心理科学进展 ›› 2023, Vol. 31 ›› Issue (6): 1020-1029.doi: 10.3724/SP.J.1042.2023.01020
收稿日期:
2022-10-08
出版日期:
2023-06-15
发布日期:
2023-03-07
通讯作者:
马小凤
E-mail:psymaxiaofeng@126.com
基金资助:
GUO Yanshuo, MA Xiaofeng(), PAN Keyu, ZHANG Huan
Received:
2022-10-08
Online:
2023-06-15
Published:
2023-03-07
Contact:
MA Xiaofeng
E-mail:psymaxiaofeng@126.com
摘要:
快速自动命名(Rapid Automatized Naming, RAN)如何影响阅读尚存争议。有研究表明个体单个单词加工效率主导了RAN对阅读的影响。另有研究发现单个单词加工效率和连续加工效率共同作用的“级联”加工过程才是主导RAN影响阅读的主要因素。这与个体视觉注意广度(VAS)起到的调节作用有关。低VAS读者识别正字法单位数量有限, 他们在连续阅读时以离散的形式逐个阅读单个单词, 单个单词加工效率主导RAN和阅读的关系; 高VAS读者将单词视为一个整体, 在多个词之间进行连续的并列加工, 这种“级联”的加工过程主导了RAN与阅读的关系。未来研究应关注阅读过程中个体的VAS差异, 增加阅读材料的复杂性和正字法的不一致性, 进一步探究RAN与阅读的关系以及不同水平VAS对它的影响, 丰富发展性阅读障碍患者的非语言干预措施相关理论。
中图分类号:
郭彦铄, 马小凤, 潘柯宇, 张欢. (2023). 快速自动命名对阅读的影响及其作用机制. 心理科学进展 , 31(6), 1020-1029.
GUO Yanshuo, MA Xiaofeng, PAN Keyu, ZHANG Huan. (2023). The influence of rapid automatized naming on reading and its mechanism. Advances in Psychological Science, 31(6), 1020-1029.
[1] | Al Dahhan, N. Z., Kirby, J. R., & Munoz, D. P. (2016). Understanding reading and reading difficulties through naming speed tasks: Bridging the gaps among neuroscience, cognition, and education. AERA Open, 2(4), 1-15 |
[2] |
Altani, A., Protopapas, A., Katopodi, K., & Georgiou, G. K. (2019). From individual word recognition to word list and text reading fluency. Journal of Educational Psychology, 112(1), 22-39.
doi: 10.1037/edu0000359 URL |
[3] |
Altani, A., Protopapas, A., Katopodi, K., & Georgiou, G. K. (2020). Tracking the serial advantage in the naming rate of multiple over isolated stimulus displays. Reading and Writing, 33(27), 349-375.
doi: 10.1007/s11145-019-09962-7 |
[4] |
Ans, B., Carbonnel, S., & Valdois, S. (1998). A connectionist multiple-trace memory model for polysyllabic word reading. Psychological Review, 105(4), 678-723.
pmid: 9830376 |
[5] |
Antzaka, A., Martin, C., Caffarra, S., Schlöffel, S., Carreiras, M., & Lallier, M. (2018). The effect of orthographic depth on letter string processing: The case of visual attention span and rapid automatized naming. Reading and Writing, 31(3), 583-605.
doi: 10.1007/s11145-017-9799-0 URL |
[6] |
Araújo, S., Reis, A., Petersson, K. M., & Faísca, M. (2015). Rapid automatized naming and reading performance: A meta-analysis. Journal of Educational Psychology, 107(3), 868-883.
doi: 10.1037/edu0000006 URL |
[7] |
Bar-Kochva, I., & Nevo, E. (2018). The relations of early phonological awareness, rapid-naming and speed of processing with the development of spelling and reading: A longitudinal examination. Journal of Research in Reading, 42(3), 1-26.
doi: 10.1111/jrir.v42.1 URL |
[8] |
Bowers, P. G., & Wolf, M. (1993). Theoretical links among naming speed, precise timing mechanisms and orthographic skill in dyslexia. Reading and Writing: An Interdisciplinary Journal, 5(1), 69-85.
doi: 10.1007/BF01026919 URL |
[9] |
Bowey, J. A., McGuigan, M., & Ruschena, A. (2005). On the association between serial naming speed for letters and digits and word-reading skill: Towards a developmental account. Journal of Research in Reading, 28(4), 400-422.
doi: 10.1111/jrir.2005.28.issue-4 URL |
[10] |
Bosse, M. L., & Valdois, S. (2009). Influence of the visual attention span on child reading performance: A cross- sectional study. Journal of Research in Reading, 32(2), 230-253.
doi: 10.1111/jrir.2009.32.issue-2 URL |
[11] |
Catts, H. W., Gillispie, M., Leonard, L. B., Kail, R. V., & Miller, C. A. (2002). The role of speed of processing, rapid naming, and phonological awareness in reading achievement. Journal of Learning Disabilities, 35(6), 510-525.
doi: 10.1177/00222194020350060301 URL |
[12] |
Chen, N., Zheng, M., & Ho, C. S. (2018). Examining the visual attention span deficit hypothesis in Chinese developmental dyslexia. Reading and Writing, 32(2), 639-662.
doi: 10.1007/s11145-018-9882-1 |
[13] |
Christopher, M. E., Miyake, A., Keenan, J. M., Pennington, B., DeFries, J. C., Wadsworth, S. J.,... Olson, R. K. (2012). Predicting word reading and comprehension with executive function and speed measures across development: A latent variable analysis. Journal of Experimental Psychology: General, 141(3), 470-488.
doi: 10.1037/a0027375 URL |
[14] |
Coltheart, M., Rastle, K., Perry, C., Langdon, R., & Ziegler, J. C. (2001). DRC: A dual route cascaded model of visual word recognition and reading aloud. Psychological Review, 108(1), 204-256.
doi: 10.1037/0033-295x.108.1.204 pmid: 11212628 |
[15] |
Compton, D. L., DeFries, J. C., & Olson, R. K. (2001). Are RAN and phonological awareness-deficits additive in children with reading disabilities? Dyslexia, 7(3), 125-149.
pmid: 11765981 |
[16] |
de Jong, P. F. (2011). What discrete and serial rapid automatized naming can reveal about reading. Scientific Studies of Reading, 15(4), 314-337.
doi: 10.1080/10888438.2010.485624 URL |
[17] |
de Jong, P. F., & van den Boer, M. (2021). The relation of visual attention span with serial and discrete rapid automatized naming and reading. Journal of Experimental Child Psychology, 207(4), 105093
doi: 10.1016/j.jecp.2021.105093 URL |
[18] |
Engbert, R., Nuthmann, A., Richter, E. M., & Kliegl, R. (2005). SWIFT: A dynamical model of saccade generation during reading. Psychological Review, 112(4), 777-813.
pmid: 16262468 |
[19] |
Georgiou, G. K., Aro, M., Liao, C. -H., & Parrila, R. (2016). Modeling the relationship between rapid automatized naming and literacy skills across languages varying in orthographic consistency. Journal of Experimental Child Psychology, 143, 48-64.
doi: 10.1016/j.jecp.2015.10.017 pmid: 26615467 |
[20] |
Georgiou, G. K., Cardoso, -M. C., Das, J., Falcón, A., Hosokawa, M., Inoue, T., … Vieira, A. P. (2022). Cross-language contributions of rapid automatized naming to reading accuracy and fluency in young adults: Evidence from eight languages representing different writing systems. Journal of Cultural Cognitive Science, 6, 151-168.
doi: 10.1007/s41809-021-00092-7 |
[21] |
Georgiou, G. K., Cho, J. -R., Deng, C., Altani, A., Romero, S., Kim, M. -Y., … Protopapas, A. (2022). Cascaded processing in naming and reading: Evidence from Chinese and Korean. Journal of Experimental Child Psychology, 220, 105416
doi: 10.1016/j.jecp.2022.105416 URL |
[22] | Georgiou, G. K., & Parrila, R. (2020). What mechanism underlies the rapid automatized naming-reading relation? Journal of Experimental Child Psychology, 194, 1004840 |
[23] |
Georgiou, G. K., Parrila, R., Cui, Y., & Papadopoulos, T. -C. (2013). Why is rapid automatized naming related to reading? Journal of Experimental Child Psychology, 115(1), 218-225.
doi: 10.1016/j.jecp.2012.10.015 pmid: 23384823 |
[24] |
Ginestet, E., Phénix, T., Diard, J., & Valdois, S. (2019). Modeling the length effect for words in lexical decision: The role of visual attention. Vision Research, 159, 10-20.
doi: S0042-6989(19)30068-9 pmid: 30904615 |
[25] |
Goodman, K. S., & Goodman, Y. M. (1977). Learning about psycholinguistic processes by analyzing oral reading. Harvard Educational Review, 47(3), 317-333.
doi: 10.17763/haer.47.3.528434xv67l534x8 URL |
[26] |
Huang, C., Liu, N., & Zhao, J. (2020). Different predictive roles of phonological awareness and visual attention span for early character reading fluency in Chinese. The Journal of General Psychology, 148(3), 45-66.
doi: 10.1080/00221309.2019.1711356 URL |
[27] |
Inoue, T., Georgiou, G. K., Hosokawa, M., Muroya, N., Kitamura, H., Tanji, T., … Parrila, R. (2021). Reading in different scripts predicts different cognitive skills: Evidence from Japanese. Reading and Writing, 35, 1425-1448.
doi: 10.1007/s11145-021-10228-4 |
[28] |
Jones, M. W., Branigan, H. P., & Kelly, M. L. (2009). Dyslexic and nondyslexic reading fluency: Rapid automatized naming and the importance of continuous lists. Psychonomic Bulletin & Review, 16(3), 567-572.
doi: 10.3758/PBR.16.3.567 URL |
[29] |
Kail, R., Hall, L. K., & Caskey, B. J. (1999). Processing speed, exposure to print, and naming speed. Applied Psycholinguistics, 20(2), 303-314.
doi: 10.1017/S0142716499002076 URL |
[30] |
Kemény, F., & Landerl, K. (2021). Phonology-independent general orthographic knowledge. Quarterly Journal of Experimental Psychology, 74(12), 2075-2083.
doi: 10.1177/17470218211018438 URL |
[31] | Koda, K. (2017). Learning to read Japanese. In L.Verhoeven & C.Perfetti (Eds.), Learning to read across languages and writing systems, (pp. 31-56). Cambridge University Press. |
[32] |
Landerl, K., Freudenthaler, H. H., Heene, M., Jong, P. F. D., Desrochers, A., Manolitsis, G., … Georgiou, G. K. (2019). Phonological awareness and rapid automatized naming as longitudinal predictors of reading in five alphabetic orthographies with varying degrees of consistency. Scientific Studies of Reading, 23(3), 220-234.
doi: 10.1080/10888438.2018.1510936 |
[33] |
Lervåg, A., & Hulme, C. (2009). Rapid automatized naming (RAN) taps a mechanism that places constraints on the development of early reading fluency. Psychological Science, 20(8), 1040-1048.
doi: 10.1111/j.1467-9280.2009.02405.x pmid: 19619178 |
[34] |
Liu, T., de Schotten, M. T., Altarelli, I., Ramus, F., & Zhao, J. (2022). Neural dissociation of visual attention span and phonological deficits in developmental dyslexia: A hub-based white matter network analysis. Human Brain Mapping, 43(4), 5210-5219.
doi: 10.1002/hbm.v43.17 URL |
[35] |
Logan, J. A., Schatschneider, C., & Wagner, R. K. (2011). Rapid serial naming and reading ability: The role of lexical access. Reading and Writing, 24(1), 1-25.
pmid: 22215934 |
[36] |
Manis, F. R., Doi, L. M., & Bhadha, B. (2000). Naming speed, phonological awareness, and orthographic knowledge in second graders. Journal of Learning Disabilities, 33(4), 325-333.
pmid: 15493095 |
[37] | Martinez, D., Georgiou, G. K., Inoue, T., Falcón, A., & Parrila, R. (2021). How does rapid automatized naming influence orthographic knowledge? Journal of Experimental Child Psychology, 204, 1-14 |
[38] |
Moll, K., Fussenegger, B., Willburger, E., & Landerl, K. (2009). RAN is not a measure of orthographic processing. Evidence from the asymmetric German orthography. Scientific Studies of Reading, 13(1), 1-25.
doi: 10.1080/10888430802631684 URL |
[39] |
Nicolson, R. I., & Fawcett, A. J. (1999). Developmental dyslexia: The role of the cerebellum. Dyslexia, 5, 155-177.
doi: 10.1002/(ISSN)1099-0909 URL |
[40] | Papadopoulos, T. C., Spanoudis, G. C., & Georgiou, G. K. (2016). How is RAN related to reading fluency? A comprehensive examination of the prominent theoretical accounts. Frontiers in Psychology, 7, Article 1217. |
[41] |
Poulsen, M., Juul, H., & Elbro, C. (2015). Multiple mediation analysis of the relationship between rapid naming and reading. Journal of Research in Reading, 38(2), 124-140.
doi: 10.1111/j.1467-9817.2012.01547.x URL |
[42] |
Powell, D., & Atkinson, L. (2021). Unraveling the links between rapid automatized naming (RAN), phonological awareness, and reading. Journal of Educational Psychology, 113(4), 706-718.
doi: 10.1037/edu0000625 URL |
[43] |
Protopapas, A., Altani, A., & Georgiou, G. K. (2013). Development of serial processing in reading and rapid naming. Journal of Experimental Child Psychology, 116(4), 914-929.
doi: 10.1016/j.jecp.2013.08.004 pmid: 24077466 |
[44] |
Protopapas, A., Katopodi, K., Altani, A., & Georgiou, G. K. (2018). Word reading fluency as a serial naming task. Scientific Studies of Reading, 22(3), 248-263.
doi: 10.1080/10888438.2018.1430804 URL |
[45] |
Rakhlin, N. V., Mourgues, C., Cardoso-Martins, C., Kornev, A. N., & Grigorenko, E. L. (2019). Orthographic processing is a key predictor of reading fluency in good and poor readers in a transparent orthography. Contemporary Educational Psychology, 56, 250-261.
doi: 10.1016/j.cedpsych.2018.12.002 pmid: 31798206 |
[46] | Reichle, E. D. (2011). Serial-attention models of reading. In S. P.Liversedge, I. D.Gilchrist, & S.Everling (Eds.), The Oxford handbook of eye movements (pp. 767-786). New York, NY, US: Oxford University Press. |
[47] |
Share, D. L., & Daniels, P. T. (2016). Aksharas, alphasyllabaries, abugidas, alphabets and orthographic depth: Reflections on Rimzhim, Katz and Fowler (2014). Writing Systems Research, 8(1), 17-31.
doi: 10.1080/17586801.2015.1016395 URL |
[48] |
Shum, K. K., & Au, T. K. (2017). Why does rapid naming predict Chinese word reading? Language Learning and Development, 13(1), 127-142.
doi: 10.1080/15475441.2016.1232651 URL |
[49] |
Torgesen, J. K., Wagner, R., & Rashotte, C. A. (1994). Longitudinal studies of phonological processing and reading. Journal of Learning Disabilities, 27(5), 276-286.
pmid: 8006506 |
[50] |
Valdois, S., Lassus-Sangosse, D., Lallier, M., Moreaud, O., & Pisella, L. (2019). What bilateral damage of the superior parietal lobes tells us about visual attention disorders in developmental dyslexia. Neuropsychologia, 130, 78-91.
doi: S0028-3932(18)30428-7 pmid: 30098328 |
[51] |
van den Boer, M., & de Jong, P. F. (2018). Stability of visual attention span performance and its relation with reading over time. Scientific Studies of Reading, 22(5), 434-441.
doi: 10.1080/10888438.2018.1472266 URL |
[52] | van Viersen, S., Protopapas, A., & de Jong, P. F. (2022). Word- and text-level processes contributing to fluent reading of word lists and sentences. Frontiers in Psychology, 12, 1664-1078. |
[53] |
Wolf, M., & Bowers, P. G. (1999). The double-deficit hypothesis for the developmental dyslexias. Journal of Educational Psychology, 91(3), 415-438.
doi: 10.1037/0022-0663.91.3.415 URL |
[54] |
Wolf, M., Bowers, P. G., & Biddle, K. (2000). Naming-speed processes, timing, and reading: A conceptual review. Journal of Learning Disabilities, 33(4), 387-407.
pmid: 15493099 |
[55] |
Zhao, J., Liu, M. l., Liu, H. l., & Huang, C. (2017). The visual attention span deficit in Chinese children with reading fluency difficulty. Research in Developmental Disabilities, 73, 76-86.
doi: 10.1016/j.ridd.2017.12.017 URL |
[56] |
Zhao, J., Wang, J. K., Huang, C., & Liang, P. P. (2022). Involvement of the dorsal and ventral attention networks in visual attention span. Human Brain Mapping, 43(6), 1941-1954.
doi: 10.1002/hbm.v43.6 URL |
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