): 85-172 [19] GOLONKA K, MOJSA-KAJA J, MAREK T, et al. Stimulus, response and feedback processing in burnout: an EEG study[J]. International Journal of Psychophysiology, 2018, 134: 86-94 [20] HAGEN G F, GATHERWRIGHT J R, LOPEZ B A, et al. Polich P3a from visual stimuli: task difficulty effects[J]. International Journal of Psychophysiology, 2006, 59(1): 8-14 [21] FERRARI P F, GALLESE V, RIZZOLATTI G, et al. Mirror neurons responding to the observation of ingestive and communicative mouth actions in the monkey ventral premotor cortex[J]. European Journal of Neuroscience, 2003, 17(8): 1531-1726
|