浙江大学心理科学研究中心欢迎您!

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王治国2.jpg

姓名

王治国

职位

研究员

联系方式

邮箱:mianwangming@gmail.com

研究领域

人因和工程心理学、人机智能交互、注意与眼动、计算神经科学


简介

王治国,“百人计划”研究员,博导。2011年毕业于中科院心理所应用心理学专业,曾先后在荷兰自由大学和澳大利亚麦考瑞大学从事博士后研究,曾在杭州师范大学认知与脑疾病研究中心任研究员。2017年加入加拿大SR Research公司,2019年升任高级科学家。2021年加入浙江大学心理科学研究中心,任百人计划研究员。

王治国博士在JEP:LMC、Journal of Vision、Psychonomic Bulletin & Review、Vision Research等专业国际刊物发表论文30余篇。曾主持国家自然科学基金面上项目和澳大利亚优秀青年基金(ARC Discovery Early Career Researcher Award)。

王治国博士的主要研究方向为工程心理学和人机智能交互,同时也关注工作记忆、注意和眼动等心理学研究问题。他使用的研究方法主要有行为测验和心理物理、眼动追踪、脑电和计算建模。欢迎有心理学、人因工程、工业工程、自动化、计算机视觉、生物医学工程等学科背景的学生报考硕/博士研究生,也欢迎有志于人机智能交互研究的博士与其联系,探讨合作开展博士后研究的可能。

 

工作经历

2021.05-至今                      百人计划研究员(第二类)     浙江大学心理科学研究中心

2017.01-2021.04                高级科学家/研究支持专家       加拿大SR Research Ltd.

2012.09-2016.12                研究员                                    杭州师范大学认知与脑疾病研究中心

2015.09-2016.08                博士后                                    澳大利亚麦考瑞大学认知科学系

2011.09-2012.08                博士后                                    荷兰自由大学认知心理学系

 

学历

2006.09-2011.07            应用心理学              博士       中国科学院心理研究所

2008.10-2011.01            访问研究生                            加拿大戴尔豪斯大学

2003.09-2006.06            发展与教育心理学    硕士       北京师范大学心理学院

1999.09-2003.06            教育学                     学士       河南大学教育学院

 

代表性科研项目

1.   浙江大学百人计划科研启动经费,2021-2027,主持

2.   澳大利亚优秀青年基金(DECRA,项目号:DE170100915),2017-2018,主持

3.   国家自然科学基金面上项目 (项目号:31371133),2014-2017,主持

 

代表性学术论文

1. Yan, C., He, T., & Wang, Z.* (2021). Predictive remapping leaves a behaviorally measurable attentional trace on eye-centered brain maps. Psychonomic Bulletin & Review, in press.

2. Shen, Z. , Ding, Y., Satal, J., & Wang, Z.* (2020). A concurrent working memory task does not necessarily impair spatial attention: Evidence from inhibition of return. Visual Cognition, in press.

3. Zhang, X., Fu, W., Xue, L., Zhao, J.*, & Wang, Z. (2019). Children with mathematical learning difficulties are sluggish in disengaging attention. Frontiers in Psychology, 10:932. DOI: 10.3389/fpsyg.2019.00932.

4. Fu, W., Zhao, J.*, Ding, Y., & Wang, Z. (2019). Dyslexic children are sluggish in disengaging spatial attention. Dyslexia, 25(2): 158-172. DOI: 10.1002/dys.1609

5. Zhao, J.*, Yang, H. , Weng, X., & Wang, Z. (2018). Emergent attentional bias towards visual word forms in the environment: Evidence from eye movements. Frontiers in Psychology, 9:1378. DOI: 10.3389/fpsyg.2018.01378

6. Wang, B., Yan, C., Klein, R. M., & Wang, Z.* (2018). Inhibition of return revisited: Localized inhibition on top of a pervasive bias. Psychonomic Bulletin & Review, 25(5): 1861-1867. DOI: 10.3758/s13423-017-1410-9

7. Wang, B., Cao, X., Theeuwes, J., Olivers, C. N. L., & Wang, Z.* (2017). Separate capacities for storing different features in visual working memory. Journal of Experimental Psychology: Learning, Memory & Cognition, 43(2): 226-236. DOI: 10.1037/xlm0000295.

8. Ding, Y., Zhao, J.*, He, T., Tan, Y., Zheng, L., & Wang, Z. (2016). Selective impairments in covert shifts of attention in Chinese dyslexic children. Dyslexia, 22(4): 362-378. DOI: 10.1002/dys.1541.

9. Yan, C., He, T., Klein, R. M., & Wang, Z.* (2016). Predictive remapping gives rise to environmental inhibition of return. Psychonomic Bulletin & Review, 23(6): 1860-1866. DOI: 10.3758/s13423-016-1066-x.

10. Wang, B., Cao, X., Theeuwes, J., Olivers, C. N. L., & Wang, Z.* (2016). Location-based effects underlie feature conjunction benefits in visual working memory. Journal of Vision, 16(11): 12, 1-13. DOI: 10.1167/16.11.12.

11. Ding, Y., He, T., Satel, J., & Wang, Z.* (2016). Inhibitory cueing effects following manual and saccadic responses to arrow cues. Attention, Perception & Psychophysics, 78(4): 1020-1029. DOI: 10.3758/BF03212152.

12. He, T., Ding, Y., & Wang, Z.* (2015). Environment- and eye-centered inhibitory cueing effects are both observed after a methodological confound is eliminated. Scientific Reports, 5: 16586. DOI: 10.1038/srep16586.

13. Qian, H., Gao, X., & Wang, Z.* (2015). Faces distort eye movement trajectories, but the distortion is not stronger for your own face. Experimental Brain Research, 233: 2155-2166. DOI: 10.1007/s00221-015-4286-9.

14. Wang, B., Hilchey, M. D., Cao, X., & Wang, Z.* (2014). The spatial distribution of inhibition of return revisited: No difference found between manual and saccadic responses. Neuroscience Letters, 578: 128–132. DOI: 10.1016/j.neulet.2014.06.050.

15. Wang, Z.* & Theeuwes, J. (2014). Distractor evoked deviations of saccade trajectory are modulated by fixation activity in the superior colliculus: computational and behavioral evidence. PLoS ONE, 9(12): e116382. DOI: 10.1371/journal.pone.0116382.

16. Wang, Z.*, & Theeuwes, J. (2012). Dissociable spatial and temporal effects of inhibition of return. PLoS ONE, 7(8): e44290. DOI: 10.1371/journal.pone.0044290.

17. Wang, Z.*, Kruijne, W., & Theeuwes, J. (2012). Lateral interactions in the superior colliculus produce saccade deviation in a neural field model. Vision Research, 52(1): 66-74. DOI: 10.1016/j.visres.2012.03.024.

18. Wang, Z., Satel, J., Hilchey, M. D., & Klein, R. M.* (2012). Averaging saccades are repelled by prior uninformative cues at both short and long intervals. Visual Cognition, 20(7): 825-847. DOI: 10.1080/13506285.2012.705358.

19. Wang, Z., & Klein, R. M.* (2012). Focal spatial attention can eliminate inhibition of return. Psychonomic Bulletin & Review, 19(3): 462-469. DOI: 10.3758/s13423-012-0226-x.

20. Wang, Z.*, Satel, J., & Klein, R. M. (2012). Sensory and motor mechanisms of oculomotor inhibition of return. Experimental Brain Research, 218(3): 441-453. DOI: 10.1007/s00221-012-3033-8.

21. Wang, Z.*, Satel, J., Trappenberg, T. P., & Klein, R. M. (2011). Aftereffects of saccades explored in a dynamic neural field model of the superior colliculus. Journal of Eye Movement Research, 4(2): 1-16. DOI: 10.16910/jemr.4.2.1.

22. Wang, Z.* & Klein, R. M. (2010). Searching for inhibition of return in visual search: A review. Vision Research, 50(2): 220-228. DOI: 10.1016/j.visres.2009.11.013.

23. Wang, Z.*, Zhang, K., & Klein, R. M. (2010). Inhibition of return in static but not necessarily in dynamic search. Attention, Perception & Psychophysics, 72(1): 76-85. DOI: 10.3758/APP.72.1.76.





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