C N Jolly, B M Clopton, F A Spelman, S K Lineaweaver
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引用次数: 0
摘要
当耳蜗受到高密度电极阵列的刺激时,听神经中的电诱发电位被测量,该电极阵列的微触点(20 x 160微米)被放置在神经细胞附近。当刺激电极靠近螺旋神经节细胞时,阈值范围为8 ~ 35 microA。在耳聋的豚鼠中,利用神经记录技术测试了一种利用电刺激耳蜗来限制电流传播的多极技术。当电极接触距离神经元小于50微米时,地面四极电极驱动配置的神经激活阈值仅略高于单极刺激。在同时刺激时,单极模式和地面四极模式倾向于产生相似的生长函数(幅度和延迟)。电极相互作用通常是阶乘的,这意味着两个不同电极产生的响应(幅度增长函数)的代数和小于同时刺激相同的两个电极时。
Guinea pig auditory nerve response triggered by a high density electrode array.
The electrically evoked potential in the auditory nerve is measured when the cochlear is stimulated with a high density electrode array whose microcontacts (20 x 160 microns) are placed close to the nerve cells. Threshold range from 8 to 35 microA with the stimulating electrodes near the spiral ganglion cells. A multi-pole technique for restricting the spread of current with electrical stimulation of the cochlea is tested using neural recording in deafened guinea pigs. The ground based quadrupolar electrode driving configuration has thresholds for neural activation only slightly greater than monopolar stimulation when the electrode contacts are placed less than 50 microns from the neurons. During simultaneous stimulation the monopole and the ground based quadrupolar modes tend to generate similar growth functions (magnitude and latency). The electrode interactions are generally factorial, which means that the algebraic sum of the responses (magnitude growth functions) produced by 2 distinct electrodes is less than when the same 2 electrodes are stimulated simultaneously.