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长期使用人工耳蜗对电诱发复合动作电位的影响。

Effects of long-term use of a cochlear implant on the electrically evoked compound action potential.

作者信息

Brown Carolyn J, Abbas Paul J, Etlert Christine P, O'Brient Sara, Oleson Jacob J

机构信息

Department of Communication Sciences and Disorders, University of Iowa, Iowa City, IA 52242, USA.

出版信息

J Am Acad Audiol. 2010 Jan;21(1):5-15. doi: 10.3766/jaaa.21.1.2.

Abstract

BACKGROUND

Since the early 1990s, it has been possible to measure electrically evoked compound action potentials (ECAPs) from Nucleus cochlear implant users. Recording the ECAP does not require active participation by the subject, and the recordings are not adversely affected by attention or sleep, making this response an ideal tool for monitoring long-term changes. Previous research from our laboratory (Hughes et al, 2001) has shown that ECAP thresholds and slope of the ECAP growth functions are relatively stable over time. However, this conclusion was based on results obtained from a fairly limited number of study participants, each of whom used the Nucleus CI24M cochlear implant and were followed for less than two years.

PURPOSE

To evaluate the effect of long-term use of a cochlear implant on ECAP thresholds and slope of the ECAP input/output function for both pediatric and adult cochlear implant recipients.

RESEARCH DESIGN

A longitudinal study that describes how ECAP thresholds and growth functions change over a period of 96 mo following initial activation. Changes over time in ECAP threshold and slope of the ECAP growth function were analyzed, and effects of the subject's age, type of CI (cochlear implant), and stimulating electrode are included in the analysis.

STUDY SAMPLE

134 Nucleus CI users participated in this study. All were profoundly deaf. This subject pool included 84 individuals (40 adults and 44 children) who used the Nucleus CI24M cochlear implant and 50 individuals (21 adults and 29 children) who used the Nucleus CI24R cochlear implant.

DATA COLLECTION AND ANALYSIS

Electrodes 5, 10, 15, and 20 were stimulated, and ECAP growth functions were measured for each subject at regular intervals following the initial activation of the device.

RESULTS

Small increases in mean ECAP thresholds were observed for both pediatric and adult CI users between an "early" visit that occurred within 3-6 mo following hookup and a "late" visit that occurred 4.8-6 yr later. For adults, the average increase in ECAP threshold was 3.94 CL (clinical programming units for Nucleus CIs). For children, the average increase was 4.16 CL. These differences, while small, were statistically significant. Slope of the ECAP growth functions measured over the same time interval did not change significantly. On average, pediatric CI users had ECAP thresholds that were 4-5 CL units higher than the adult CI recipients. The most striking outcome from this study, however, was the finding that when compared with postlingually deafened adults, pediatric CI users had ECAP growth functions that were substantially steeper. The differences between the results obtained from children and those obtained from adults were statistically significant and largely independent of device type or stimulating electrode.

CONCLUSION

Results from this study show ECAP thresholds and growth functions to change very little over a 5-6 yr observation interval suggesting that long-term use of a CI is not likely to have a significant negative impact on the response of the peripheral auditory system. Pediatric CI users were shown to have, on average, higher ECAP thresholds and steeper ECAP growth functions than postlingually deafened adult CI users. This finding suggests potential differences between the two patient populations either in terms of the current fields within the cochlea or the effective distance between the stimulating electrode and the stimulable neural tissue.

摘要

背景

自20世纪90年代初以来,已经能够测量核型人工耳蜗使用者的电诱发复合动作电位(ECAP)。记录ECAP不需要受试者积极参与,并且记录不受注意力或睡眠的不利影响,使得这种反应成为监测长期变化的理想工具。我们实验室先前的研究(休斯等人,2001年)表明,ECAP阈值和ECAP增长函数的斜率随时间相对稳定。然而,这一结论是基于从相当有限数量的研究参与者那里获得的结果,他们每人都使用核型CI24M人工耳蜗,并且随访时间不到两年。

目的

评估长期使用人工耳蜗对儿童和成人人工耳蜗接受者的ECAP阈值和ECAP输入/输出函数斜率的影响。

研究设计

一项纵向研究,描述了在初次激活后的96个月内ECAP阈值和增长函数如何变化。分析了ECAP阈值和ECAP增长函数斜率随时间的变化,并将受试者的年龄、人工耳蜗类型(CI)和刺激电极的影响纳入分析。

研究样本

134名核型CI使用者参与了本研究。所有人均为极重度耳聋。该受试者群体包括84名使用核型CI24M人工耳蜗的个体(40名成人和44名儿童)以及50名使用核型CI24R人工耳蜗的个体(21名成人和29名儿童)。

数据收集与分析

刺激电极5、10、15和20,并在设备初次激活后的定期时间间隔内为每个受试者测量ECAP增长函数。

结果

在连接后3 - 6个月内进行的“早期”访视和4.8 - 6年后进行的“晚期”访视之间,儿童和成人CI使用者的平均ECAP阈值均有小幅升高。对于成人,ECAP阈值的平均升高为3.94 CL(核型CI的临床编程单位)。对于儿童,平均升高为4.16 CL。这些差异虽然很小,但具有统计学意义。在相同时间间隔内测量的ECAP增长函数斜率没有显著变化。平均而言,儿童CI使用者的ECAP阈值比成人CI接受者高4 - 5 CL单位。然而,这项研究最显著的结果是发现,与语后聋成人相比,儿童CI使用者的ECAP增长函数要陡得多。儿童和成人获得的结果之间的差异具有统计学意义,并且在很大程度上与设备类型或刺激电极无关。

结论

本研究结果表明,在5 - 6年的观察期内,ECAP阈值和增长函数变化很小,这表明长期使用CI不太可能对周围听觉系统的反应产生重大负面影响。结果显示,儿童CI使用者平均比语后聋成人CI使用者具有更高的ECAP阈值和更陡的ECAP增长函数。这一发现表明这两类患者群体在耳蜗内的电流场或刺激电极与可刺激神经组织之间的有效距离方面可能存在差异。

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