Healthy‐side dominance of middle‐ and long‐latency neuromagnetic fields in idiopathic sudden sensorineural hearing loss

@article{Li2006HealthysideDO,
  title={Healthy‐side dominance of middle‐ and long‐latency neuromagnetic fields in idiopathic sudden sensorineural hearing loss},
  author={L. P. H. Li and A S Shiao and L. F. Chen and David M. Niddam and S. Y. Chang and C F Lien and S. K. Lee and J. C. Hsieh},
  journal={European Journal of Neuroscience},
  year={2006},
  volume={24}
}
Any lesion along the neural axis may induce a subsequent functional reorganization at the level above. The present study used magnetoencephalography to investigate auditory‐evoked magnetic fields [a component of the middle‐latency auditory evoked fields peaking at ~50 ms (P50m) and a component of the long‐latency auditory evoked fields peaking at ~100 ms (N100m)] on stimulation of both healthy and affected ears in patients with acute unilateral idiopathic sudden sensorineural hearing loss… 
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References

SHOWING 1-10 OF 52 REFERENCES
Auditory pathway plasticity in adult humans after unilateral idiopathic sudden sensorineural hearing loss
Healthy‐side dominance of cortical neuromagnetic responses in sudden hearing loss
TLDR
This study reports for the first time, using a whole‐head neuromagnetometer with monaural stimulation of both intact and affected ears, a pattern of healthy‐side dominance for cortical neuromagnetic responses in adult patients in the early stage of idiopathic sudden sensorineural hearing loss.
Modification of auditory pathway functions in patients with hearing improvement after middle ear surgery
  • J. Vasama, J. Mäkelä, H. Ramsay
  • Medicine
    Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery
  • 1998
Whole-head mapping of middle-latency auditory evoked magnetic fields.
The effect of bilateral deafness on excitatory and inhibitory synaptic strength in the inferior colliculus
TLDR
Deafness resulted in larger LL‐ and CIC‐evoked EPSC amplitudes and durations, and bilateral cochlear ablation reduced inhibitory synaptic strength in IC neurons, and these changes may contribute to alterations in auditory coding properties following sensory deprivation.
Lateralized auditory spatial perception and the contralaterality of cortical processing as studied with functional magnetic resonance imaging and magnetoencephalography
TLDR
These data sets provide both quantification of the degree of contralaterality in the auditory pathways and insight into the locus and mechanism of the lateralized perception of spatially lateralized sounds.
Modification of neuromagnetic responses of the human auditory cortex by masking sounds
TLDR
The results suggest that the masking effects of continuous noise, seen at the auditory cortex, derive mainly from the periphery whereas the effects of sounds with intensity and frequency modulations take place at more central auditory pathways.
Age‐related functional differences between auditory cortices: a whole- head MEG study
TLDR
The findings suggest that ageing delays signal processing in the ipsilateral auditory cortex and that ageing affects consecutive AEFs in a different manner.
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