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Clinical Trials/NCT06556160
NCT06556160CompletedNot Applicable

Basic and Clinical Studies of Cochlear Synaptopathy

CHU de Reims1 site in 1 country19 target enrollmentStarted: March 21, 2023Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
19
Locations
1
Primary Endpoint
In response to a stimulus, the neurophonic potential recorded in the form of a wave called PSTR will be characterised patients defined as normo and hearing loss based on preoperative audiometric tests

Study Overview

Brief Summary

In humans, surface electrophysiological recording of the cochlear nerve in response to a sound stimulus provides information about the integrity and function of synapses (synaptic transmission) and nerve fibre function. However, this information remains global. The investigators have preliminary data showing that it is possible to extract and characterise the functional properties of nerve fibres during otoneurosurgery in humans, and therefore to isolate the neuronal sub-populations mentioned above more precisely than is currently possible. The use of these electrophysiological data from near-field recordings, i.e. in contact with the nerve, will enable the design and improvement of a mathematical model of the human cochlea. This model will provide access to the individual responses of each nerve fibre and fill the current gap in knowledge between the functioning of these fibres and global surface recordings.

Detailed Description

During functional surgery on the cerebellopontine angle, a ball electrode is placed on the human cochlear nerve to monitor hearing. Once the electrode is in place, clicks and random noise bands will be delivered in order to analyze the cochlear electrophysiological signal produced. Depending on the characteristics recorded, this signal can be used at a given frequency and intensity to identify the populations of auditory neurons mainly involved. Prior to surgery, each patient will have been examined by the audiologist in order to determine the auditory thresholds in silence and noise, in tone and in speech, to carry out the digit test and to perform an electrocochleography and distortion products. Each result analyzed will be the subject of a further analysis using the mathematic model of the human cochlea.

Study Design

Study Type
Interventional
Allocation
Non Randomized
Intervention Model
Parallel
Primary Purpose
Basic Science
Masking
None

Eligibility Criteria

Ages
18 Years to 70 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • •Patients with normal hearing will be included:
  • •male or female
  • •over 18 and up to 70 years of age
  • •normal otoscopic examination
  • •due to undergo surgery on the cerebellopontine angle (microvascular decompression).
  • •free of neuro-sensory deafness, defined by mean hearing thresholds of less than or equal to 20 dB HL in pure tone audiometry in air conduction bilaterally on the side of the ear operated on and on the non-operated side from 0.25 to 8 kHz
  • •affiliated to a social security scheme
  • •have read the information note describing the study and have agreed in writing to take part by signing the informed consent form.
  • •Patients with a hearing impairment will be included:
  • •male or female
  • •over 18 and up to 70 years of age
  • •normal otoscopic examination
  • •due to undergo surgery on the cerebellopontine angle (microvascular decompression).
  • •have a sensorineural hearing loss defined by hearing thresholds of 20 dB HL or better from 0.25 to 2 kHz and from 20 dB HL excluded to 55 dB HL at frequencies above 2 kHz.
  • •have read the information note describing the study and have agreed in writing to take part by signing the informed consent form.

Exclusion Criteria

  • •- Patients will be excluded from the study for whom the auditory nerve is not accessible during surgery, in particular because of complete tumour invasion of the cochlear nerve (stage III and IV neuroma, advanced meningioma) or because of a particular anatomical feature not identified during the preoperative examination, making it impossible to expose the nerve for recordings (protrusion of the posterior surface of the rock).

Arms & Interventions

hearing impaired patients

Experimental

have a sensorineural hearing loss defined by hearing thresholds of 20 dB HL or better from 0.25 to 2 kHz and from 20 dB HL excluded to 55 dB HL at frequencies above 2 kHz.

Intervention: near field recording of human auditory nerve activity during retro sigmoid approach with contact electrode (Procedure)

normal hearing patients

Active Comparator

free of neuro-sensory deafness, defined by mean hearing thresholds of less than or equal to 20 dB HL in pure tone audiometry in air conduction bilaterally on the side of the ear operated on and on the non-operated side from 0.25 to 8 kHz

Intervention: near field recording of human auditory nerve activity during retro sigmoid approach with contact electrode (Procedure)

Outcomes

Primary Outcomes

In response to a stimulus, the neurophonic potential recorded in the form of a wave called PSTR will be characterised patients defined as normo and hearing loss based on preoperative audiometric tests

Time Frame: At 48 months

During ponto cerebellum retro sigmoide surgery. In response to a stimulus, the neurophonic potential recorded in the form of a wave called PSTR will be characterised patients defined as normo and hearing loss based on preoperative audiometric tests by the following indices:- the amplitude of the peak- the amplitude of the plateau- the peak to plateau ratio- the time constant for the rapid decay of the peak- the time constant for the slow decay of the peak.

Compare the amplitude and spectrum of global evoked auditory nerve activity with basic stimuli between patients defined as normo and hearing loss based on preoperative audiometric tests

Time Frame: At 48 months

During ponto cerebellum retro sigmoide surgeryelectrocochleography and distortion products.

Secondary Outcomes

  • compare the primary objective with the results obtained with a mathematical model of the human cochlea in order to improve the responses of our model.(At 48 months)

Investigators

Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (1)

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