Advances in Psychological Science ›› 2020, Vol. 28 ›› Issue (8): 1273-1281.doi: 10.3724/SP.J.1042.2020.01273
• Meta-Analysis • Previous Articles Next Articles
CHEN Yu, MO Licheng, BI Rong, ZHANG Dandan()
Received:
2020-04-22
Online:
2020-08-15
Published:
2020-06-28
Contact:
ZHANG Dandan
E-mail:zhangdd05@gmail.com
CLC Number:
CHEN Yu, MO Licheng, BI Rong, ZHANG Dandan. The brain mechanism of speech perception in newborns: A meta-analysis[J]. Advances in Psychological Science, 2020, 28(8): 1273-1281.
文献 | N | 对比条件(contrast) | 主要激活位置 | 效应量 |
---|---|---|---|---|
32 | 特殊结构 > 一般结构 | 双侧颞-额 | 0.66 | |
22 | 特殊结构 > 一般结构 | 双侧颞-额(左额激活最大) | 0.33 | |
22 | 特殊结构 > 一般结构 | 双侧颞-额 | 0.34 | |
20 | 特殊结构 > 一般结构 | 双侧颞-额(左额激活最大) | 0.37 | |
24 | 特殊结构 > 一般结构 | 双侧颞-额 | 0.39 | |
24 | 特殊结构 > 一般结构 | 双侧颞-额 | 0.41 | |
18 | 特殊结构 > 一般结构 | 双侧颞-额(左额激活最大) | 0.54 |
文献 | N | 对比条件(contrast) | 主要激活位置 | 效应量 |
---|---|---|---|---|
32 | 特殊结构 > 一般结构 | 双侧颞-额 | 0.66 | |
22 | 特殊结构 > 一般结构 | 双侧颞-额(左额激活最大) | 0.33 | |
22 | 特殊结构 > 一般结构 | 双侧颞-额 | 0.34 | |
20 | 特殊结构 > 一般结构 | 双侧颞-额(左额激活最大) | 0.37 | |
24 | 特殊结构 > 一般结构 | 双侧颞-额 | 0.39 | |
24 | 特殊结构 > 一般结构 | 双侧颞-额 | 0.41 | |
18 | 特殊结构 > 一般结构 | 双侧颞-额(左额激活最大) | 0.54 |
文献 | N | 对比条件(contrast) | 主要激活位置 | 效应量 |
---|---|---|---|---|
14 | 偏差刺激 > 标准刺激 | 双颞 | 0.47 | |
13 | 偏差刺激 > 标准刺激 | 双颞 | 0.51 | |
13 | 偏差刺激 > 标准刺激 | 双颞 | 0.62 | |
6 | 偏差刺激 > 标准刺激 | 双颞 | 1.03 | |
19 | 偏差刺激 > 标准刺激 | 双颞 | 0.44 | |
10 | 偏差刺激 > 标准刺激 | 双颞 | 0.87 |
文献 | N | 对比条件(contrast) | 主要激活位置 | 效应量 |
---|---|---|---|---|
14 | 偏差刺激 > 标准刺激 | 双颞 | 0.47 | |
13 | 偏差刺激 > 标准刺激 | 双颞 | 0.51 | |
13 | 偏差刺激 > 标准刺激 | 双颞 | 0.62 | |
6 | 偏差刺激 > 标准刺激 | 双颞 | 1.03 | |
19 | 偏差刺激 > 标准刺激 | 双颞 | 0.44 | |
10 | 偏差刺激 > 标准刺激 | 双颞 | 0.87 |
文献 | N | 对比条件(contrast) | 主要激活位置 | 效应量 |
---|---|---|---|---|
12 | 左颞 > 右颞 | 左颞 | 0.65 | |
17 | 左颞 > 右颞 | 左颞 | 0.28 | |
27 | 左颞 > 右颞 | 左颞 | 2.73 |
文献 | N | 对比条件(contrast) | 主要激活位置 | 效应量 |
---|---|---|---|---|
12 | 左颞 > 右颞 | 左颞 | 0.65 | |
17 | 左颞 > 右颞 | 左颞 | 0.28 | |
27 | 左颞 > 右颞 | 左颞 | 2.73 |
*表示元分析用到的的文献 | |
[1] | 高晋健, 唐文渊. (1996). 近红外光谱仪在新生儿脑监测的临床应用. 国外医学(儿科学分册), 23(1), 7-10. |
[2] | 祁志强, 彭聃龄. (2010). 语音加工的脑机制研究: 现状、困惑及展望. 北京师范大学学报(社会科学版), (4), 40-47. |
[3] | 郑凤英, 彭少麟. (2001). Meta分析中几种常用效应值的介绍. 生态科学, 20(1, 2), 81-84. |
[4] |
Abboub, N., Nazzi, T., & Gervain, J. (2016). Prosodic grouping at birth. Brain and Language, 162, 46-59.
doi: 10.1016/j.bandl.2016.08.002 URL pmid: 27567401 |
[5] |
Alamia, A., Solopchuk, O., D'Ausilio, A., van Bever, V., Fadiga, L., Olivier, E., & Zénon, A. (2016). Disruption of Broca's area alters higher-order chunking processing during perceptual sequence learning. Journal of Cognitive Neuroscience, 28(3), 402-417.
doi: 10.1162/jocn_a_00911 URL pmid: 26765778 |
[6] |
*Arimitsu, T., Uchida-Ota, M., Yagihashi, T., Kojima, S., Watanabe, S., Hokuto, I., … Minagawa-Kawai, Y. (2011). Functional hemispheric specialization in processing phonemic and prosodic auditory changes in neonates. Frontiers in Psychology, 2, 202.
URL pmid: 21954386 |
[7] |
Benavides-Varela, S., & Mehler, J. (2015). Verbal positional memory in 7-month-olds. Child Development, 86(1), 209-223.
URL pmid: 25176617 |
[8] |
Bhat, M., Palaniswamy, H. P., Pichaimuthu, A. N., & Thomas, N. (2018). Cortical auditory evoked potentials and hemispheric specialization of speech in individuals with learning disability and healthy controls: A preliminary study. F1000Research, 7, 1939.
URL pmid: 31001413 |
[9] |
Binder, J. R. (2017). Current controversies on Wernicke's area and its role in language. Current Neurology and Neuroscience Reports, 17(8), 58.
URL pmid: 28656532 |
[10] | *Carlier-Torres, M. E. M., Harmony, T., Ricardo-garcell, J., Marroquin, J. L., & Colmenero, M. (2014). The hemodynamic response to acoustically modified syllables in premature and full term newborn infants acquired by near infrared spectroscopy. Acta Colombiana de Psicología, 17(2), 13-21. |
[11] |
Chen, S., Sun, Y., Ma, G., Yin, X., & Liang, L. (2019). The wedge insole for the treatment of knee osteoarthritis: A systematic review protocol. Medicine, 98(37), e17168.
URL pmid: 31517869 |
[12] |
Cheour, M., Martynova, O., Näätänen, R., Erkkola, R., Sillanpää, M., Kero, P., … Hämäläinen, H. (2002). Speech sounds learned by sleeping newborns. Nature, 415(6872), 599-600.
doi: 10.1038/415599a URL pmid: 11832929 |
[13] |
de Roever, I., Bale, G., Mitra, S., Meek, J., Robertson, N. J., & Tachtsidis, I. (2018). Investigation of the pattern of the hemodynamic response as measured by functional near-Infrared spectroscopy (fNIRS) studies in newborns, less than a month old: A systematic review. Frontiers in Human Neuroscience, 12, 371.
URL pmid: 30333736 |
[14] |
Ferrari, M., & Quaresima, V. (2012). A brief review on the history of human functional near-infrared spectroscopy (fNIRS) development and fields of application. NeuroImage, 63(2), 921-935.
doi: 10.1016/j.neuroimage.2012.03.049 URL pmid: 22510258 |
[15] | *Ferry, A. L., Fló, A., Brusini, P., Cattarossi, L., Macagno, F., Nespor, M. & Mehler, J. . (2016). On the edge of language acquisition: Inherent constraints on encoding multisyllabic sequences in the neonate brain. Developmental Science, 19(3), 488-503. |
[16] |
*Gervain, J., Berent, I., & Werker, J. F. (2012). Binding at birth: The newborn brain detects identity relations and sequential position in speech. Journal of Cognitive Neuroscience, 24(3), 564-574.
URL pmid: 22066581 |
[17] | *Gervain, J., Macagno, F., Cogoi, S., Peña, M., & Mehler, J. (2008). The neonate brain detects speech structure. Proceedings of the National Academy of Sciences, 105(37), 14222-14227. |
[18] | *Gómez, D. M., Berent, I., Benavides-Varela, S., Bion, R. A. H., Cattarossi, L., Nespor, M., & Mehler, J. (2014). Language universals at birth. Proceedings of the National Academy of Sciences, 111(16), 5837-5841. |
[19] |
*Kotilahti, K., Nissila, I., Nasi, T., Lipiainen, L., Noponen, T., Merilainen, P., … Fellman, V. (2010). Hemodynamic responses to speech and music in newborn infants. Human Brain Mapping, 31(4), 595-603.
URL pmid: 19790172 |
[20] |
Kudo, N., Nonaka, Y., Mizuno, N., Mizuno, K., & Okanoya, K. (2011). On-line statistical segmentation of a non-speech auditory stream in neonates as demonstrated by event-related brain potentials. Developmental Science, 14(5), 1100-1106.
URL pmid: 21884325 |
[21] |
Kujala, A., Huotilainen, M., Hotakainen, M., Lennes, M., Parkkonen, L., Fellman, V., & Näätänen, R. (2004). Speech-sound discrimination in neonates as measured with MEG. Neuroreport, 15(13), 2089-2092.
URL pmid: 15486487 |
[22] | *Mahmoudzadeh, M., Dehaene-Lambertz, G., Fournier, M., Kongolo, G., Goudjil, S., Dubois, J., … Wallois, F. (2013). Syllabic discrimination in premature human infants prior to complete formation of cortical layers. Proceedings of the National Academy of Sciences, 110(12), 4846-4851. |
[23] |
*Mahmoudzadeh, M., Wallois, F., Kongolo, G., Goudjil, S., & Dehaene-Lambertz, G. (2017). Functional maps at the onset of auditory inputs in very early preterm human neonates. Cerebral Cortex, 27(4), 2500-2512.
URL pmid: 27102655 |
[24] |
Marklund, E., Lacerda, F., & Schwarz, I.-C. (2018). Using rotated speech to approximate the acoustic mismatch negativity response to speech. Brain and Language, 176, 26-35.
URL pmid: 29172074 |
[25] |
May, L., Byers-Heinlein, K., Gervain, J., & Werker, J. F. (2011). Language and the newborn brain: does prenatal language experience shape the neonate neural response to speech? Frontiers in Psychology, 2, 222.
URL pmid: 21960980 |
[26] |
Minagawa-Kawai, Y., van der Lely, H., Ramus, F., Sato, Y., Mazuka, R., & Dupoux, E. (2011). Optical brain imaging reveals general auditory and language-specific processing in early infant development. Cerebral Cortex, 21(2), 254-261.
URL pmid: 20497946 |
[27] | Moon, C., Cooper, R. P., & Fifer, W. P. (1993). Two-day-olds prefer their native language. Infant Behavior and Development, 16(4), 495-500. |
[28] |
Paquette, N., Lassonde, M., Vannasing, P., Tremblay, J., González-Frankenberger, B., Florea, O., … Gallagher, A. (2015). Developmental patterns of expressive language hemispheric lateralization in children, adolescents and adults using functional near-infrared spectroscopy. Neuropsychologia, 68, 117-125.
URL pmid: 25576910 |
[29] | Partanen, E., Pakarinen, S., Kujala, T., & Huotilainen, M. (2013). Infants' brain responses for speech sound changes in fast multifeature MMN paradigm. Clinical Neurophysiology, 124(8), 1578-1585. |
[30] | *Peña, M., Maki, A., Kovacic, D., Dehaene-Lambertz, G., Koizumi, H., Bouquet, F., & Mehler, J. (2003). Sounds and silence: an optical topography study of language recognition at birth. Proceedings of the National Academy of Sciences, 100(20), 11702-11705. |
[31] | Peña, M., Pittaluga, E., & Mehler, J. (2010). Language acquisition in premature and full-term infants. Proceedings of the National Academy of Sciences, 107(8), 3823-3828. |
[32] | Perani, D., Saccuman, M. C., Scifo, P., Anwander, A., Spada, D., Baldoli, C., … Friederici, A. D. (2011). Neural language networks at birth. Proceedings of the National Academy of Sciences, 108(38), 16056-16061. |
[33] | Planton, S., Chanoine, V., Sein, J., Anton, J.-L., Nazarian, B., Pallier, C., & Pattamadilok, C. (2019). Top-down activation of the visuo-orthographic system during spoken sentence processing. Neuroimage, 202, 116-135. |
[34] | Saarikivi, K., Putkinen, V., Tervaniemi, M., & Huotilainen, M. (2016). Cognitive flexibility modulates maturation and music- training-related changes in neural sound discrimination. European Journal of Neuroscience, 44(2), 1815-1825. |
[35] | Saito, Y., Kondo, T., Aoyama, S., Fukumoto, R., Konishi., N., Nakamura, K., … Toshima, T. (2007). The function of the frontal lobe in neonates for response to a prosodic voice. Early Human Development, 83(4), 225-230. |
[36] | *Sambeth, A., Pakarinen, S., Ruohio, K., Fellman, V., van Zuijen, T. L., & Huotilainen, M. (2009). Change detection in newborns using a multiple deviant paradigm: A study using magnetoencephalography. Clinical Neurophysiology, 120(3), 530-538. |
[37] |
*Sato, H., Hirabayashi, Y., Tsubokura, H., Kanai, M., Ashida, T., Konishi, I., … Maki, A. (2012). Cerebral hemodynamics in newborn infants exposed to speech sounds: A whole-head optical topography study. Human Brain Mapping, 33(9), 2092-2103.
doi: 10.1002/hbm.21350 URL pmid: 21714036 |
[38] |
Schroeder, S. R., & Rembrandt, H. N. (2018). How effectively do people remember voice disordered speech? An investigation of the serial-position curve. Brain Sciences, 8( 2), 25.
doi: 10.3390/brainsci8120211 URL pmid: 30513678 |
[39] |
Telkemeyer, S., Rossi, S., Koch, S. P., Nierhaus, T., Steinbrink, J., Poeppel, D., … Wartenburger, I. (2009). Sensitivity of newborn auditory cortex to the temporal structure of sounds. Journal of Neuroscience, 29(47), 14726-14733.
doi: 10.1523/JNEUROSCI.1246-09.2009 URL pmid: 19940167 |
[40] |
Uddén, J., Ingvar, M., Hagoort, P., & Petersson, K. M. (2017). Broca's region: A causal role in implicit processing of grammars with crossed non-adjacent dependencies. Cognition, 164, 188-198.
doi: 10.1016/j.cognition.2017.03.010 URL pmid: 28453996 |
[41] |
*Vannasing, P., Florea, O., González-Frankenberger, B., Tremblay, J., Paquette, N., Safi, D., … Gallagher, A. (2016). Distinct hemispheric specializations for native and non-native languages in one-day-old newborns identified by fNIRS. Neuropsychologia, 84, 63-69.
doi: 10.1016/j.neuropsychologia.2016.01.038 URL pmid: 26851309 |
[42] | von Holzen, K., Nishibayashi, L. L., Nazzi, T. (2018). Consonant and vowel processing in word form segmentation: An infant ERP study. Brain Sciences, 8(2), 24. |
[43] |
Wenrich, K. A., Davidson, L. S., & Uchanski, R. M. (2017). Segmental and suprasegmental perception in children using hearing aids. Journal of the American Academy of Audiology, 28(10), 901-912.
doi: 10.3766/jaaa.16105 URL pmid: 29130438 |
[44] |
Zhang, D. D., Chen, Y., Hou, X. L., & Wu, Y. J. (2019). Near-infrared spectroscopy reveals neural perception of vocal emotions in human neonates. Human Brain Mapping, 40(8), 2434-2448.
URL pmid: 30697881 |
[45] |
Zhang, H. J., Dong, W. T., Dang, W. M., Quan, W. X., Tian, J., Chen, R., … Yu, X. (2015). Near-infrared spectroscopy for examination of prefrontal activation during cognitive tasks in patients with major depressive disorder: A meta- analysis of observational studies. Psychiatry and Clinical Neurosciences, 69(1), 22-33.
doi: 10.1111/pcn.12209 URL pmid: 24897940 |
[1] | LI Yadan, DU Ying, XIE Cong, LIU Chunyu, YANG Yilong, LI Yangping, QIU Jiang. A meta-analysis of the relationship between semantic distance and creative thinking [J]. Advances in Psychological Science, 2023, 31(4): 519-534. |
[2] | ZENG Runxi, LI You. The Relationship between self-efficacy and online health information seeking: A meta-analysis [J]. Advances in Psychological Science, 2023, 31(4): 535-551. |
[3] | WU Jiahui, FU Hailun, ZHANG Yuhuan. A meta-analysis of the relationship between perceived social support and student academic achievement: The mediating role of student engagement [J]. Advances in Psychological Science, 2023, 31(4): 552-569. |
[4] | GUO Ying, TIAN Xin, HU Dong, BAI Shulin, ZHOU Shuxi. The effects of shame on prosocial behavior: A systematic review and three-level meta-analysis [J]. Advances in Psychological Science, 2023, 31(3): 371-385. |
[5] | CHEN Bizhong, SUN Xiaojun. Cross-temporal changes of college students' time management disposition in the mainland of China during 1999~2020 [J]. Advances in Psychological Science, 2022, 30(9): 1968-1980. |
[6] | DU Yufei, OUYANG Huiyue, YU Lin. The relationship between grandparenting and depression in Eastern and Western cultures: A meta-analysis [J]. Advances in Psychological Science, 2022, 30(9): 1981-1992. |
[7] | ZHAO Ning, LIU Xin, LI Shu, ZHENG Rui. Nudging effect of default options: A meta-analysis [J]. Advances in Psychological Science, 2022, 30(6): 1230-1241. |
[8] | HUANG Xiaoxiao, ZHANG Yali, YU Guoliang. Prevalence of mental health problems among primary school students in Chinese mainland from 2010 to 2010:A meta-analysis [J]. Advances in Psychological Science, 2022, 30(5): 953-964. |
[9] | ZHANG Yali, JIN Juanjuan, YU Guoliang. Prevalence of mental health problems among junior high school students in Chinese mainland from 2010 to 2020: A meta-analysis [J]. Advances in Psychological Science, 2022, 30(5): 965-977. |
[10] | YU Xiaoqi, ZHANG Yali, YU Guoliang. Prevalence of mental health problems among senior high school students in mainland of China from 2010 to 2020: A meta-analysis [J]. Advances in Psychological Science, 2022, 30(5): 978-990. |
[11] | CHEN Yumeng, ZHANG Yali, YU Guoliang. Prevalence of mental health problems among college students in mainland China from 2010 to 2020: A meta-analysis [J]. Advances in Psychological Science, 2022, 30(5): 991-1004. |
[12] | WANG Jiayan, LAN Yuanmei, LI Chaoping. Challenge-hindrance stressors and innovation: A meta-analysis [J]. Advances in Psychological Science, 2022, 30(4): 761-780. |
[13] | LIN Xinqi, LUAN Yuxiang, ZHAO Kai, ZHAO Guolong. A meta-analysis of the relationship between leadership styles and employee creative performance: A self-determination perspective [J]. Advances in Psychological Science, 2022, 30(4): 781-801. |
[14] | LIU Juncai, RAN Guangming, ZHANG Qi. The neural activities of different emotion carriers and their similarities and differences: A meta-analysis of functional neuroimaging studies [J]. Advances in Psychological Science, 2022, 30(3): 536-555. |
[15] | LIU Haidan, LI Minyi. Associations between home literacy environment and children’s receptive vocabulary: A meta-analysis [J]. Advances in Psychological Science, 2022, 30(3): 556-579. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||