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2,181 results on '"Interaural time difference"'

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1. Effects of Monaural Temporal Electrode Asynchrony and Channel Interactions in Bilateral and Unilateral Cochlear-Implant Stimulation.

2. Bilateral and symmetric glycinergic and glutamatergic projections from the LSO to the IC in the CBA/CaH mouse.

3. The Rapid Decline in Interaural-Time-Difference Sensitivity for Pure Tones Can Be Explained by Peripheral Filtering.

4. Auditory localization: a comprehensive practical review.

5. Dissociated Representation of Binaural Cues in Single-Sided Deafness: Implications for Cochlear Implantation.

6. The Neural Representation of Binaural Sound Localization Cues Across Different Subregions of the Chicken's Inferior Colliculus.

7. Auditory Spatial Discrimination and Sound Localization in Single-Sided Deaf Participants Provided with a Cochlear Implant.

8. Developmental fine-tuning of medial superior olive neurons mitigates their predisposition to contralateral sound sources.

9. A Mixed-Rate Strategy on a Bilaterally-Synchronized Cochlear Implant Processor Offering the Opportunity to Provide Both Speech Understanding and Interaural Time Difference Cues.

10. Rate dependent neural responses of interaural-time-difference cues in fine-structure and envelope.

11. Examining How Interaural Differences Owing to Head Rotation during Walking Improve the Distance of Auditory Obstacle Perceptions among Individuals with Visual Impairment: A Case Study in Small-Scale Blind Group.

12. Web-based psychoacoustics: Hearing screening, infrastructure, and validation.

13. Auditory Feature Driven Model Predictive Control for Sound Source Approaching.

14. Effect of a processing delay between direct and delayed sound in simulated open fit hearing aids on speech intelligibility in noise.

15. Antlion larvae localize long distant preys by a mechanism based on time difference.

16. Auditory Spatial Illusion - A Psychoacoustic Study in Young Adults.

17. Hearing ability of prairie voles (Microtus ochrogaster).

18. Age-related asymmetry in left-right ears of sound lateralization with respect to four different rise times.

19. Exploring the consequences of the diurnal preference on auditory spatial and working memory tasks.

20. Fast binaural processing but sluggish masker representation reconfiguration.

21. Auditory vertical localization in the median plane with conflicting dynamic interaural time difference and other elevation cues.

22. Web-based psychoacoustics of binaural hearing: Two validation experimentsa).

23. Randomizing spectral cues used to resolve front-back reversals in sound-source localization.

24. Spectral weighting functions for localization of complex sound. II. The effect of competing noisea).

25. High frequency hearing: A uniquely mammalian trait for sound localization.

26. Development of frequency tuning shaped by spatial cue reliability in the barn owl's auditory midbrain.

27. Lateralization of binaural envelope cues measured with a mobile cochlear-implant research processora).

28. Pitch discrimination in electric hearing with inconsistent and consistent amplitude-modulation and inter-pulse rate cuesa).

29. Doppler Frequency‐Shift Information Processing in WOx‐Based Memristive Synapse for Auditory Motion Perception.

30. Binaural Processing and Auditory Working Memory in Individuals with Tinnitus Having Normal Hearing Sensitivity.

31. Principal neuron diversity in the murine lateral superior olive supports multiple sound localization strategies and segregation of information in higher processing centers.

32. Structure and dynamics that specialize neurons for high-frequency coincidence detection in the barn owl nucleus laminaris.

33. Spatial Mechanisms for Segregation of Competing Sounds, and a Breakdown in Spatial Hearing

34. Interaural time difference sensitivity under binaural cochlear implant stimulation persists at high pulse rates up to 900 pps.

35. Lateralization of interaural time differences with mixed rates of stimulation in bilateral cochlear implant listeners.

36. Aging alters across-hemisphere cortical dynamics during binaural temporal processing.

37. Hearing Asymmetry Biases Spatial Hearing in Bimodal Cochlear-Implant Users Despite Bilateral Low-Frequency Hearing Preservation.

38. Sound localisation of low- and high-frequency sounds in cochlear implant users with single-sided deafness.

39. Effects of Abacus Training on Auditory Spatial Maturation in Children with Normal Hearing.

40. Are frog calls relatively difficult to locate by mammalian predators?

41. Aging alters across-hemisphere cortical dynamics during binaural temporal processing

42. Towards a Consensus on an ICF-Based Classification System for Horizontal Sound-Source Localization.

43. Frequency dependence of sensitivity to interaural phase differences in pure tones.

44. Azimuthal sound localization in the chicken.

45. Sensitivity to interaural level and time differences in individuals with autism spectrum disorder.

46. Sound Source Localization by Cochlear Implant Recipients with Normal Hearing in the Contralateral Ear: Effects of Spectral Content and Duration of Listening Experience.

47. The pinna enhances angular discrimination in the frontal hemifield.

48. Musicians have an advantage on a spatial-hearing task only when they are highly trained, start training early, and continue to play.

49. Binaural responses to a speech syllable are altered in children with hearing loss: Evidence from the frequency-following response.

50. Midbrain sensitivity to auditory motion studied with dichotic sweeps of broadband noise.

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