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使用单电极和双电极接触式掩蔽器对电听觉中兴奋的空间传播进行心理物理学评估。

Psychophysical assessment of spatial spread of excitation in electrical hearing with single and dual electrode contact maskers.

作者信息

Dingemanse J Gertjan, Frijns Johan H M, Briaire Jeroen J

机构信息

ENT Department, Leiden University Medical Centre, Leiden, The Netherlands.

出版信息

Ear Hear. 2006 Dec;27(6):645-57. doi: 10.1097/01.aud.0000246683.29611.1b.

Abstract

OBJECTIVE

To evaluate psychophysically the spatial spread of excitation in electrical hearing with a new dual contact masker and to investigate under which conditions it is possible to stimulate fibers in the immediate neighborhood of an electrode contact, which were not excited by neighboring electrode contacts.

DESIGN

In this study a psychophysical forward masking paradigm with a dual contact masker was used to avoid off-site listening, the electrical analogue of off-frequency listening. The masker stimulus (300 msec) is presented nonsimultaneously on two electrode contacts, one on the apical side and another on the basal side of the probe contact, followed by a probe stimulus of 20 msec.Unmasked probe thresholds were compared with masked ones at a number of masker-probe distances, whereas growth of masking curves were measured for a fixed masker contact pair. Standard selectivity measurements (single contact masking) and the recovery of forward masking with one masker contact were included for comparison with existing methods. All experiments were carried out with six participants who use the Clarion CII device with a HiFocus I electrode array.

RESULTS

For dual contact masking the amount of masking was significantly greater than for single contact masking and the width of the masking patterns was on average 1.1 mm broader than for single contact masking, resulting in a broad region of excitation, with masker-probe overlap for distances greater than 3 mm. Masking widths for dual and single contact masking were highly correlated. Growth of masking curves were highly nonlinear. They showed a strong elevation of the slope that starts for most subjects around the middle of the dynamic range or above. For 4 out of 6 subjects, no probe threshold was found above a masker amplitude of about 400-500 microA. The ratio of the maximum measurable masked probe thresholds and unmasked probe threshold ranged from 1.7 to 2.6 (S4 excluded). Recovery of masking functions follow an exponential decay. Time constants tau for the recovery process ranged from 21.6 msec to 114.9 msec.

CONCLUSIONS

With a dual contact masker (1) off-site listening can be avoided, leading to larger estimates of the width of excitation patterns than in single contact masking, (2) it can be estimated for which stimulation level there is complete overlap of excitation patterns of adjacent electrode contacts, (3) it can be shown that stimulation of nerve fibers in the immediate neighborhood of an electrode contact which were not excited by neighboring electrode contacts is only possible if the probe stimulation amplitude is sufficiently high in comparison with amplitudes on neighboring contacts.

摘要

目的

使用新型双触点掩蔽器对电听觉中兴奋的空间扩散进行心理物理学评估,并研究在何种条件下能够刺激电极触点紧邻区域内未被相邻电极触点激发的纤维。

设计

在本研究中,采用具有双触点掩蔽器的心理物理学前掩蔽范式来避免非目标部位听觉,即非目标频率听觉的电模拟。掩蔽刺激(300毫秒)非同时施加于两个电极触点,一个在探测触点的顶端侧,另一个在底端侧,随后施加20毫秒的探测刺激。在多个掩蔽器 - 探测刺激距离下,将未掩蔽的探测阈值与掩蔽后的阈值进行比较,同时针对固定的掩蔽器触点对测量掩蔽曲线的增长情况。还纳入了标准选择性测量(单触点掩蔽)以及一个掩蔽器触点的前掩蔽恢复情况,以便与现有方法进行比较。所有实验均由六名使用带有HiFocus I电极阵列的Clarion CII设备的参与者完成。

结果

对于双触点掩蔽,掩蔽量显著大于单触点掩蔽,且掩蔽模式的宽度平均比单触点掩蔽宽1.1毫米,从而形成一个宽广的兴奋区域,在距离大于3毫米时掩蔽器与探测刺激有重叠。双触点掩蔽和单触点掩蔽的掩蔽宽度高度相关。掩蔽曲线的增长高度非线性。它们显示出斜率的强烈上升,对于大多数受试者而言,这种上升始于动态范围的中部或以上。6名受试者中有4名,在掩蔽器幅度约为400 - 500微安以上时未发现探测阈值。最大可测量掩蔽探测阈值与未掩蔽探测阈值的比值范围为1.7至2.6(不包括S4)。掩蔽函数的恢复遵循指数衰减。恢复过程的时间常数τ范围为21.6毫秒至114.9毫秒。

结论

使用双触点掩蔽器(1)可避免非目标部位听觉,与单触点掩蔽相比,能得出更大的兴奋模式宽度估计值;(2)可以估计出相邻电极触点的兴奋模式在何种刺激水平下完全重叠;(3)可以表明,只有当探测刺激幅度与相邻触点的幅度相比足够高时,才能刺激电极触点紧邻区域内未被相邻电极触点激发的神经纤维。

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