Yıl: 2021 Cilt: 8 Sayı: 1 Sayfa Aralığı: 1 - 7 Metin Dili: İngilizce DOI: 10.14744/nci.2020.10586 İndeks Tarihi: 18-06-2021

The effects of acute hypoxia on audition:An experimental study

Öz:
OBJECTIVE: Obstructive sleep apnea syndrome (OSAS) is a health problem that has increasing importance in society. In the literature, many studies about an audition in patients with OSAS are present. In this study, the effects of hypoxia on an audition that develop during the apnea attacks in OSAS were investigated experimentally.METHODS: This study was conducted in Inonu University Audiology Laboratory after the approval of Inonu University Faculty of Medicine Experimental Animal Research Ethics Committee (Protocol Number: 2011/A-102). In this study, 15 Wistar albino rats with a weight of 250–300 g were used. Anesthesia was performed by 40 mg/kg Ketamine and 5 mg/kg Xylazine through intramuscular administration. The processes were applied in the silence. This study involved 15 rats with normal auditory functions. Only tracheotomy was performed in the control group. Auditory assays were administered with otoacoustic emis-sion (DP gram) before and after the process. In hypoxia group, hypoxia was created by making apnea attacks that lasted at least 10 seconds after the tracheotomy process. Auditory assays using DP gram were performed before tracheotomy and during hypoxia in the hypoxia group.RESULTS: In the control group, statistically significant values were not found. In the hypoxia group, statistically significant differences were detected in high frequencies.CONCLUSION: In conclusion, cochlear reply decreased in high frequencies during hypoxia that was created by apnea attacks.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • 1. Guilleminault C, Tilkian A, Dement WC. The sleep apnea syndromes. Annu Rev Med 1976;27:465–84.
  • 2. Somers VK, Dyken ME, Clary MP, Abboud FM. Sympathetic neural mechanisms in obstructive sleep apnea. J Clin Invest 1995;96:1897– 904.
  • 3. Mazurek B, Winter E, Fuchs J, Haupt H, Gross J. Susceptibility of the hair cells of the newborn rat cochlea to hypoxia and ischemia. Hear Res 2003;182:2–8.
  • 4. Cao Y, Luo Z, Tao Z, Zhu S, Li J, Shu J, Huang Z. [Article in Chinese]. Analysis of the hearing of patients with obstructive sleep apnea- hypopnea syndrome. Lin Chuang Er Bi Yan Hou Ke Za Zhi 2006;20:1–3.
  • 5. Guilleminault C, Connolly S, Winkle R, Melvin K, Tilkian A. Cyclical variation of the heart rate in sleep apnoea syndrome. Mechanisms, and usefulness of 24 h electrocardiography as a screening technique. Lancet 1984;1:126–31.
  • 6. Scharf SM. Influence of sleep state and breathing on cardiovascular function. In: Saunders NA, Sullivan CF, editors. Sleep and Breathing. New York: Marcel Decker; 1994. p. 221–39.
  • 7. Liu SL, Liu WY, Zhang YM, Jiang SM, Zhang L, Wang XH. Influence of obstructive sleep apnea-hypopnea syndrome in children on hearing problem. Zhonghua Er Bi Yan Hou Tou Jing Wai Ke Za Zhi 2005;40:660–3.
  • 8. Akyıldız N. Kulak Hastalıkları ve Mikrocerrahisi. Cilt 1. Ankara: Bilimsel TıpYayınevi; 2002. p. 1–87.
  • 9. Günhan Ö, Bilgen V, Ege Y, Apaydın F. Otoacoustic Emissions: Preliminary Results. Türk Otolaringoloji Arsivi 1995;33:267–72.
  • 10. Fabiani M. Evoked otoacoustic emissions in the study of adult sensorineural hearing loss. Br J Audiol 1993;27:131–7.
  • 11. Probst R, Lonsbury-Martin BL, Martin GK. A review of otoacoustic emissions. J Acoust Soc Am 1991;89:2027–67.
  • 12. Brown AM. Acoustic distortion from rodent ears: a comparison of responses from rats, guinea pigs and gerbils. Hear Res 1987;31:25– 37.
  • 13. Brown AM, Kemp DT. Suppressibility of the 2f1-f2 stimulated acoustic emissions in gerbil and man. Hear Res 1984;13:29–37.
  • 14. Horner KC, Lenoir M, Bock GR. Distortion product otoacoustic emissions in hearing-impaired mutant mice. J Acoust Soc Am 1985;78:1603–11.
  • 15. Brown AM, McDowell B, Forge A. Acoustic distortion products can be used to monitor the effects of chronic gentamicin treatment. Hear Res 1989;42:143–56.
  • 16. Arnold DJ, Lonsbury-Martin BL, Martin GK. High-frequency hearing influences lower-frequency distortion-product otoacoustic emissions. Arch Otolaryngol Head Neck Surg 1999;125:215–22.
  • 17. Kim DO, Paparello J, Jung MD, Smurzynski J, Sun X. Distortion product otoacoustic emission test of sensorineural hearing loss: performance regarding sensitivity, specificity and receiver operating characteristics. Acta Otolaryngol 1996;116:3–11.
  • 18. Brenda L, Lonsbury-Martin, Martin GK, Luebke AE. İşitme ve vestibüler sistemlerin fizyolojisi. In Ballenger JJ, Snow JB, editors. Şenocak D, translation editor. Otolaringoloji Baş Boyun cerrahisi. 15. baskı. İstanbul: Nobel Tıp Kitabevleri; 1996. p. 879–929.
  • 19. Rahko T, Kumpulainen P, Ihalainen H, Ojala E, Aumala O. A new analysis method for the evaluation of transient evoked otoacoustic emissions. Acta Otolaryngol Suppl 1997;529:66–8.
  • 20. Owens JJ, McCoy MJ, Lonsbury-Martin BL, Martin GK. Otoacoustic emissions in children with normal ears, middle ear dysfunction, and ventilating tubes. Am J Otol. 1993;14:34–40.
  • 21. Khvoles R, Freeman S, Sohmer H. Transient evoked otoacoustic emissions in laboratory animals. Audiology 1999;38:121–6.
  • 22. Cimino A, Speciale R, Gallina S, Cimino M, Chillura M, Lo Presti GM, et al. I potenziali evocati uditivi del tronco cerebrale nella sindrome dell’apnea ostruttiva nel sonno [Brain stem auditory evoked potentials in obstructive sleep apnea syndrome]. Acta Otorhinolaryngol Ital 1995;15:15–7.
  • 23. Ni D. Auditory brain-stem response in obstructive sleep apnea syndrome. [Article in Chinese]. Zhonghua Er Bi Yan Hou Ke Za Zhi. 1991;26:284–6, 317.
APA ÇİÇEK M, fırat koca ç, Akarcay M (2021). The effects of acute hypoxia on audition:An experimental study. , 1 - 7. 10.14744/nci.2020.10586
Chicago ÇİÇEK MEHMET TURAN,fırat koca çiğdem,Akarcay Mustafa The effects of acute hypoxia on audition:An experimental study. (2021): 1 - 7. 10.14744/nci.2020.10586
MLA ÇİÇEK MEHMET TURAN,fırat koca çiğdem,Akarcay Mustafa The effects of acute hypoxia on audition:An experimental study. , 2021, ss.1 - 7. 10.14744/nci.2020.10586
AMA ÇİÇEK M,fırat koca ç,Akarcay M The effects of acute hypoxia on audition:An experimental study. . 2021; 1 - 7. 10.14744/nci.2020.10586
Vancouver ÇİÇEK M,fırat koca ç,Akarcay M The effects of acute hypoxia on audition:An experimental study. . 2021; 1 - 7. 10.14744/nci.2020.10586
IEEE ÇİÇEK M,fırat koca ç,Akarcay M "The effects of acute hypoxia on audition:An experimental study." , ss.1 - 7, 2021. 10.14744/nci.2020.10586
ISNAD ÇİÇEK, MEHMET TURAN vd. "The effects of acute hypoxia on audition:An experimental study". (2021), 1-7. https://doi.org/10.14744/nci.2020.10586
APA ÇİÇEK M, fırat koca ç, Akarcay M (2021). The effects of acute hypoxia on audition:An experimental study. İstanbul Kuzey Klinikleri, 8(1), 1 - 7. 10.14744/nci.2020.10586
Chicago ÇİÇEK MEHMET TURAN,fırat koca çiğdem,Akarcay Mustafa The effects of acute hypoxia on audition:An experimental study. İstanbul Kuzey Klinikleri 8, no.1 (2021): 1 - 7. 10.14744/nci.2020.10586
MLA ÇİÇEK MEHMET TURAN,fırat koca çiğdem,Akarcay Mustafa The effects of acute hypoxia on audition:An experimental study. İstanbul Kuzey Klinikleri, vol.8, no.1, 2021, ss.1 - 7. 10.14744/nci.2020.10586
AMA ÇİÇEK M,fırat koca ç,Akarcay M The effects of acute hypoxia on audition:An experimental study. İstanbul Kuzey Klinikleri. 2021; 8(1): 1 - 7. 10.14744/nci.2020.10586
Vancouver ÇİÇEK M,fırat koca ç,Akarcay M The effects of acute hypoxia on audition:An experimental study. İstanbul Kuzey Klinikleri. 2021; 8(1): 1 - 7. 10.14744/nci.2020.10586
IEEE ÇİÇEK M,fırat koca ç,Akarcay M "The effects of acute hypoxia on audition:An experimental study." İstanbul Kuzey Klinikleri, 8, ss.1 - 7, 2021. 10.14744/nci.2020.10586
ISNAD ÇİÇEK, MEHMET TURAN vd. "The effects of acute hypoxia on audition:An experimental study". İstanbul Kuzey Klinikleri 8/1 (2021), 1-7. https://doi.org/10.14744/nci.2020.10586