1.    Hasan Colak, Xiaoxuan Guo, Ester Benzaquén, Madhusagar Gurusiddappa, Anirvan Banerjee, Inyong Choi, William Sedley, and Timothy D. Griffiths. (In revision). Auditory Working Memory and Sound Segregation Ability Predict Speech-in-Noise in Adult Cochlear Implant Users.
2.    Stipancic, K. L., Crasta, D., Anand, S., Choi, I., Goodman, S., and Kuruvilla-Dugdale, M. (In revision). Anchoring Auditory Perception: The Role of Natural Reference Stimuli in Enhancing the Reliability and Validity of Dysarthria Ratings.
3.    Ahyeon Choi, Jusung Ham, Kyogu Lee, and Inyong Choi. (In press). Neural Representations of Perceptual Reorganization in the Musical Scale Illusion, Journal of Cognitive Neuroscience
4.    Jusung Ham, Ian Pope, Jinhee Kim, Hwan Shim, Bijaya Adhikari, Yu-Hsiang Wu, Kyogu Lee, Barbara G. Shinn-Cunningham, Octav Chipara, Inyong Choi. (2026). Linking Attentional Modulation to Auditory Attention Decoding: Using Co-located Stimuli with a Fixed Temporal Structure. Trends in Hearing, 30, 23312165261442999. https://doi.org/10.1177/2331216526144299 
5.    Pooseung Koh, Inyong Choi, Hyo-Jeong Lee, and Sungyoung Kim (2026), An Augmented Reality Audio-Motor Training Game (ARIA) for Improving Speech-in-Noise Perception: A Single-Arm Pilot Feasibility Study, Journal of Medical Internet Research (JMIR) Formative Research, 10 (1), e91260. 10.2196/91260
6.    Na, Y., Quan, L. D. A., Joo, H., Choi, I., & Woo, J. (2026). Neural tracking of continuous speech reveals enhanced late responses to degraded speech. Frontiers in Neuroscience, 20, 1751421. https://doi.org/10.3389/fnins.2026.1751421 
7.    Alsabbagh, N., McMurray, B., Griffiths, T. D., Berger, J. I., Lee, K., Gander, P. E., & Choi, I. (2025). Cortical oscillations predict auditory grouping in listeners with various hearing configurations. NeuroImage, 121597. https://doi.org/10.1016/j.neuroimage.2025.121597 
8.    Luong Do Anh Quan, Le Thi Trang, Inyong Choi, Jihwan Woo. (2025). Differential Electroencephalography Responses in Continuous Speech Perception Between Native and Non‐Native Speakers. Frontiers in Human Neuroscience, Volume 19. https://doi.org/10.3389/fnhum.2025.1661010 
9.    Smith, F. X., Berger, J. I., Gander, P. E., Schwalje, A., Griffiths, T. D., McMurray, B., & Choi, I. (2025). Validating the Iowa Test of Consonant Perception in a large cohort of cochlear implant users. JASA Express Letters, 5(2). https://doi.org/10.1121/10.0035804 
10.    Guo, X., Benzaquén, E., Holmes, E., Choi, I., McMurray, B., Bamiou, D. E., ... & Griffiths, T. D. (2024). British version of the Iowa test of consonant perception. JASA Express Letters, 4(12). https://doi.org/10.1121/10.0034738 
11.    Stipancic, K. L., Whelan, B. M., Laur, L., Zhao, Y., Rohl, A., Choi, I., & Kuruvilla-Dugdale, M. (2024). Tipping the scales: Indiscriminate use of interval scales to rate diverse dysarthric features. Journal of Speech, Language, and Hearing Research, 67(10), 3673-3685. https://doi.org/10.1044/2024_JSLHR-23-00785 
12.    Choi, A., Kim, H., Jo, M., Kim, S., Joung, H., Choi, I., & Lee, K. (2024). The Impact of Visual Information in Speech Perception for Individuals with Hearing Loss: A mini review. Frontiers in Psychology, 15, 1399084. https://doi.org/10.3389/fpsyg.2024.1399084 
13.    Choi, I., Gander, P. E., Berger, J. I., Woo, J., Choy, M. H., Hong, J., Colby, S., McMurray, B., & Griffiths, T. D. (2023). Spectral grouping of electrically encoded sound predicts speech-in-noise performance in cochlear implantees. Journal of Association for Research in Otolaryngology, 24, 607-617.
14.    Kocsis, Z., Jenison, R. L., Taylor, P. N., Calmus, R. M., McMurray, B., Rhone, A. E., ... & Petkov, C. I. (2023). Immediate neural impact and incomplete compensation after semantic hub disconnection. Nature Communications, 14(1), 6264.
15.    Shim, H., Gibbs, L., Rush, K., Ham, J., Kim, S., Kim, S., & Choi, I. (2023). Neural Mechanisms Related to the Enhanced Auditory Selective Attention Following Neurofeedback Training: Focusing on Cortical Oscillations. Applied Sciences, 13(14), 8499.
16.    Berger, J. I., Gander, P. E., Kim, S., Schwalje, A. T., Woo, J., Na, Y., Holmes, A., Hong, J., Dunn, C., Hansen, M., Gantz, B., McMurray, B., Griffiths, T. D., Choi, I. (2023). Neural correlates of individual differences in speech-in-noise performance in a large cohort of cochlear implant users. Ear and Hearing. 10.1097/AUD.0000000000001357
17.    Shim, H., Kim, S., Hong, J., Na, Y., Woo, J., Hansen, M., Gantz, B., Choi, I. (2023). Differences in neural encoding of speech in noise between cochlear implant users with and without preserved acoustic hearing. Hearing Research. 108649.
18.    Lee, J-H., Shim, H., Gantz, B., Choi, I. (2022). Strength of Attentional Modulation on Cortical Auditory Evoked Responses Correlates with Speech-in-Noise Performance in Bimodal Cochlear Implant Users. Trends in Hearing. 26, 23312165221141143.
19.    Thi, T.-L., Na, Y., Choi, I., Woo, J. (2022). Revealing Differential Importance of Word Category in Spoken Sentence Comprehension using Phoneme-related Representation. Journal of Integrative Neuroscience. 21 (1), 29.
20.    Kim, S., Wu, Y.-H., Bharadwaj, H., Choi, I. (2022). Effect of noise reduction on cortical speech-in-noise processing and its variance due to individual noise tolerance. Ear and Hearing. 43 (3), 849-861.
21.    Geller, J., Holmes, A., Schwalje, A., Berger, J., Gander, P., Choi, I., McMurray, B. (2021). Validation of the Iowa Test of Consonant Perception. The Journal of the Acoustical Society of America 150 (3), 2131-2153, https://doi.org/10.1121/10.0006246 
22.    Kim, S., Emory, C., Choi, I. (2021). Neurofeedback training of auditory selective attention enhances speech-in-noise perception. Frontiers in Human Neuroscience, 15, 337. https://doi.org/10.3389/fnhum.2021.676992 
23.    Kim, S., Schwalje, A., Liu, A., Gander, P., McMurray, B., Griffiths, T., Choi, I. (2021). Pre- and post-target cortical processes predict speech-in-noise performance. Neuroimage, 228, 117699. https://doi.org/10.1016/j.neuroimage.2020.117699 
24.    Yang, H., Won, J. H., Choi, I., Woo, J. (2020). A computational study to model the effect of electrode-to-auditory nerve fiber distance on spectral resolution in cochlear implant. PLoS one, 15(8), e0236784. https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0236784 
25.    Kim, S., Choi, I., Schwalje, A. T., Kim, K., Lee, J.-H. (2020). Auditory Working Memory Explains Variance in Speech Recognition in Older Listeners under Adverse Listening Conditions. Clinical Interventions in Aging, 15, 395-406. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7085334/ 
26.    Deng, Y., Choi, I., Shinn-Cunningham, B. G. (2020). Topographic specificity of alpha power during auditory spatial attention. NeuroImage, 207, 116360. https://www.sciencedirect.com/science/article/pii/S1053811919309516 
27.    Choi, I., Kim, S., Schwalje, A. (2020). Cortical dynamics of speech-in-noise understanding. Acoustical Science and Technology, 41(1), 400-403. https://www.jstage.jst.go.jp/article/ast/41/1/41_E19255/_article/-char/en 
28.    Deng, Y., Reinhart, R., Choi, I., Shinn-Cunningham, B. G. (2019). Causal links between parietal alpha activity and spatial auditory attention. eLife, 8, e51184. https://elifesciences.org/articles/51184 
29.    Deng, Y., Choi, I., Shinn-Cunningham, B., Baumgartner, R. (2019). Impoverished auditory cues limit engagement of brain networks controlling spatial selective attention. NeuroImage, 202, 116151. https://www.sciencedirect.com/science/article/abs/pii/S1053811919307426 
30.    Bharadwaj, H., Mai, A. R., Simpson, J. M., Choi, I., Heinz, M. G., Shinn-Cunningham, B. G. (2019). Non-Invasive Assays of Cochlear Synaptopathy -- Candidates and Considerations. Neuroscience, 407, 53-66. https://www.sciencedirect.com/science/article/abs/pii/S0306452219301423 
31.    Na, Y., Choi, I., Jang, D. P., Kang, J. K., Woo, J. (2019). Semantic-hierarchical model improves classification of spoken-word evoked electrocorticography. Journal of Neuroscience Methods, 311, 253-258. https://www.sciencedirect.com/science/article/abs/pii/S0165027018303480 
32.    Bonnard, D., Schwalje, A., Gantz, B., Choi, I. (2018). Electric and acoustic harmonic integration predicts speech-in-noise performance in hybrid cochlear implant users. Hearing Research, 367, 223-230. https://www.sciencedirect.com/science/article/abs/pii/S0378595518300959 
33.    Pak, J., Choi, I., Jin, Y. G., Shin, J. W. (2017). Multichannel speech reinforcement based on binaural unmasking. Signal Processing, 139, 165-172. https://www.sciencedirect.com/science/article/pii/S0165168417301615 
34. Yang, H., An, S., Jeong, J., Choi, I., Woo, J. (2016). Automatic Directional-gain Control for Binaural Hearing Aids using Geomagnetic Sensors. Journal of Biomedical Engineering Research, 37(6), 209-214. https://www.koreascience.or.kr/article/JAKO201608967046864.page 
35. Kim, C. S., Kim, S. Y., Choi, H., Koo, J.-W., Yoo, S.-Y., An, G. S., Lee, K., Choi, I., Song, J.-J. (2016). Transmastoid reshaping of the sigmoid sinus: preliminary study of a novel surgical method to quiet pulsatile tinnitus of an unrecognized vascular origin. Journal of Neurosurgery, 125(2), 441-449. https://thejns.org/view/journals/j-neurosurg/125/2/article-p441.xml 
36. Song, J.-J., An, G. S., Choi, I., Ridder, D. D., Kim, S. Y., Choi, H. S., Park, J. H., Choi, B. Y., Koo, J.-W., Lee, K. (2016). Objectification and differential diagnosis of vascular pulsatile tinnitus by transcanal sound recording and spectrotemporal analysis: A preliminary study. Otology & Neurotology, 37(6). https://journals.lww.com/otology-neurotology/Abstract/2016/07000/Objectification_and_Differential_Diagnosis_of.1.aspx 
37. Kim, S. H., An, G. S., Choi, I., Koo, J.-W., Lee, K., Song, J.-J. (2016). Pre-treatment objective diagnosis and post-treatment outcome evaluation in patients with vascular pulsatile tinnitus using transcanal recording and spectro-temporal analysis. PLoS One, 11(6), e0157722. https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0157722 
38. Choi, I. (2016). Recent Studies on Supra-Threshold Auditory Processing Deficits. Audiology and Speech Research, 12(Suppl 1), S21-S23. https://www.e-asr.org/journal/view.php?number=290 
39. Choi, I., Bharadwaj, H., Bressler, S., Loui, P., Lee, K., Shinn-Cunningham, B. G. (2014). Automatic processing of abstract musical tonality. Frontiers in Human Neuroscience, 8, 988. https://www.frontiersin.org/articles/10.3389/fnhum.2014.00988/full 
40. Choi, I., Wang, L., Bharadwaj, H., Shinn-Cunningham, B. G. (2014). Individual differences in attentional modulation of cortical responses correlate with selective attention performance. Hearing Research, 314, 10-19. https://www.sciencedirect.com/science/article/abs/pii/S0378595514000744 
41. Seo, J. H., Chon, S. B., Sung, K. M., Choi, I. (2013). Perceptual Objective Quality Evaluation Method for High Quality Multichannel Audio Codecs. Journal of the Audio Engineering Society, 61(7/8), 535-545. https://www.aes.org/e-lib/browse.cfm?elib=16869 
42. Choi, I., Rajaram, S., Varghese, L. A., Shinn-Cunningham, B. G. (2013). Quantifying attentional modulation of auditory-evoked cortical responses from single-trial electroencephalography. Frontiers in Human Neuroscience, 7. https://www.frontiersin.org/articles/10.3389/fnhum.2013.00115/full 
43. Seo, J.-H., Choi, I., Chon, S. B., Sung, K.-M. (2011). An Improved Method for Objective Quality Assessment of Multichannel Audio Codecs. IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, 94(8), 1747-1752. https://www.jstage.jst.go.jp/article/transfun/E94.A/8/E94.A_8_1747/_article 
44. Choi, I., Shinn-Cunningham, B. G., Chon, S. B., Sung, K.-M. (2008). Objective measurement of perceived auditory quality in multichannel audio compression coding systems. Journal of the Audio Engineering Society, 56(1/2), 3-17. https://www.aes.org/e-lib/browse.cfm?elib=14371 
45. Chon, S. B., Choi, I. Y., Lee, M.-G., Sung, K.-M. (2007). Objectively Quantified Consonance of Complex Sounds. Journal of the Acoustical Society of Korea, 26(7), 323-327. http://ocean.kisti.re.kr/IS_mvpopo001P.do?method=multMain&poid=ask&free 
46. Chon, S. B., Choi, I. Y., Seo, J., K.-M. (2005). Variable Bit Quantization for Virtual Source Location Information in Spatial Audio Coding. Lecture Notes in Computer Science, 3767, 709-719. https://link.springer.com/chapter/10.1007/11581772_62