Badi Arunkumar N, Owa Anthony O, Shelton Clough, Normann Richard A
Department of Bioengineering, University of Utah, Salt Lake City, Utah 84112, USA.
Otol Neurotol. 2007 Jan;28(1):16-24. doi: 10.1097/01.mao.0000244368.70190.38.
OBJECTIVES/HYPOTHESIS: We have previously reported feline electrophysiological and anatomical studies focused on the development of an intraneural auditory neuroprosthesis. Because only the tips of the electrodes implanted in the cochlear nerve are the stimulating elements that abut the nerve axons, we hypothesize that intraneural stimulation will be highly focal in nature. In this article, we report the electrophysiological characterization of the selective activation of subpopulations of cochlear nerve fibers via electrodes implanted in feline cochlear nerve.
We have used a forward-masking paradigm to estimate the extent of stimulation overlap produced by pairs of electrodes implanted into the cochlear nerve.
The technique uses sequential stimulation via masking and probe electrodes and monitoring of the electrically evoked auditory brain stem response as an index of cochlear nerve fiber recruitment. We investigated overlap in all possible electrode pair combinations.
Many electrode pairs manifest virtually no overlap in the subpopulations of fibers excited by perithreshold stimuli, whereas most had considerable overlap at higher stimulation levels. However, we also noted that our measured overlap was similar across electrodes possibly because of lack of specificity of the whole nerve electrically evoked auditory brain stem response as an assay for this parameter. These findings indicate that direct cochlear nerve stimulation via intraneural electrodes provides selective excitation of small subpopulations of cochlear nerve fibers, and suggest that cochlear nerve stimulation may selectively evoke narrow-band frequency percepts.
目的/假设:我们之前报道了专注于神经内听觉神经假体开发的猫科动物电生理和解剖学研究。由于植入耳蜗神经的电极只有尖端是与神经轴突相邻的刺激元件,我们假设神经内刺激本质上具有高度的局灶性。在本文中,我们报告了通过植入猫科动物耳蜗神经的电极对耳蜗神经纤维亚群进行选择性激活的电生理特征。
我们使用了前向掩蔽范式来估计植入耳蜗神经的电极对产生的刺激重叠程度。
该技术通过掩蔽电极和探测电极进行顺序刺激,并监测电诱发听觉脑干反应作为耳蜗神经纤维募集的指标。我们研究了所有可能的电极对组合中的重叠情况。
许多电极对在阈下刺激激发的纤维亚群中几乎没有重叠,而大多数在较高刺激水平时有相当大的重叠。然而,我们也注意到,我们测量的电极间重叠情况相似,这可能是因为作为该参数检测方法的全神经电诱发听觉脑干反应缺乏特异性。这些发现表明,通过神经内电极直接刺激耳蜗神经可对耳蜗神经纤维的小亚群进行选择性激发,并表明耳蜗神经刺激可能选择性地诱发窄带频率感知。