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. 2025 May 28;45(22):e1139242025.
doi: 10.1523/JNEUROSCI.1139-24.2025.

Single Neuron Contributions to the Auditory Brainstem EEG

Affiliations

Single Neuron Contributions to the Auditory Brainstem EEG

Paula T Kuokkanen et al. J Neurosci. .

Abstract

The auditory brainstem response (ABR) is an acoustically evoked EEG potential that is an important diagnostic tool for hearing loss, especially in newborns. The ABR originates from the response sequence of auditory nerve and brainstem nuclei, and a click-evoked ABR typically shows three positive peaks ("waves") within the first six milliseconds. However, an assignment of the waves of the ABR to specific sources is difficult, and a quantification of contributions to the ABR waves is not available. Here, we exploit the large size and physical separation of the barn owl first-order cochlear nucleus magnocellularis (NM) to estimate single-cell contributions to the ABR. We simultaneously recorded NM neurons' spikes and the EEG in owls of both sexes, and found that [Formula: see text] spontaneous single-cell spikes are necessary to isolate a significant spike-triggered average (STA) response at the EEG electrode. An average single-neuron contribution to the ABR was predicted by convolving the STA with the cell's peri-stimulus time histogram. Amplitudes of predicted contributions of single NM cells typically reached 32.9 ± 1.1 nV (mean ± SE, range: 2.5-162.7 nV), or [Formula: see text] (median ± SE; range from 0.01% to 1%) of the ABR amplitude. The time of the predicted peak coincided best with the peak of the ABR wave II, independent of the click sound level. Our results suggest that individual neurons' contributions to an EEG can vary widely, and that wave II of the ABR is shaped by NM units.

Keywords: EEG; auditory; avian; barn owl; brainstem; magnocellularis.

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Conflict of interest statement

The authors declare no competing financial interests.

Update of

References

    1. Abdi H (2007) Bonferroni and šidák corrections for multiple comparisons. In: Encyclopedia of measurement and statistics (Salkin N, ed), pp 103–107. Thousand Oaks, CA, US: Sage.
    1. Achor LJ, Starr A (1980) Auditory brain stem responses in the cat. I. Intracranial and extracranial recordings. Electroencephalogr Clin Neurophysiol 48:154–173. 10.1016/0013-4694(80)90301-6 - DOI - PubMed
    1. Ahlfors SP, Han J, Belliveau JW, Hämäläinen MS (2010a) Sensitivity of MEG and EEG to source orientation. Brain Topogr 23:227–232. 10.1007/s10548-010-0154-x - DOI - PMC - PubMed
    1. Ahlfors SP, Han J, Lin FH, Witzel T, Belliveau JW, Hämäläinen MS, Halgren E (2010b) Cancellation of EEG and MEG signals generated by extended and distributed sources. Hum Brain Map 31:140–149. 10.1002/hbm.20851 - DOI - PMC - PubMed
    1. Ahn J, MacLeod KM (2016) Target-specific regulation of presynaptic release properties at auditory nerve terminals in the avian cochlear nucleus. J Neurophysiol 115:1679–1690. 10.1152/jn.00752.2015 - DOI - PMC - PubMed

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