Journal of Forensic Medicine ›› 2025, Vol. 41 ›› Issue (6): 559-565.DOI: 10.12116/j.issn.1004-5619.2024.240709
• Original Articles • Previous Articles Next Articles
Yan GAO1,2(
), Xia LIU2(
), Fang CHEN2, Xiao-ping YANG2, Ze-yu WANG2, Ya-ning SUN1,2, Yan-liang SHENG1(
), Wen-tao XIA2(
)
Received:2024-07-25
Online:2026-02-27
Published:2025-12-25
Contact:
Yan-liang SHENG, Wen-tao XIA
CLC Number:
Yan GAO, Xia LIU, Fang CHEN, Xiao-ping YANG, Ze-yu WANG, Ya-ning SUN, Yan-liang SHENG, Wen-tao XIA. Comparison of NB Chirp ABR and 40 Hz AERP in Normal Hearing Adults[J]. Journal of Forensic Medicine, 2025, 41(6): 559-565.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.fyxzz.cn/EN/10.12116/j.issn.1004-5619.2024.240709
| 频率 | NB Chirp ABR反应阈/( | 40 Hz AERP反应阈/( | PTA阈值/( | 平均差值/[ | |
|---|---|---|---|---|---|
| NB Chirp ABR反应阈与PTA阈值 | 40 Hz AERP反应阈与PTA阈值 | ||||
| 0.5 kHz | 15.45±5.991) | 18.55±5.651) | 6.00±5.55 | 9.45(8.42,10.48) | 12.55(11.78,13.32) |
| 1 kHz | 16.55±6.921) | 26.75±6.871) | 7.65±6.61 | 8.90(7.81,9.99) | 19.10(18.13,20.07) |
| 2 kHz | 11.55±6.841) | 27.90±6.821) | 8.20±7.30 | 3.35(2.47,4.23) | 19.70(18.51,20.89) |
| 4 kHz | 13.90±11.161) | 37.35±9.781) | 10.90±11.16 | 3.00(2.18,3.82) | 26.45(24.53,28.37) |
Tab. 1 Comparison of NB Chirp ABR response thresholds, 40 Hz AERP response thresholds,and the mean differences of each with PTA thresholds at different frequencies
| 频率 | NB Chirp ABR反应阈/( | 40 Hz AERP反应阈/( | PTA阈值/( | 平均差值/[ | |
|---|---|---|---|---|---|
| NB Chirp ABR反应阈与PTA阈值 | 40 Hz AERP反应阈与PTA阈值 | ||||
| 0.5 kHz | 15.45±5.991) | 18.55±5.651) | 6.00±5.55 | 9.45(8.42,10.48) | 12.55(11.78,13.32) |
| 1 kHz | 16.55±6.921) | 26.75±6.871) | 7.65±6.61 | 8.90(7.81,9.99) | 19.10(18.13,20.07) |
| 2 kHz | 11.55±6.841) | 27.90±6.821) | 8.20±7.30 | 3.35(2.47,4.23) | 19.70(18.51,20.89) |
| 4 kHz | 13.90±11.161) | 37.35±9.781) | 10.90±11.16 | 3.00(2.18,3.82) | 26.45(24.53,28.37) |
| 频率 | NB Chirp ABR | 40 Hz AERP |
|---|---|---|
| 0.5 kHz | 0.601 | 0.763 |
| 1 kHz | 0.672 | 0.737 |
| 2 kHz | 0.805 | 0.643 |
| 4 kHz | 0.931 | 0.580 |
Tab. 2 The correlation coefficients ( r ) between theresponse thresholds of NB Chirp ABR, 40 Hz AERP,and the PTA thresholds at different frequencies
| 频率 | NB Chirp ABR | 40 Hz AERP |
|---|---|---|
| 0.5 kHz | 0.601 | 0.763 |
| 1 kHz | 0.672 | 0.737 |
| 2 kHz | 0.805 | 0.643 |
| 4 kHz | 0.931 | 0.580 |
| [1] | JERGER J, MAULDIN L. Prediction of sensorineural hearing level from the brain stem evoked response[J]. Arch Otolaryngol,1978,104(8):456-461. doi:10.1001/archotol.1978.00790080038010 . |
| [2] | DAU T, WEGNER O, MELLERT V, et al. Auditory brainstem responses with optimized chirp signals compensating basilar-membrane dispersion[J]. J Acoust Soc Am,2000,107(3):1530-1540. doi:10.1121/1.428438 . |
| [3] | KEESLING D A, PARKER J P, SANCHEZ J T. A comparison of commercially available auditory brainstem response stimuli at a neurodiagnostic intensity level[J]. Audiol Res,2017,7(1):161. doi:10. 4081/audiores.2017.161 . |
| [4] | ROSA B C, CASTAN A T M, SILVEIRA SASSI T S DA. Standardization of latency and amplitude parameters on brainstem auditory evoked potential recording with narrow band Ichirp stimulus in normal hearing adults[J]. Audiol Commun Res,2020,25:e2268. doi:10.1590/2317-6431-2019-2268 . |
| [5] | PINTO J D, MOTTA FORNECK L L, FERREIRA L, et al. Auditory brainstem response with the iChirp stimuli in the infant’s audiological diagnosis[J]. Int J Pediatr Otorhinolaryngol,2022,154:111042. doi:10.1016/j.ijporl.2022.111042 . |
| [6] | 世界卫生组织. 世界听力报告[M].韩德民,译. 北京:人民卫生出版社,2021:32,34. |
| World Health Organization. World report on hearing[M]. HAN D M, transl. Beijing: People’s Medical Publishing House,2021:32,34. | |
| [7] | 刘博. 诊断听力学[M].北京:人民卫生出版社,2022:17. |
| LIU B. Diagnostic audiology[M]. Beijing: People’s Medical Publishing House,2022:17. | |
| [8] | 中华医学会耳鼻咽喉头颈外科学分会听力学组. 中国听性脑干反应临床操作规范专家共识(2020)[J].中华耳鼻咽喉头颈外科杂志,2020,55(4):326-331. doi:10.3760/cma.j.cn115330-20190609-00378 . |
| Subspecialty Group of Audiology, Society of Otorhinolaryngology Head and Neck Surgery, Chinese Medical Association. China expert consensus on the clinical practice of auditory brainstem response (2020)[J]. Zhonghua Er Bi Yanhou Toujing Waike Zazhi,2020,55(4):326-331. | |
| [9] | 刘霞,陈芳,杨小萍,等. 听力障碍的法医学评定标准解读[J].中国法医学杂志,2021,36(6):581-584. doi:10.13618/j.issn.1001-5728.2021.06.007 . |
| LIU X, CHEN F, YANG X P, et al. Interpretation of forensic medical assessment of the hearing disorders[J]. Zhongguo Fayixue Zazhi,2021,36(6):581-584. | |
| [10] | 范飞,武娟,邓振华. 听力学客观检测技术在法医临床学中的应用进展[J].法医学杂志,2023,39(4):360-366,372. doi:10.12116/j.issn.1004-5619.2023.230406 . |
| FAN F, WU J, DENG Z H. Application progress of objective audiological detection techniques in forensic clinical medicine[J]. Fayixue Zazhi,2023,39(4):360-366,372. | |
| [11] | SZYFTER W, DAUMAN R, DE SAUVAGE R C. 40 Hz middle latency responses to low frequency tone pips in normally hearing adults[J]. J Otolaryngol,1984,13(5):275-280. |
| [12] | 陈芳,范利华,杨小萍,等. 3种频率特异性听觉诱发电位在听力正常人中的比较[J].法医学杂志,2012,28(2):100-103. doi:10.3969/j.issn.1004-5619.2012.02.006 . |
| CHEN F, FAN L H, YANG X P, et al. Comparisons among three frequency-specific auditory evoked potentials in normal hearing adults[J]. Fayixue Zazhi,2012,28(2):100-103. | |
| [13] | 苏冬梅,许雪春,李雨铮,等. 40 Hz听觉诱发电位评估噪声作业工人听力应用价值[J].中国职业医学,2020,47(3):319-323. doi:10.11763/j.issn.2095-2619.2020.03.015 . |
| SU D M, XU X C, LI Y Z, et al. Application value of 40 Hz auditory event related potential in hearing assessment in noise-exposed workers[J]. Zhongguo Zhiye Yixue,2020,47(3):319-323. | |
| [14] | 陈芳,杨小萍,范利华. 听觉诱发电位的研究进展[J].法医学杂志,2011,27(3):211-215. doi:10.3969/j.issn.1004-5619.2011.03.015 . |
| CHEN F, YANG X P, FAN L H. The progress in the study on auditory evoked potentials[J]. Fayi-xue Zazhi,2011,27(3):211-215. | |
| [15] | 范利华,孙红,朱广友,等. 应用40 Hz听觉相关电位与听性脑干反应评估听阈[J].法医学杂志,2000,16(4):193-195,257. doi:10.3969/j.issn.1004-5619.2000.04.001 . |
| FAN L H, SUN H, ZHU G Y, et al. Evaluation of hearing thresholds of 40 Hz auditory event related potential and auditory brainstem response[J]. Fayixue Zazhi,2000,16(4):193-195,257. | |
| [16] | 程荷英,张运阁,陈燕,等. 成人CE-Chirp ABR反应阈与纯音听阈相关分析与比较[J].法医学杂志,2024,40(1):15-19. doi:10.12116/j.issn.1004-5619.2021.210101 . |
| CHENG H Y, ZHANG Y G, CHEN Y, et al. Correlation analysis and comparison of adult CEChirp ABR response threshold and pure tone hearing threshold[J]. Fayixue Zazhi,2024,40(1):15-19. | |
| [17] | 于文永,药蓉,康晓燕,等. 正常听力青年人不同刺激声下的听性脑干反应与纯音听阈测定的相关性[J].护理研究,2024,38(1):182-184. doi:10.12102/j.issn.1009-6493.2024.01.032 . |
| YU W Y, YAO R, KANG X Y, et al. Association between auditory brainstem response and pure tone hearing threshold in normal hearing young people under different stimuli[J]. Huli Yanjiu,2024,38(1):182-184. | |
| [18] | MATTIAZZI Â L, CÓSER P L, ENDRUWEIT BATTISTI I D, et al. Auditory Brainstem response electrophysiological thresholds with narrow band chirps stimuli in hearing infants[J]. Int J Pediatr Otorhinolaryngol,2023,164:111417. doi:10.1016/j.ijporl.2022.111417 . |
| [19] | 赵金晓,罗玲,史文迪. 听力损失儿童倍频程CE-Chirp听性脑干反应与行为测听相关性分析[J].中国耳鼻咽喉头颈外科,2018,25(2):83-85. doi:10.16066/ |
| j.1672-7002.2018.02.007. | |
| ZHAO J X, LUO L, SHI W D. Correlative analysis of octave band CE-Chirp ABR and behavioral auditory in children with hearing loss[J]. Zhongguo Er Bi Yanhou Toujing Waike,2018,25(2):83-85. | |
| [20] | RODRIGUES G R I, RAMOS N, LEWIS D R. Comparing auditory brainstem responses (ABRs) to toneburst and narrow band CE-chirp in young infants[J]. Int J Pediatr Otorhinolaryngol,2013,77(9):1555-1560. doi:10.1016/j.ijporl.2013.07.003 . |
| [21] | STUART A, COBB K M. Effect of stimulus and number of sweeps on the neonate auditory brainstem response[J]. Ear Hear,2014,35(5):585-588. doi:10.1097/AUD.0000000000000066 . |
| [22] | FERM I, LIGHTFOOT G. Further comparisons of ABR response amplitudes, test time, and estimation of hearing threshold using frequency-specific chirp and tone pip stimuli in newborns: Findings at 0.5 and 2 kHz[J]. Int J Audiol,2015,54(10):745-750. doi:10.3109/14992027.2015.1058978 . |
| [23] | MÜHLER R, RAHNE T, VERHEY J L. Auditory brainstem responses to broad-band chirps: Amplitude growth functions in sedated and anaesthetised infants[J]. Int J Pediatr Otorhinolaryngol,2013,77(1):49-53. doi:10.1016/j.ijporl.2012.09.028 . |
| [24] | FERREIRA L, GARDIN L, BARBIERI R B, et al. The influence of gender on brainstem auditory evoked potentials’ responses to different stimuli in newborns[J]. Audiol Commun Res,2020,25:e2152. doi:10.1590/2317-6431-2019-2152 . |
| [25] | 程龙龙,罗方亮,熊妍荷,等. 正常青年人AEPs的频率特性及其反应阈与纯音听阈的比较[J].法医学杂志,2020,36(3):305-310,315. doi:10.12116/j.issn.1004-5619.2020.03.003 . |
| CHENG L L, LUO F L, XIONG Y H, et al. Frequency characteristics of AEPs in normal young adults and comparison of their response threshold and pure tone audiometry threshold[J]. Fayixue Zazhi,2020,36(3):305-310,315. | |
| [26] | 张馨元,罗方亮,程龙龙,等. 不同频率ASSR、ABR和40 Hz AERP反应阈值的比较及其法医学应用[J].法医学杂志,2021,37(6):813-816,824. doi:10.12116/j.issn.1004-5619.2020.200913 . |
| ZHANG X Y, LUO F L, CHENG L L, et al. Comparison of ASSR, ABR and 40 Hz AERP response thresholds at different frequencies and their forensic applications[J]. Fayixue Zazhi,2021,37(6):813-816,824. |
| [1] | Ya-ning SUN, Dan-yang LI, Qing XIA, Yan GAO, Zong-shi XU, Wen-tao XIA, Hui-ming ZHOU, Xiao-meng HAN, Xiao-ying YU, Yan-liang SHENG. Frontiers and Perspectives of Artificial Intelligence in Forensic Research on CT Imaging Diagnosis of Rib Fractures [J]. Journal of Forensic Medicine, 2025, 41(6): 593-600. |
| [2] | Qiong-ying ZHENG, Xue-yi FENG, Hong-xiao DENG, Jia-xin YU, Wen-jia DUAN, Zheng QIAO, Xin WANG, Wei LIU, Ke-ming YUN, Hang CHEN, Ping XIANG. Sources of Uncertainty and Influencing Factors in the Analysis of Volatile Components in Blood Using Headspace Gas Chromatography [J]. Journal of Forensic Medicine, 2025, 41(6): 574-584. |
| [3] | Xue-yan LIU, Wei JIA, Cui-mei LIU, Zhen-dong HUA, Zhen-chuan MA, Zhi-yu LI. Qualitative Analysis of Precursor Substances of Phenyl-2-Acetone and 3,4-Methylenedioxyphenyl-2-Acetone [J]. Journal of Forensic Medicine, 2025, 41(6): 566-573. |
| [4] | Hou-ying ZOU, Yin-lei LEI, Ruo-cheng XIA, Yan SHI, Cheng-tao LI. Exploring Microbial Detection of Psychoactive Substances in Wastewater Based on Micobiome Analysis [J]. Journal of Forensic Medicine, 2025, 41(5): 468-476. |
| [5] | Han ZHANG, Xin HUANG, An-qi CHEN, Ji CHEN, Yan-fang LU, Jian-ye ZENG, Xiang WANG. Skin Microbiome: Expanding Dimensions and Challenges in Forensic Evidence [J]. Journal of Forensic Medicine, 2025, 41(5): 443-455. |
| [6] | Zhi-yong LIU, Xing-chun ZHAO, Ling CHEN, Ri-ga WU, Mei-qing YUAN, Xiao-hui CHEN, Jian ZHAO, Qu-yi XU, Chang-hui LIU, Hong-yu SUN, Chao LIU. Recommendations for the Standardization of Forensic Microbiological Analysis [J]. Journal of Forensic Medicine, 2025, 41(5): 482-493. |
| [7] | Yan GAO, Fang CHEN, Wen-tao XIA, Xiao-ping YANG, Ze-yu WANG, Ze-ren YANG, Xia LIU, Yan-liang SHENG. Research Progress of Chirp ABR and Its Application in Forensic Auditory Identification [J]. Journal of Forensic Medicine, 2025, 41(4): 387-393. |
| [8] | Wen-yan LI, Jin-feng ZHAO, Wei-chen LIU, Shi-jing LÜ, Jia-xin ZHANG, Xu-dong ZHANG, Zhi-wen WEI, Ke-ming YUN, Chao ZHANG. Toxicokinetics of Chlorfenapyr and Its Metabolites in Rats [J]. Journal of Forensic Medicine, 2025, 41(4): 380-387. |
| [9] | Li-xia WEI, Bo LIU, Xiao-yuan YANG, Xi ZHANG, Yi-feng LAN, Chao ZHANG, Juan JIA, Dan ZHANG, Zhi-wen WEI, Ke-ming YUN, Zhe CHEN. Detection of Ketamine and Norketamine Using an Aptamer-Functionalized Graphene Oxide Fluorescent Sensor [J]. Journal of Forensic Medicine, 2025, 41(4): 326-339. |
| [10] | Jia-hao LI, Jiang LING, Zi-hao CAI, Zi-yuan ZHENG, Yan-jun DING. Fluorescent Probe Development for Rapid Detection of Tiletamine Based on Copper Nanozyme and Molecular Imprinting Technology [J]. Journal of Forensic Medicine, 2025, 41(4): 355-363. |
| [11] | Zi-wen GUO, Tian-yu QIU, Yue CAO. Rapid Identification of Etomidate and Its Structural Analogues Based on Surface-Enhanced Raman Spectroscopy and Machine Learning [J]. Journal of Forensic Medicine, 2025, 41(4): 364-370. |
| [12] | Tai-shen HE, Zhong-jiang LÜ, Yi-ming SUN, Yu-yang LI, Yi YE, Yao LIN, Lin-chuan LIAO. Rapid Analysis of Cyanide Based on a Ratiometric Fluorescent Probe Using Gold Nanoclusters-Fluorescein [J]. Journal of Forensic Medicine, 2025, 41(4): 340-347. |
| [13] | Meng-yao TANG, Bo-yu HUANG, Cui-mei LIU, Xue-yan LIU, Wei JIA, Zhen-dong HUA. Rapid Screening of Etomidate and Its Analogues Using a Portable Mass Spectrometer [J]. Journal of Forensic Medicine, 2025, 41(4): 348-354. |
| [14] | Jing-chun BAO, Jing-jing ZHAO, Jiao-yong LI, Jing-hua MENG, Xiao-long WANG, Xiao-ni ZHAN, Jun YAO, Xu WU. Construction of a Competency Evaluation Model for Forensic Practitioners [J]. Journal of Forensic Medicine, 2025, 41(4): 371-379. |
| [15] | Yi-ming TIAN, Yi-bo YAN, Di WEN, Yan SHI. Research Progress on the Application of Novel Functional Materials for Rapid Detection of New Psychoactive Substances [J]. Journal of Forensic Medicine, 2025, 41(4): 314-325. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||