ZHANG Xin-yu,XU Zhuo,LIN Ying,et al.Review of the Impact of COVID-19 on Cochlear Implantation[J].Chinese Scientific Journal of Hearing and Speech Rehabilitation,2023,21(03):282-285.
ZHANG Xin-yu,XU Zhuo,LIN Ying,et al.Review of the Impact of COVID-19 on Cochlear Implantation[J].Chinese Scientific Journal of Hearing and Speech Rehabilitation,2023,21(03):282-285. DOI: 10.3969/j.issn.1672-4933.2023.03.015.
Review of the Impact of COVID-19 on Cochlear Implantation
Naylor G, Burke LA, Holman JA. Covid-19 Lockdown Affects Hearing Disability and Handicap in Diverse Ways: A Rapid Online Survey Study[J]. Ear and Hearing, 2020, 41(6): 1442-1449.
Aschendorff A, Arndt S, Kroger S, et al. Quality of cochlear implant rehabilitation under COVID-19 conditions[J]. HNO, 2021, 69(1): 1-6.
Rattay F. Basics of hearing theory and noise in cochlear implants[J]. Chaos Solitons & Fractals, 2000, 11(12): 1875-1884.
Jian W, Ding D, Salvi RJ. Carboplatin-induced early cochlear lesion in chinchillas[J]. Hearing Research, 2003, 181(1-2): 65-72.
Frazier KM, Hooper JE, Mostafa HH, et al. SARS-CoV-2 Virus Isolated From the Mastoid and Middle Ear: Implications for COVID-19 Precautions During Ear Surgery[J]. JAMA Otolaryngology - Head and Neck Surgery, 2020,146(10): 964-966.
Varga Z, Flammer AJ, Steiger P, et al. Endothelial cell infection and endotheliitis in COVID-19[J]. The Lancet, 2020, 395(10234):1417-1418.
Klc O, Kalcoglu MT, Cag Y, et al. Could sudden sensorineural hearing loss be the sole manifestation of COVID-19? An investigation into SARS-COV-2 in the etiology of sudden sensorineural hearing loss[J]. International Journal of Infectious Diseases, 2020, 97(12):208-211.
Coutard B, Valle C, Lamballerie XD, et al. The spike glycoprotein of the new coronavirus 2019-nCoV contains a furin-like cleavage site absent in CoV of the same clade[J]. Elsevier Public Health Emergency Collection, 2020, 176(16):1042-1047.
Lukassen S, Chua RL, Trefzer T, et al. SARS-CoV-2 receptor ACE2 and TMPRSS2 are primarily expressed in bronchial transient secretory cells[J]. The EMBO Journal, 2020, 39(10):105-114.
Matsuyama S, Nao N, Shirato K, et al. Enhanced isolation of SARS-CoV-2 by TMPRSS2-expressing cells[J]. Proceedings of the National Academy of Sciences, 2020, 117(13):7001-7003.
Walls AC, Park YJ, Tortorici MA, et al. Structure, function and antigenicity of the SARS-CoV-2 spike glycoprotein[J]. Cell, 2020, 183(4):1024-1042.
Mustafa M. Audiological profile of asymptomatic Covid-19 PCR-positive cases[J]. American Journal of Otolaryngology, 2020, 41(3):1024-1033.
Saki N, Karimi M, Bayat A. Cochlear implant failure following COVID 19: Report of two cases[J]. American Journal of Otolaryngology, 2021, 42(3):1029-1031.
Vlter C, Stckmann C, Schirmer, et al. Tablet-Based Telerehabilitation Versus Conventional Face-to-Face Rehabilitation After Cochlear Implantation: Prospective Intervention Pilot Study[J]. JMIR Rehabilitation and Assistive Technologies, 2021, 8(1): 204-205.
Swartz HA, Novick DM. Psychotherapy in the Digital Age: What We Can Learn From Interpersonal Psychotherapy[J]. American journal of psychotherapy, 2020,73(1):15-21.
Radomski A, Bagnell A, Curtis S, et al. Examining the Usage, User Experience, and Perceived Impact of an Internet-Based Cognitive Behavioral Therapy Program for Adolescents With Anxiety: Randomized Controlled Trial[J]. JMIR mental health, 2020, 7(2): 157-195.
Kronenberger WG, Montgomery CJ, Henning SC, et al. Remote Assessment of Verbal Memory in Youth with Cochlear Implants During the COVID-19 Pandemic[J]. American Journal of Speech-Language Pathology, 2021, 30(2):740-747.
Gordon KA, Daien MF, Negandhi J, et al. Exposure to Spoken Communication in Children with Cochlear Implants During the COVID-19 Lockdown[J]. JAMA Otolaryngology - Head and Neck Surgery, 2021, 147(4):368-376.
Glasberg BR, Moore B. Frequency selectivity as a function of level and frequency measured with uniformly exciting notched noise[J]. Journal of the Acoustical Society of America, 2000, 108(5): 2318-2328.
Bottalico P, Murgia S, Puglisi GE, et al. Effect of masks on speech intelligibility in auralized classrooms[J]. The Journal of the Acoustical Society of America, 2020, 148(5): 2878-2884.
Magee M, Lewis CA, Noffs G, et al. Effects of face masks on acoustic analysis and speech perception: Implications for peri-pandemic protocols[J]. The Journal of the Acoustical Society of America, 2020, 148(6): 3562-3568.
Kewley-Port D, Burkle TZ, Lee JH. Contribution of consonant versus vowel information to sentence intelligibility for young normal-hearing and elderly hearing-impaired listeners[J]. The Journal of the Acoustical Society of America, 2007, 122(4): 2365-2375.
Liberman MC, Dodds LW. Single-neuron labeling and chronic cochlear pathology. III. Stereocilia damage and alterations of threshold tuning curves[J]. Hear Res, 1984, 16(1): 55-74.
Vos TG, Dillon MT, Buss E, et al. Influence of Protective Face Coverings on the Speech Recognition of Cochlear Implant Patients[J]. The Laryngoscope, 2021, 131(6):2038-2043.
Dunn C, Stangl E, Oleson J, et al. The Influence of Forced Social Isolation on the Auditory Ecology and Psychosocial Functions of Listeners with Cochlear Implants During COVID-19 Mitigation Efforts[J]. Ear and Hearing, 2021, 42(1):20-28.