Department of Speech and Hearing Sciences, University of Washington, WA 98105, USA.
Hear Res. 2010 Dec 1;270(1-2):134-42. doi: 10.1016/j.heares.2010.08.006. Epub 2010 Aug 18.
This study examines patterns of neural activity in response to single biphasic electrical pulses, presented alone or following a forward masking pulse train, delivered by a cochlear implant. Recordings were made along the tonotopic axis of the central nucleus of the inferior colliculus (ICC) in ketamine/xylazine anesthetized guinea pigs. The partial tripolar electrode configuration was used, which provided a systematic way to vary the tonotopic extent of ICC activation between monopolar (broad) and tripolar (narrow) extremes while maintaining the same peak of activation. The forward masking paradigm consisted of a 200 ms masker pulse train (1017 pulses per second) followed 10 ms later by a single-pulse probe stimulus; the current fraction of the probe was set to 0 (monopolar), 1 (tripolar), or 0.5 (hybrid), and the fraction of the masker was fixed at 0.5. Forward masking tuning profiles were derived from the amount of masking current required to just suppress the activity produced by a fixed-level probe. These profiles were sharper for more focused probe configurations, approximating the pattern of neural activity elicited by single (non-masked) pulses. The result helps to bridge the gap between previous findings in animals and recent psychophysical data.
本研究考察了在接受耳蜗植入物单独或在跟随前向掩蔽脉冲串后呈现的单个双相电脉冲刺激下的神经活动模式。记录是在麻醉的豚鼠的下丘中央核(ICC)的音调轴线上进行的。使用部分三极电极配置,该配置提供了一种系统的方法,可在保持相同激活峰值的情况下,在单极(宽)和三极(窄)之间变化 ICC 激活的音调范围。前向掩蔽范式由 200ms 的掩蔽脉冲串(每秒 1017 个脉冲)组成,随后 10ms 后是一个单脉冲探测刺激;探测电流的分数设置为 0(单极)、1(三极)或 0.5(混合),掩蔽的分数固定为 0.5。从前向掩蔽调谐曲线可以得出所需的掩蔽电流量,以刚好抑制由固定水平的探测刺激产生的活动。对于更集中的探测配置,这些曲线更陡峭,接近由单个(未掩蔽)脉冲引起的神经活动模式。该结果有助于弥合动物和最近的心理物理数据之间的差距。