心理学报 ›› 2021, Vol. 53 ›› Issue (9): 933-943.doi: 10.3724/SP.J.1041.2021.00933
• 研究论文 • 下一篇
孙天义1, 郝晓晓2, 何安明1, 王财玉1, 许远理1, 郭春彦3, 周蔚3()
收稿日期:
2019-10-17
发布日期:
2021-07-22
出版日期:
2021-09-25
通讯作者:
周蔚
E-mail:zhouwei@cnu.edu.cn
基金资助:
SUN Tianyi1, HAO Xiaoxiao2, HE Anming1, WANG Caiyu1, XU Yuanli1, GUO Chunyan3, ZHOU Wei3()
Received:
2019-10-17
Online:
2021-07-22
Published:
2021-09-25
Contact:
ZHOU Wei
E-mail:zhouwei@cnu.edu.cn
摘要:
神经重用假说认为对词的情绪效应可以不经语义形成而先行产生, 这更有助于人类适应环境。为了检验这一假说, 设计脑电实验和行为实验, 记录被试加工汉语厌恶情绪词和中性词的特征。结果发现, 170 ms左右厌恶词与中性词的ERPs发生分离, 且在枕部出现情绪刺激视觉注意关联的EPN; 厌恶词与中性词N400差异波溯源定位于脑岛附近, 其最大激活点时间窗口开始于380 ms。这表明在情绪词汇的语义分析之前就出现了情绪效应, 结果支持了神经重用假说。
中图分类号:
孙天义, 郝晓晓, 何安明, 王财玉, 许远理, 郭春彦, 周蔚. (2021). 神经重用假说的汉语情绪词汇加工证据. 心理学报, 53(9), 933-943.
SUN Tianyi, HAO Xiaoxiao, HE Anming, WANG Caiyu, XU Yuanli, GUO Chunyan, ZHOU Wei. (2021). Evidence for neural re-use hypothesis from the processing of Chinese emotional words. Acta Psychologica Sinica, 53(9), 933-943.
变量 | 词的评分 | |
---|---|---|
厌恶词(M ± SD) | 中性词(M ± SD) | |
效价 | 1.69 ± 0.22 | 3.31 ± 0.29 |
唤醒度 | 2.95 ± 0.35 | 2.41 ± 0.38 |
形象性 | 3.37 ± 0.49 | 3.74 ± 0.68 |
熟悉性 | 3.37 ± 0.64 | 3.81 ± 0.81 |
表1 词汇变量评分的平均数及标准差(M-平均值、SD-标准差)
变量 | 词的评分 | |
---|---|---|
厌恶词(M ± SD) | 中性词(M ± SD) | |
效价 | 1.69 ± 0.22 | 3.31 ± 0.29 |
唤醒度 | 2.95 ± 0.35 | 2.41 ± 0.38 |
形象性 | 3.37 ± 0.49 | 3.74 ± 0.68 |
熟悉性 | 3.37 ± 0.64 | 3.81 ± 0.81 |
电极位置 | 脑电成分的电位 | |||
---|---|---|---|---|
P100 | EPN | |||
厌恶词(M ± SD) | 中性词(M ± SD) | 厌恶词(M ± SD) | 中性词(M ± SD) | |
左(O1) | 4.49 ± 3.44 | 4.11 ± 4.24 | -3.72 ± 3.56 | -3.57 ± 2.71 |
中(Oz) | 2.52 ± 4.07 | 2.51 ± 4.51 | -2.96 ± 3.75 | -2.55 ± 2.96 |
右(O2) | 3.71 ± 5.93 | 3.73 ± 6.18 | -3.77 ± 4.57 | -2.74 ± 3.93 |
表2 电极位置及平均电位值(M-平均值、SD-标准差(μV))
电极位置 | 脑电成分的电位 | |||
---|---|---|---|---|
P100 | EPN | |||
厌恶词(M ± SD) | 中性词(M ± SD) | 厌恶词(M ± SD) | 中性词(M ± SD) | |
左(O1) | 4.49 ± 3.44 | 4.11 ± 4.24 | -3.72 ± 3.56 | -3.57 ± 2.71 |
中(Oz) | 2.52 ± 4.07 | 2.51 ± 4.51 | -2.96 ± 3.75 | -2.55 ± 2.96 |
右(O2) | 3.71 ± 5.93 | 3.73 ± 6.18 | -3.77 ± 4.57 | -2.74 ± 3.93 |
电极位置 | 分析时窗下的电位 | |||
---|---|---|---|---|
300~500 ms | 500~700 ms | |||
厌恶词(M ± SD) | 中性词(M ± SD) | 厌恶词(M ± SD) | 中性词(M ± SD) | |
FPz | -0.15 ± 2.61 | 0.52 ± 2.83 | 1.73 ± 2.15 | 1.31 ± 2.46 |
Fz | 2.49 ± 2.89 | 0.50 ± 2.74 | 2.92 ± 2.41 | 0.76 ± 1.88 |
Cz | 4.74 ± 4.40 | 1.72 ± 3.51 | 5.58 ± 4.19 | 2.80 ± 2.92 |
Pz | 5.50 ± 4.54 | 2.83 ± 3.55 | 5.17 ± 4.58 | 3.09 ± 3.26 |
Oz | 2.13 ± 2.76 | 0.53 ± 2.64 | 2.01 ± 2.67 | 1.09 ± 2.21 |
表3 中央电极平均电位值(M-平均值、SD-标准差(μV))
电极位置 | 分析时窗下的电位 | |||
---|---|---|---|---|
300~500 ms | 500~700 ms | |||
厌恶词(M ± SD) | 中性词(M ± SD) | 厌恶词(M ± SD) | 中性词(M ± SD) | |
FPz | -0.15 ± 2.61 | 0.52 ± 2.83 | 1.73 ± 2.15 | 1.31 ± 2.46 |
Fz | 2.49 ± 2.89 | 0.50 ± 2.74 | 2.92 ± 2.41 | 0.76 ± 1.88 |
Cz | 4.74 ± 4.40 | 1.72 ± 3.51 | 5.58 ± 4.19 | 2.80 ± 2.92 |
Pz | 5.50 ± 4.54 | 2.83 ± 3.55 | 5.17 ± 4.58 | 3.09 ± 3.26 |
Oz | 2.13 ± 2.76 | 0.53 ± 2.64 | 2.01 ± 2.67 | 1.09 ± 2.21 |
厌恶词汇 | 中性词汇 | 交通工具词汇 | |||
---|---|---|---|---|---|
粪肉 | 尿味 | 窗户 | 个体 | 火车 | 帆船 |
粪便 | 狗屎 | 橡皮 | 衣柜 | 汽车 | 轮船 |
口臭 | 粪桶 | 筷子 | 护照 | 动车 | 游船 |
臊臭 | 便池 | 副刊 | 盒子 | 轿车 | 客船 |
臭气 | 蛆虫 | 邮编 | 文件 | 卡车 | 渔船 |
大便 | 粪土 | 地幔 | 事物 | 高铁 | 游艇 |
蝇蛆 | 粪堆 | 邮票 | 路灯 | 跑车 | |
粪坑 | 痰盂 | 影子 | 池塘 | 游轮 | |
狐臭 | 汗臭 | 纽扣 | 空调 | 邮轮 | |
臭味 | 鸟屎 | 桌子 | 沙发 | 客轮 | |
臭屁 | 鼻屎 | 椅子 | 踏板 | 机车 | |
屎尿 | 粪筐 | 磁石 | 剪子 | 客车 | |
粪池 | 粘液 | 茶瓶 | 墙壁 | 电车 | |
粪水 | 便盆 | 链条 | 电视 | 飞机 | |
恶臭 | 苍蝇 | 地板 | 胶卷 | 客机 | |
尿盆 | 腐烂 | 秘书 | 键盘 | 地铁 | |
肉虫 | 腐肉 | 地图 | 波浪 | 巴士 | |
脚臭 | 麻雀 | 摩托 |
厌恶词汇 | 中性词汇 | 交通工具词汇 | |||
---|---|---|---|---|---|
粪肉 | 尿味 | 窗户 | 个体 | 火车 | 帆船 |
粪便 | 狗屎 | 橡皮 | 衣柜 | 汽车 | 轮船 |
口臭 | 粪桶 | 筷子 | 护照 | 动车 | 游船 |
臊臭 | 便池 | 副刊 | 盒子 | 轿车 | 客船 |
臭气 | 蛆虫 | 邮编 | 文件 | 卡车 | 渔船 |
大便 | 粪土 | 地幔 | 事物 | 高铁 | 游艇 |
蝇蛆 | 粪堆 | 邮票 | 路灯 | 跑车 | |
粪坑 | 痰盂 | 影子 | 池塘 | 游轮 | |
狐臭 | 汗臭 | 纽扣 | 空调 | 邮轮 | |
臭味 | 鸟屎 | 桌子 | 沙发 | 客轮 | |
臭屁 | 鼻屎 | 椅子 | 踏板 | 机车 | |
屎尿 | 粪筐 | 磁石 | 剪子 | 客车 | |
粪池 | 粘液 | 茶瓶 | 墙壁 | 电车 | |
粪水 | 便盆 | 链条 | 电视 | 飞机 | |
恶臭 | 苍蝇 | 地板 | 胶卷 | 客机 | |
尿盆 | 腐烂 | 秘书 | 键盘 | 地铁 | |
肉虫 | 腐肉 | 地图 | 波浪 | 巴士 | |
脚臭 | 麻雀 | 摩托 |
[1] | An S.K., Lee S.J., Lee C.H., Cho H.S., Lee P.G., Lee C.I., … Namkoong K. (2003). Reduced P3 amplitudes by negative facial emotional photographs in schizophrenia. Schizophrenia Research, 64(2-3), 125-135. |
[2] |
Anderson M.L. (2007). Evolution of cognitive function via redeployment of brain areas. Neuroscientist, 13(1), 13-21.
pmid: 17229971 |
[3] |
Anderson M.L. (2010). Neural reuse: A fundamental organizational principle of the brain. Behavioral and Brain Sciences, 33(4), 245-266.
doi: 10.1017/S0140525X10000853 pmid: 20964882 |
[4] |
Bayer M., Sommer W., & Schacht A. (2010). Reading emotional words within sentences: The impact of arousal and valence on event-related potentials. International Journal of Psychophysiology, 78(3), 299-307.
doi: 10.1016/j.ijpsycho.2010.09.004 URL |
[5] |
Borg C., Bedoin N., Peyron R., Bogey S., Laurent B., & Thomas-Antérion C. (2013). Impaired emotional processing in a patient with a left posterior insula-SII lesion. Neurocase, 19(6), 592-603.
doi: 10.1080/13554794.2012.713491 URL |
[6] |
Buyukturkoglu K., Roettgers H., Sommer J., Rana M., Dietzsch L., Arikan E.B., … Ruiz S. (2015). Correction: Self-regulation of anterior insula with real-time fmri and its behavioral effects in obsessive-compulsive disorder: A feasibility study. PLoS ONE, 10(12), e0145027.
doi: 10.1371/journal.pone.0145027 URL |
[7] |
Chen H.C., & Shu H. (2001). Lexical activation during the recognition of Chinese characters: Evidence against early phonological activation. Psychonomic Bulletin & Review, 8(3), 511-518.
doi: 10.3758/BF03196186 URL |
[8] |
Citron F.M. (2012). Neural correlates of written emotion word processing: A review of recent electrophysiological and hemodynamic neuroimaging studies. Brain and Language, 122(3), 211-226.
doi: 10.1016/j.bandl.2011.12.007 URL |
[9] |
Dehaene S., & Cohen L. (2007). Cultural recycling of cortical maps. Neuron, 56(2), 384-398.
doi: 10.1016/j.neuron.2007.10.004 URL |
[10] |
Dehaene S., Cohen L., Sigman M., & Vinckier F. (2005). The neural code for written words: A proposal. Trends in Cognitive Sciences, 9(7), 335-341.
doi: 10.1016/j.tics.2005.05.004 URL |
[11] |
Delplanque S., Silvert L., Hot P., & Sequeira H. (2005). Event-related p3a and p3b in response to unpredictable emotional stimuli. Biological Psychology, 68(2), 107-120.
pmid: 15450691 |
[12] | Dering B., Martin C.D., Moro S., Pegna A.J., & Thierry G. (2011). Face-sensitive processes one hundred milliseconds after picture onset. Frontiers in Human Neuroscience, 5(93), 93. |
[13] |
Dietrich D.E., Emrich H.M., Waller C., Wieringa B.M., Johannes S., & Münte T.F. (2000). Emotion/cognition- coupling in word recognition memory of depressive patients: An event-related potential study. Psychiatry Research, 96(1), 15-29.
pmid: 10980323 |
[14] |
Fischler I., & Bradley M. (2006). Event-related potential studies of language and emotion: Words, phrases, and task effects. Progress in Brain Research, 156, 185-203.
pmid: 17015080 |
[15] | Grainger J., & Holcomb P.J. (2009). Watching the word go by: On the time-course of component processes in visual word recognition. Language & Linguistics Compass, 3(1), 128-156. |
[16] |
Groves K., Kennett S., & Gillmeister H. (2017). Evidence for ERP biomarkers of eating disorder symptoms in women. Biological Psychology, 123, 205-219.
doi: S0301-0511(16)30399-4 pmid: 28057515 |
[17] |
Herbert C., Junghofer M., & Kissler J. (2008). Event related potentials to emotional adjectives during reading. Psychophysiology, 45(3), 487-498.
doi: 10.1111/j.1469-8986.2007.00638.x URL |
[18] | Isenberg N., Silbersweig D., Engelien A., Emmerich S., Malavade K., Beattie B., … Stern E. (1999). Linguistic threat activates the human amygdala. Proceedings of the National Academy of Sciences of the United States of America, 96(18), 10456-10459. |
[19] |
Job X.E.,de Fockert, J. W., & van Velzen, J. (2016). Action preparation modulates sensory perception in unseen personal space: An electrophysiological investigation. Neuropsychologia, 89, 445-452.
doi: 10.1016/j.neuropsychologia.2016.07.021 URL |
[20] |
Kanske P., & Kotz S.A. (2007). Concreteness in emotional words: ERP evidence from a hemifield study. Brain Research, 1148, 138-148.
doi: 10.1016/j.brainres.2007.02.044 URL |
[21] | Kissler J., Assadollahi R., & Herbert C. (2006). Emotional and semantic networks in visual word processing: Insights from ERP studies. Progress in Brain Research, 156, 147-183. |
[22] |
Kissler J., Herbert C., Peyk P., & Junghofer M. (2007). Buzzwords: Early cortical responses to emotional words during reading. Psychological Science, 18(6), 475-480.
doi: 10.1111/j.1467-9280.2007.01924.x URL |
[23] |
Kousta S.T., Vinson D.P., & Vigliocco G. (2009). Emotion words, regardless of polarity, have a processing advantage over neutral words. Cognition, 112(3), 473-481.
doi: 10.1016/j.cognition.2009.06.007 URL |
[24] |
Krolak-Salmon P., Hénaff M.-A., Isnard J., Tallon-Baudry C., Guénot M., Vighetto A., … Mauguière F. (2010). An attention modulated response to disgust in human ventral anterior insula. Annals of Neurology, 53(4), 446-453.
doi: 10.1002/ana.10502 URL |
[25] |
Kutas M., & Federmeier K.D. (2011). Thirty years and counting: Finding meaning in the N400 component of the event-related brain potential (ERP). Annual Review of Psychology, 62, 621-647.
doi: 10.1146/annurev.psych.093008.131123 URL |
[26] |
Li Y.T., Li Q., & Guo C.Y. (2010). Differences of emotional words in implicit and explicit memory tests: An ERP study. Acta Psychologica Sinica, 42(7), 735-742.
doi: 10.3724/SP.J.1041.2010.00735 URL |
[ 李月婷, 李琦, 郭春彦. (2010). 内隐和外显记忆测验中情绪词差异的ERP研究. 心理学报, 42(7), 735-742.] | |
[27] | Liu H., Hu Z., Peng D., Yang Y., & Li K. (2010). Common and segregated neural substrates for automatic conceptual and affective priming as revealed by event-related functional magnetic resonance imaging. Brain & Language, 112(2), 121-128. |
[28] |
Liu Y., Lin W., Xu P., Zhang D., & Luo Y. (2015). Neural basis of disgust perception in racial prejudice. Human Brain Mapping, 36(12), 5275-5286.
doi: 10.1002/hbm.v36.12 URL |
[29] | Luo Y. J., Huang Y., X., Li X., Y., & Li X., B. (2006). Effects of emotion on cognitive processing: Series of Event-Related Potentials study. Advances in Psychological Science, 14(4), 505-510. |
[ 罗跃嘉, 黄宇霞, 李新影, 李雪冰. (2006). 情绪对认知加工的影响: 事件相关脑电位系列研究. 心理科学进展, 14(4), 505-510.] | |
[30] |
Luo Y., Shen W., Zhang Y., Feng T.Y., Huang H., & Li H. (2013). Core disgust and moral disgust are related to distinct spatiotemporal patterns of neural processing: An event-related potential study. Biological Psychology, 94(2), 242-248.
doi: 10.1016/j.biopsycho.2013.06.005 pmid: 23816951 |
[31] |
Maratos E.J., Allan K., & Rugg M.D. (2000). Recognition memory for emotionally negative and neutral words: An ERP study. Neuropsychologia, 38(11), 1452-1465.
pmid: 10906371 |
[32] |
Meng X., Jian J., Shu H., Tian X., & Zhou X.. (2008). ERP correlates of the development of orthographical and phonological processing during Chinese sentence reading. Brain Research, 1219, 91-102.
doi: 10.1016/j.brainres.2008.04.052 URL |
[33] |
Niedenthal P.M. (2007). Embodying emotion. Science, 316(5827), 1002-1005.
pmid: 17510358 |
[34] | Perfetti C.A., Nelson J., Liu Y., Fiez J., & Tan L.H. (2010). The neural basis of reading:Universals and writing system variations. In: P. L. Cornelissen, P.C. Hansen, L.M. Kringelbach, & A. K. Pugh (Eds.), The neural basis of reading (pp.147-172). New York: Oxford University Press. |
[35] |
Ponz A., Montant M., Liegeois-Chauvel C., Silva C., Braun M., Jacobs A.M., & Ziegler J.C. (2013). Emotion processing in words: A test of the neural re-use hypothesis using surface and intracranial EEG. Social Cognitive and Affective Neuroscience, 9(5), 619-627.
doi: 10.1093/scan/nst034 URL |
[36] |
Pulvermüller F. (2005). Brain mechanisms linking language and action. Nature Reviews Neuroscience, 6(7), 576-582.
pmid: 15959465 |
[37] | Schacht A., & Sommer W. (2009a). Emotions in word and face processing: Early and late cortical responses. Brain & Cognition, 69(3), 538-550. |
[38] | Schacht A., & Sommer W. (2009b). Time course and task dependence of emotion effects in word processing. Cognitive Affective & Behavioral Neuroscience, 9(1), 28-43. |
[39] | Schienle A., Übel S., & Wabnegger A. (2016). When opposites lead to the same: A direct comparison of explicit and implicit disgust regulation via fmri. Social Cognitive & Affective Neuroscience, 12(3), 445-451. |
[40] |
Schindler S., Vormbrock R., & Kissler J. (2019). Emotion in context : How sender predictability and identity affect processing of words as imminent personality feedback. Frontiers in Psychology, 10(2), 1-16.
doi: 10.3389/fpsyg.2019.00001 URL |
[41] |
Schupp H.T., Junghöfer M., Weike A.I., & Hamm A.O. (2004). The selective processing of briefly presented affective pictures: An ERP analysis. Psychophysiology, 41(3), 441-449.
doi: 10.1111/psyp.2004.41.issue-3 URL |
[42] | Tadel F., Baillet S., Mosher J.C., Pantazis D., & Leahy R.M. (2011). Brainstorm: A user-friendly application for MEG/EEG analysis. Computational Intelligence and Neuroscience, 2011(1687-5265), 879716. |
[43] |
Tonoyan Y., Chanwimalueang T., Mandic D.P., & van Hulle M.M. (2017). Discrimination of emotional states from scalp-and intracranial EEG using multiscale Rényi entropy. PLoS ONE, 12(11), e0186916.
doi: 10.1371/journal.pone.0186916 URL |
[44] |
Valt C., & Stürmer B. (2018). Processing genuine and nongenuine smiles as social response to personal performance: An event-related brain potential (ERP) study. Emotion, 18(4), 551-562.
doi: 10.1037/emo0000327 URL |
[45] | Wang Y.N., Zhou L.M., & Luo Y.J. (2008). The pilot establishment and evaluation of Chinese affective words system. Chinese Mental Health Journal, 22(8), 608-612. |
[ 王一牛, 周立明, 罗跃嘉. (2008). 汉语情感词系统的初步编制及评定. 中国心理卫生杂志, 22(8), 608-612.] | |
[46] |
Wang Z.,H., & Yao Z. (2012). Concreteness effects of emotional noun words: Evidences from ERP. Acta Psychologica Sinica, 44(2), 154-165.
doi: 10.3724/SP.J.1041.2012.00154 URL |
[ 王振宏, 姚昭. (2012). 情绪名词的具体性效应: 来自ERP的证据. 心理学报, 44(2), 154-165.] | |
[47] | Watkins T.J., Di I.C., Olatunji B.O., Benningfield M.M., Blackford J.U., Dietrich M.S., … Cowan R.L. (2015). Disgust proneness and associated neural substrates in obesity. Social Cognitive & Affective Neuroscience, 11(3), 458-465. |
[48] | Yao Z., Yu D.S., Wang L.L.W., Zhu X.R., Guo J.J., & Wang Z.H. (2016). Effects of valence and arousal on emotional word processing are modulated by concreteness: Behavioral and ERP evidence from a lexical decision task. International Journal of Psychophysiology, 100, 231-242. |
[49] |
Yi S.N., He W.Q., Zhan L., Qi Z.Y., Zhu C.L., Luo W.B., & Li H. (2015). Emotional noun processing: An ERP study with rapid serial visual presentation. PLoS ONE, 10(3), e0118924.
doi: 10.1371/journal.pone.0118924 URL |
[50] |
Zhang D.D., He W.Q., Wang T., Luo W.B., Zhu X.R., Gu R.L., … Luo Y.J. (2014). Three stages of emotional word processing: An ERP study with rapid serial visual presentation. Social Cognitive and Affective Neuroscience, 9(12), 1897-1903.
doi: 10.1093/scan/nst188 URL |
[51] |
Zhang M., Ge Y., Kang C., Guo T., & Peng D. (2018). ERP evidence for the contribution of meaning complexity underlying emotional word processing. Journal of Neurolinguistics, 45, 110-118.
doi: 10.1016/j.jneuroling.2016.07.002 URL |
[52] |
Zhao W.S., Chen L., Zhou C.X., & Luo W.B. (2018). Neural correlates of emotion processing in word detection task. Frontiers in Psychology, 9, 832.
doi: 10.3389/fpsyg.2018.00832 URL |
[53] | Zhou A., Zhang R., Xia R., Li S., & Ma X. (2016). The perspective modulation in the early processing of self- reflective. Journal of Psychological Science, 39(2), 384-391. |
[ 周爱保, 张荣华, 夏瑞雪, 李世峰, 马小凤. (2016). 视角在自我评价早期阶段的调节作用. 心理科学, 39(2), 384-391.] | |
[54] |
Zhou X., & Marslen-Wilson W. (1999). Phonology, orthography, and semantic activation in reading Chinese. Journal of Memory and Language, 41(4), 579-606.
doi: 10.1006/jmla.1999.2663 URL |
[55] |
Zhou W., Shu H., Miller K., & Yan M. (2018). Reliance on orthography and phonology in reading of Chinese: A developmental study. Journal of Research in Reading, 41(2), 370-391.
doi: 10.1111/jrir.v41.2 URL |
[56] | Zhu L.P., Yuan J.J., & Li H. (2011). The influence of emotional valence and intensity on vocabulary processing. Journal of Psychological Science, 34(2), 284-288. |
[ 朱丽萍, 袁加锦, 李红. (2011). 情绪效价及强度对词汇加工的影响. 心理科学, 34(2), 284-288.] |
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