Patterns of neural degeneration in the human cochlea and auditory nerve: implications for cochlear implantation

Otolaryngol Head Neck Surg. 1997 Sep;117(3 Pt 1):220-8. doi: 10.1016/s0194-5998(97)70178-5.

Abstract

Although the identity of all the variables that may influence speech recognition after cochlear implantation is unknown, the degree of preservation of spiral ganglion cells is generally considered to be of primary importance. A series of experiments in our laboratories, directed at quantification of surviving spiral ganglion cells in the profoundly deaf, evaluation of the predictive value of a variety of clinical parameters, and the evaluation of the consequences of implantation in the inner ear, is summarized. Histologic study of the inner ears of patients who were deafened during life demonstrated that the cause of deafness accounted for 57% of the variability of spiral ganglion cell counts. Spiral ganglion cell counts were highest in individuals deafened by aminoglycoside toxicity or sudden idiopathic deafness and lowest in those deafened by postnatal viral labyrinthitis, congenital or genetic deafness, or bacterial meningitis. Study of the determinants of degeneration of the spiral ganglion revealed that degeneration is most severe in the basal compared with the apical turn and more severe when both inner and outer hair cells are absent. Unlike the findings in some experimental animal studies, no survival advantage of type II ganglion cells could be identified. There was a strong negative correlation between the degree of bony occlusion of the cochlea and the normality of the spiral ganglion cell count. However, even in specimens in which there was severe bony occlusion, significant numbers of spiral ganglion cells survived. A strong positive correlation between the diameter of the cochlear, vestibular, and eighth cranial nerves with the total spiral ganglion cell count (p < 0.001) was found. This would suggest that modern imaging techniques may be used to predict residual spiral ganglion cell population in cochlear implant candidates. Trauma from implantation of the electrode array was studied in both cadaveric human temporal bone models and temporal bones from individuals who received implants during life. A characteristic pattern of damage to the lateral cochlear wall and basilar membrane was identified in the upper basal turn. New bone formation and perielectrode fibrosis was common after cochlear implantation. Despite this significant trauma and reaction, there is no firm evidence that further degeneration of the spiral ganglion can be predicted as a consequence.

Publication types

  • Comparative Study
  • Research Support, U.S. Gov't, P.H.S.

MeSH terms

  • Aged
  • Aminoglycosides
  • Animals
  • Anti-Bacterial Agents / adverse effects
  • Basilar Membrane / injuries
  • Basilar Membrane / pathology
  • Cell Count
  • Cell Survival
  • Cochlea / injuries
  • Cochlea / pathology
  • Cochlear Implantation* / adverse effects
  • Cochlear Implantation* / instrumentation
  • Cochlear Implantation* / methods
  • Cochlear Implants / adverse effects
  • Cochlear Nerve / pathology*
  • Deafness / chemically induced
  • Deafness / congenital
  • Deafness / etiology
  • Deafness / genetics
  • Deafness / pathology
  • Deafness / surgery
  • Ear, Inner / surgery
  • Evaluation Studies as Topic
  • Female
  • Fibrosis
  • Forecasting
  • Hair Cells, Auditory, Inner / pathology
  • Hair Cells, Auditory, Outer / pathology
  • Hearing Loss, Sudden / etiology
  • Hearing Loss, Sudden / pathology
  • Humans
  • Labyrinthitis / virology
  • Male
  • Meningitis, Bacterial / complications
  • Middle Aged
  • Nerve Degeneration*
  • Osteogenesis
  • Semicircular Canals / innervation
  • Speech Perception
  • Spiral Ganglion / pathology
  • Temporal Bone / injuries
  • Temporal Bone / surgery
  • Vestibular Nerve / pathology
  • Vestibulocochlear Nerve / pathology*

Substances

  • Aminoglycosides
  • Anti-Bacterial Agents