首页> 外文会议>Engineering in Medicine and Biology Society, 2004. IEMBS '04. 26th Annual International Conference of the IEEE >A new modified multi-electrode stimulation method for ECAP recording in cochlear implant
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A new modified multi-electrode stimulation method for ECAP recording in cochlear implant

机译:一种新的改进的多电极刺激方法,用于耳蜗植入物中的ECAP记录

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Cochlear implant systems are based on stimulation of the auditory nerve fibers by electrical current with implanted electrodes. In the clinical tests, based on stimulation by electrical current and recording the evoked compound action potential (CCAP) same as neural response telemetry (NRT), electrical behavior and population distribution of the nerve fibers can be evaluated. Stimulation parameter in mimicking the normal hearing can be determined by the results of these tests. Condition of these tests is different from the actual stimulation for hearing, both in amplitude and time sequence of the stimulation current pulses. Therefore, there are some problems in the mapping the test results to stimulation parameters. At this paper, we have presented a new selective nonsimultaneous multi-electrode stimulation (NSMES) method based on applying the inhibitory pre-pulses by lateral electrodes that changes the initial conditions of the fibers to focus on the target fibers. The results of simulations show that this method will penalize undesired population distribution of the remained excitable fibers and it has been distinguished from the desired one. To estimate the electrical behavior of the fibers in normal use of the system for hearing, which has much more pulse rate than the test condition, we assumed a probabilistic function for recovery time of the fibers to map the test results to hearing condition parameters. Simulation results show that the stimulation electrode array parameters can be determined more accurately by the presented modification qualitatively and quantitatively.
机译:耳蜗植入系统是基于电流和植入电极对听神经纤维的刺激。在临床测试中,基于电流刺激并记录与神经反应遥测(NRT)相同的诱发复合动作电位(CCAP),可以评估神经纤维的电行为和种群分布。可以通过这些测试的结果来确定模仿正常听力的刺激参数。这些测试的条件在刺激电流脉冲的幅度和时间顺序上都不同于实际的听力刺激。因此,在将测试结果映射到刺激参数时存在一些问题。在本文中,我们提出了一种新的选择性非同时多电极刺激(NSMES)方法,该方法基于侧电极施加抑制性预脉冲而改变了纤维的初始条件,从而专注于目标纤维。仿真结果表明,该方法将惩罚剩余的可激发纤维的不希望的种群分布,并且已经与期望的方法区分开。为了估计在听力正常使用系统中光纤的电学行为,该系统的脉冲频率比测试条件要大得多,我们假设了一个概率函数,用于恢复光纤的时间,以将测试结果映射到听力条件参数。仿真结果表明,通过所提出的修改,可以定性和定量地更准确地确定刺激电极阵列参数。

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