Otto Kevin J, Rousche Patrick J, Kipke Daryl R
Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI 48109-2125, USA.
J Neural Eng. 2005 Jun;2(2):42-51. doi: 10.1088/1741-2560/2/2/005. Epub 2005 May 31.
Electrical activation of the auditory cortex has been shown to elicit an auditory sensation; however, the perceptual effects of auditory cortical microstimulation delivered through penetrating microelectrodes have not been clearly elucidated. This study examines the relationship between electrical microstimulus location within the adult rat auditory cortex and the subsequent behavior induced. Four rats were trained on an auditory frequency discrimination task and their lever-pressing behavior in response to stimuli of intermediate auditory frequencies was quantified. Each trained rat was then implanted with a microwire array in the auditory cortex of the left hemisphere. Best frequencies (BFs) of each electrode in the array were determined by both local field potential and multi-unit spike-rate activity evoked by pure tone stimuli. A cross-dimensional psychophysical generalization paradigm was used to evaluate cortical microstimulation-induced behavior. Using the BFs of each electrode, the microstimulation-induced behavior was evaluated relative to the auditory-induced behavior. Microstimulation resulted in behavior that was dependent on the BFs of the electrodes used for stimulation. These results are consistent with recent reports indicating that electrophysiological recordings of neural responses to sensory stimuli may provide insight into the sensation generated by electrical stimulation of the same sensory neural tissue.
听觉皮层的电激活已被证明能引发听觉感受;然而,通过穿透性微电极进行的听觉皮层微刺激的感知效应尚未得到明确阐释。本研究考察了成年大鼠听觉皮层内电微刺激位置与随后诱发行为之间的关系。对四只大鼠进行听觉频率辨别任务训练,并对它们在响应中等听觉频率刺激时的压杆行为进行量化。然后,给每只经过训练的大鼠在左半球听觉皮层植入一个微丝阵列。通过局部场电位和纯音刺激诱发的多单元放电率活动来确定阵列中每个电极的最佳频率(BFs)。使用跨维度心理物理泛化范式来评估皮层微刺激诱发的行为。利用每个电极的最佳频率,相对于听觉诱发行为来评估微刺激诱发的行为。微刺激导致的行为取决于用于刺激的电极的最佳频率。这些结果与最近的报告一致,这些报告表明,对感觉刺激的神经反应的电生理记录可能有助于深入了解对相同感觉神经组织进行电刺激所产生的感觉。