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临床试验/NCT05230498
NCT05230498已完成不适用

Comparison of an Anatomy-based Fitting and a Conventional Fitting in Newly Implanted Cochlear Patients. Prospective Monocentric Randomized Double-blind Crossover Study.

MED-EL Elektromedizinische Geräte GesmbH2 个研究点 分布在 1 个国家目标入组 17 人开始时间: 2022年2月15日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
17
试验地点
2
主要终点
Recognition of Environmental sounds

研究概览

简要总结

Main objective:

Compare the recognition of environmental sounds with an anatomy-based fitting and with a default fitting adult patients newly implanted with a MED-EL cochlear implant.

Secondary objectives:

Compare speech recognition in quiet with an anatomy-based fitting and with a default fitting in adult patients newly implanted with a MED-EL cochlear implant.

Compare speech recognition in noise with an anatomy-based fitting and with a default fitting in adult patients newly implanted with a MED-EL cochlear implant.

详细描述

Introduction: Cochlear implantation allows the rehabilitation of profound bilateral deafness, restoring speech perception and verbal communication when the traditional hearing aid no longer provides satisfactory hearing gain. A cochlear implant includes an electrode array and its functioning is based on the principle of cochlear tonotopy: each electrode encodes a frequency spectrum according to its position in the cochlea (high frequencies are assigned to the basal electrodes and low frequencies to the apical electrodes). The cochlear implant thus breaks down the frequency spectrum into a number of frequency bands via bandpass filters corresponding to the number of electrodes in the implant. During the fitting these bands can be modified by the audiologist. The fitting software developed by the manufacturers proposed a default fitting with a lower limit between 100 and 250 Hz according to the brands and an upper limit of about 8500 Hz. The frequency bands assigned to each electrode follow a logarithmic scale with the high frequencies for the basal electrodes and the low frequencies for the apical electrodes. This distribution takes into account the number of active electrodes but does not take into account the anatomy and the natural cochlear tonotopy specific to each patient. Several studies have analyzed the anatomical variations of the cochlear dimensions: size of the cochlea and the ratio between the contact surfaces of the electrodes with the cochlea are variable from one patient to another. The insertion depth during surgery is also variable due to parameters related to the patients as well as to the operator, which seems to impact the understanding of speech in noise. Mathematical algorithms have recently been developed to estimate the cochlear tonotopy of each patient from a CT scan assessment. CT imaging of the implanted ear combined with 3D reconstruction software, provides cochlear length measurements Using this approach it is possible to measure the position of each electrode relative to the cochlear apex. Recently, MED-EL (Austria) has developed a new approach based on CT-scan and tuning of the frequencies associated with each electrode using anatomical information of position of the electrodes in the cochlea: this fitting is called anatomy-based fitting.

Main objective:

Compare the recognition of environmental sounds with an anatomy-based fitting and with a default fitting adult patients newly implanted with a MED-EL cochlear implant.

Secondary objectives:

Compare speech recognition in quiet with an anatomy-based fitting and with a default fitting in adult patients newly implanted with a MED-EL cochlear implant.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Crossover
主要目的
Other
盲法
Double (Participant, Investigator)

盲法说明

Double blind study: the patient and the investigator don't know the fitting.

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Adult patient (>= 18 years old) speaking French
  • Patient who fulfils the criteria for cochlear implantation

排除标准

  • retro-cochlear pathology: auditory neuropathy, vestibular schwannoma

结局指标

主要结局

Recognition of Environmental sounds

时间窗: at 12 weeks post-activation

The environmental sound recognition is evaluated with the Environmental Sound Identification Test (TISE, Treville-Protain et al. 2019). The patient has to recognize 24 environmental sounds. Each good answer is scored 1 yielding a total between 0 and 1 (or 0% and 100%).

次要结局

  • Speech recognition in noise(at 12 weeks post-activation)
  • Speech recognition in quiet(at 12 weeks post-activation)

研究者

发起方
MED-EL Elektromedizinische Geräte GesmbH
申办方类型
Industry
责任方
Sponsor

研究点 (2)

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