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浙江中医药大学医学技术与信息工程学院 杭州 310053
裘若琪 本科在读; 研究方向:听力学
徐飞,E-mail: xf@zcmu.edu.cn
纸质出版日期:2023-05-15,
收稿日期:2022-10-17,
移动端阅览
裘若琪,徐飞.0~12岁婴幼儿童听觉皮层诱发电位应用研究进展[J].中国听力语言康复科学杂志,2023,21(03):286-289.
QIU Ruo-qi,XU Fei.The Application of Cortical Auditory Evoked Potential to Infants and Children Aged 0-12 Years[J].Chinese Scientific Journal of Hearing and Speech Rehabilitation,2023,21(03):286-289.
裘若琪,徐飞.0~12岁婴幼儿童听觉皮层诱发电位应用研究进展[J].中国听力语言康复科学杂志,2023,21(03):286-289. DOI: 10.3969/j.issn.1672-4933.2023.03.016.
QIU Ruo-qi,XU Fei.The Application of Cortical Auditory Evoked Potential to Infants and Children Aged 0-12 Years[J].Chinese Scientific Journal of Hearing and Speech Rehabilitation,2023,21(03):286-289. DOI: 10.3969/j.issn.1672-4933.2023.03.016.
目的
2
回顾0~12岁婴幼儿童听觉皮层诱发电位的特点、参数设置以及临床研究的最新进展,为听觉皮层诱发电位的应用提供参考。
方法
2
检索中国知网,PubMed,Cochrane,MEDLINE等数据库后整理有关听觉皮层诱发电位文献。
结果
2
根据主题筛选出27篇文献,总结得到0~12岁婴幼儿童听觉皮层诱发电位的成分特点、参数设置、临床应用和优势。
结论
2
听觉皮层诱发电位测试可用于评估是否有听力损失的儿童的听觉成熟度,听觉能力和言语可听性,可评估人工耳蜗植入等康复干预效果,在诊断听神经病变等疾病方面具有优势,虽然存在缺乏不同年龄段儿童的参考值等问题,但随着未来的优化,该测试将会被更广泛地应用于临床研究。
Objectives
2
Review the characteristics of evoked potentials in the auditory cortex of infants and children aged 0-12 years
the parameter settings
and the latest advances in clinical research. It provides a reference for the future application of evoked potentials in the auditory cortex.
Method
2
After searching databases (CNKI
PubMed
Cochrane
MEDLINE
etc.)
the literature on evoked potentials in the auditory cortex was collated.
Results
2
According to the theme
27 articles were screened out
and the compositional characteristics
parameter settings
clinical application and advantages of auditory cortex evoked potentials in infants and young children aged 0~12 years old were summarized.
Conclusion
2
Evoked potential test of the auditory cortex can be used to assess the auditory maturity
auditory ability and speech audibility of children with and without hearing loss
and can also assess the effect of rehabilitation interventions such as cochlear implantation
which has advantages in diagnosing diseases such as acoustic neuropathy
although there are still problems such as the lack of reference values for children of different ages
but with future optimization
the test will be more widely used in clinical research.
听觉皮层诱发电位婴幼儿学龄期儿童学龄前期儿童
Auditory cortex evoked potentialInfants and young childrenPreschool childrenSchool-age children
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朱斌, 孟子珅, 胡萍萍, 等. 正常听力儿童及青年失匹配负波研究[J].听力学及言语疾病杂志,2021,29(01):25-28.
Ferreira DA, Bueno CD, de Costa SS, et al. Mismatch Negativity in Children: Reference Values[J]. Int Arch Otorhinolaryngol, 2019,23(2):142-146.
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黄伟洛, 冀飞, Suzanne C, 等. 皮层诱发电位用于婴幼儿听觉功能测试[J].听力学及言语疾病杂志,2015,23(02):212-214.
Silva LAF, Magliaro FCL, Carvalho ACM, et al. Cortical maturation of long latency auditory evoked potentials in hearing children: the complex P1-N1-P2-N2[J]. Codas, 2017,29(4):e20160216.
熊晶晶, 杨影. 皮层听觉诱发电位的P1-N1-P2成分在听力障碍人群中的研究进展[J].听力学及言语疾病杂志,2019,27(05):556-560.
Sussman E, Steinschneider M, Gumenyuk V, et al. The maturation of human evoked brain potentials to sounds presented at different stimulus rates[J]. Hear Res, 2008,236(1-2):61-79.
Romero ACL, Frizzo ACF, Chagas EFB, et al. Cortical auditory evoked potential in babies and children listeners[J]. Braz J Otorhinolaryngol, 2020,86(4):395-404.
刘海红, 倪鑫. 听觉皮层诱发电位在儿童听觉感知中的应用[J].中华耳科学杂志,2015,13(03):484-487.
Brito DS, Durante AS. Automated analysis of bone-conduction cortical auditory evoked potential in normal-hearing neonates[J]. Braz J Otorhinolaryngol, 2021,87(3):290-297.
Leite RA, Magliaro FCL, Raimundo JC, et al. Monitoring auditory cortical plasticity in hearing aid users with long latency auditory evoked potentials: a longitudinal study[J]. Clinics (Sao Paulo), 2018,73:e51.
Jeong SW, Chung SH, Kim LS. P1 cortical auditory evoked potential in children with unilateral or bilateral cochlear implants; implication for the timing of second cochlear implantation[J]. Eur Arch Otorhinolaryngol, 2018,275(7):1759-1765.
Ibraheem OA, Kolkaila EA, Nada EH, et al. Auditory cortical processing in cochlear-implanted children with different language outcomes[J]. Eur Arch Otorhinolaryngol, 2020,277(7):1875-1883.
刘一迪, 郑琪, 王心雨, 等. 不同听觉任务下人工耳蜗植入儿童听觉皮层诱发电位特征研究[J].中华耳鼻咽喉头颈外科杂志,2021,56(09):943-950.
Soleimani M, Rouhbakhsh N, Rahbar N. Towards early intervention of hearing instruments using cortical auditory evoked potentials (CAEPs): A systematic review[J]. Int J Pediatr Otorhinolaryngol, 2021,144:110698.
郭倩倩, 陈雪清, 莫玲燕, 等. 皮层听觉诱发电位评估耳聋儿童助听器验配效果的意义[J].听力学及言语疾病杂志,2016,24(01):62-66.
刘一迪, 郑琪, 倪广健, 等. 双模式助听儿童的皮层听觉诱发电位特征研究[J].听力学及言语疾病杂志,2020,28(05):550-554.
杨荣, 宋亮, 魏鹏绪, 等. 皮层听觉诱发电位中内源成分在康复领域的应用分析[J].中国康复,2020,35(09):484-487.
Mao D, Innes-Brown H, Petoe MA, et al. Cortical auditory evoked potential time-frequency growth functions for fully objective hearing threshold estimation[J]. Hear Res, 2018, 370(9):74-83.
Cardon G, Sharma A. Central auditory maturation and behavioral outcome in children with auditory neuropathy spectrum disorder who use cochlear implants[J]. Int J Audiol, 2013,52(9):577-586.
McFayden TC, Baskin P, Stephens JDW, et al. Cortical Auditory Event-Related Potentials and Categorical Perception of Voice Onset Time in Children With an Auditory Neuropathy Spectrum Disorder[J]. Front Hum Neurosci, 2020,14:184-184.
Emami SF, Abdoli A. Cortical Auditory Evoked Potentials in Children with Auditory Neuropathy/Dys-Synchrony[J]. Indian J Otolaryngol Head Neck Surg, 2019,71(2):238-242.
Saki N, Nikakhlagh S, Moridi B, et al. Cortical Auditory Plasticity Following Cochlear Implantation in Children With Auditory Neuropathy Spectrum Disorder: A Prospective Study[J]. Otol Neurotol, 2021,42(9):e1227-e1233.
Koravand A, Jutras B, Lassonde M. Abnormalities in cortical auditory responses in children with central auditory processing disorder[J]. Neuroscience, 2017,346(01):135-148.
Macaskill M, Omidvar S, Koravand A. Long Latency Auditory Evoked Responses in the Identification of Children With Central Auditory Processing Disorders: A Scoping Review[J]. J Speech Lang Hear Res, 2022,65(9):3595-3619.
Didoné DD, Oliveira LS, Durante AS, et al. Cortical auditory evoked potential in assessment of neonates: a study about minimum level of responses in term and preterm newborns[J]. Braz J Otorhinolaryngol, 2020,86(6):687-695.
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