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7. Deviance detection in subthalamic neural population responses to natural stimuli in bats

8. Flexible control of vocal timing in bats enables escape from acoustic interference

10. Echolocation reverses information flow in a cortical vocalization network

11. Echolocation-related reversal of information flow in a cortical vocalization network

13. Acoustic context modulates natural sound discrimination in auditory cortex through frequency-specific adaptation

14. Correlates of deviance detection in auditory brainstem responses of bats

15. Phase-amplitude coupling profiles differ in frontal and auditory cortices

16. Bats dynamically change echolocation parameters in response to acoustic playback

17. Phase‐amplitude coupling profiles differ in frontal and auditory cortices of bats

18. Bats distress vocalizations carry fast amplitude modulations that could represent an acoustic correlate of roughness

19. Rolle von DPOAE für die Untersuchung des Gehörs verschiedener Tiermodelle

23. Dynamic adaptations in the echolocation behavior of bats in response to acoustic interference

24. Adaptations in the echolocation behavior of fruit-eating bats when orienting under challenging conditions

25. Superfast periodicities in distress vocalizations emitted by bats

26. Adaptations in the echolocation behavior of fruit-eating bats when orienting under challenging conditions

27. Neuronal coding of multiscale temporal features in communication sequences within the bat auditory cortex

28. Molecular parallelism in fast-twitch muscle proteins in echolocating mammals

29. Low-frequency spike-field coherence is a fingerprint of periodicity coding in the auditory cortex

30. Die Zeitkarte im Gehirn : wie Fledermäuse Raum in Zeit übersetzen

34. Die Zeitkarte im Gehirn : wie Fledermäuse Raum in Zeit übersetzen

35. Laminar differences in response to simple and spectro-temporally complex sounds in the primary auditory cortex of ketamine-anesthetized gerbils

36. Temporal tuning in the bat auditory cortex is sharper when studied with natural echolocation sequences

39. Vocal sequences suppress spiking in the bat auditory cortex while evoking concomitant steady-state local field potentials

40. Sharp temporal tuning in the bat auditory midbrain overcomes spectral-temporal trade-off imposed by cochlear mechanics

47. Low-frequency sound affects active micromechanics in the human inner ear

48. Lateralization of travelling wave response in the hearing organ of Bushcrickets

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