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DOI: 10.1055/s-0033-1358658
Long Latency Auditory Evoked Potential in Term and Premature Infants
Publikationsverlauf
21. August 2013
04. September 2013
Publikationsdatum:
07. November 2013 (online)

Abstract
Introduction The research in long latency auditory evokes potentials (LLAEP) in newborns is recent because of the cortical structure maturation, but studies note that these potentials may be evidenced at this age and could be considered as indicators of cognitive development.
Purpose To research the exogenous potentials in term and premature infants during their first month of life.
Materials and Methods The sample consisted of 25 newborns, 15 term and 10 premature infants. The infants with gestational age under 37 weeks were considered premature. To evaluate the cortical potentials, the infants remained in natural sleep. The LLAEPs were researched binaurally, through insertion earphones, with frequent /ba/ and rare /ga/ speech stimuli in the intensity of 80 dB HL (decibel hearing level). The frequent stimuli presented a total of 80% of the presentations, and the rare, 20%. The data were statistically analyzed.
Results The average gestational age of the term infants was 38.9 weeks (± 1.3) and for the premature group, 33.9 weeks (± 1.6). It was possible to observe only the potentials P1 and N1 in both groups, but there was no statistically significant difference for the latencies of the components P1 and N1 (p > 0.05) between the groups.
Conclusion It was possible to observe the exogenous components P1 and N1 of the cortical potentials in both term and preterm newborns of no more than 1 month of age. However, there was no difference between the groups.
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References
- 1 Cóser MJS, Cóser PL, Pedroso FS, Rigon R, Cioqueta E. P300 auditory evoked potential latency in elderly. Braz J Otorhinolaryngol 2010; 76 (3) 287-293
- 2 Kushnerenko EV. Maturation of the cortical auditory event related brain potentials in infancy [dissertation]. Helsinki, Finland: University of Helsinki, Department of Psychology; 2003
- 3 Fellman V, Kushnerenko E, Mikkola K, Ceponiene R, Leipala J, Naatanen R. Atypical auditory event-related potentials in preterm infants during the first year of life: a possible sign of cognitive dysfunction?. Pediatr Res 2004; 56 (2) 291-297
- 4 Choudhury N, Benasich AA. Maturation of auditory evoked potentials from 6 to 48 months: prediction to 3 and 4 year language and cognitive abilities. Clin Neurophysiol 2011; 122 (2) 320-338
- 5 Molfese DL, Molfese VJ. Discrimination of language skills at five years-of-age using event-related potentials recorded at birth. Dev Neuropsychol 1997; 13 (2) 135-156
- 6 Reis ACMBR, Frizzo ACF. Potencial Evocado Auditivo de Longa Latência. In: Bevilacqua MC, Martinez MAN, Balen AS, Pupu AC, Reis ACMB, Frota S, , eds. Tratado de Audiologia. São Paulo, Brasil: Santos; 2011: 231-260
- 7 Duarte JL, Alvarenga KF, Banhara MR , et al. P300-long-latency auditory evoked potential in normal hearing subjects: simultaneous recording value in Fz and Cz. Braz J Otorhinolaryngol 2009; 75 (2) 231-236
- 8 Kraus N, Mcgee T. Potenciais auditivos evocaados de longa latência. In: Katz J, , ed. Tratado de Audiologia Clínica. 4ª ed. São Paulo, Brasil: Manoele; 2002: 403-420
- 9 World Health Organization Scientist Group on Health Statistics Methodology Related to Perinatal Events. Who, Genebra, 1974, p. 32. In: Costa SMB, Costa Filho AO. , eds. O estudo dos potenciais evocados acusticamente de tronco cerebral em recém-nascidos pré-termo. Braz J Otorhinolaryngol 1998; 64 (3) 231-238
- 10 Jerger J. Clinical experience with impedance audiometry. Arch Otolaryngol 1970; 92 (4) 311-324
- 11 McPherson DL, Ballachanda BB, Kaf W. Middle and long latency evoked potential. In: Roeser RJ, Valente M, Dunn HH, , eds. Audiology: Diagnosis. New York, NY: Thieme; 2008: 443-477
- 12 Polich J. P300 in clinical applications: meaning, method and measurement. Am J EEG Technol 1991; 31: 201-231
- 13 Pasman JW, Rotteveel JJ, de Graaf R, Stegeman DF, Visco YM. The effect of preterm birth on brainstem, middle latency and cortical auditory evoked responses (BMC AERs). Early Hum Dev 1992; 31 (2) 113-129
- 14 Kushnerenko E, Ceponiene R, Balan P, Fellman V, Huotilaine M, Näätäne R. Maturation of the auditory event-related potentials during the first year of life. Neuroreport 2002; 13 (1) 47-51
- 15 Wunderlich JL, Cone-Wesson BK, Shepherd R. Maturation of the cortical auditory evoked potential in infants and young children. Hear Res 2006; 212 (1–2) 185-202
- 16 Ceponiene R, Shestakova A, Balan P, Alku P, Yiaguchi K, Näätänen R. Children's auditory event-related potentials index sound complexity and “speechness.”. Int J Neurosci 2001; 109 (3–4) 245-260
- 17 Khan RL, Raya JP, Nunes ML. Avaliação do estado comportamental durante o sono em recém-nascidos. J Epilepsy Clin Neurophysiol 2009; 15 (1) 25-29
- 18 Cheour M, Leppänen PH, Kraus N. Mismatch negativity (MMN) as a tool for investigating auditory discrimination and sensory memory in infants and children. Clin Neurophysiol 2000; 111 (1) 4-16
- 19 De Weerd AW. Atlas of EEG in the First Months of Life. Amsterdam, the Netherlands: Elsevier; 1995