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下丘层内刺激促进听觉皮层中频率特异性的激活。

Intralaminar stimulation of the inferior colliculus facilitates frequency-specific activation in the auditory cortex.

机构信息

School of Psychological Science, La Trobe University, Bundoora Campus, Victoria 3086, Australia.

出版信息

J Neural Eng. 2013 Aug;10(4):046008. doi: 10.1088/1741-2560/10/4/046008. Epub 2013 Jun 26.

Abstract

OBJECTIVE

Auditory midbrain implants (AMI) provide inadequate frequency discrimination for open set speech perception. AMIs that can take advantage of the tonotopic laminar of the midbrain may be able to better deliver frequency specific perception and lead to enhanced performance. Stimulation strategies that best elicit frequency specific activity need to be identified. This research examined the characteristic frequency (CF) relationship between regions of the auditory cortex (AC), in response to stimulated regions of the inferior colliculus (IC), comparing monopolar, and intralaminar bipolar electrical stimulation.

APPROACH

Electrical stimulation using multi-channel micro-electrode arrays in the IC was used to elicit AC responses in anaesthetized male hooded Wistar rats. The rate of activity in AC regions with CFs within 3 kHz (CF-aligned) and unaligned CFs was used to assess the frequency specificity of responses.

MAIN RESULTS

Both monopolar and bipolar IC stimulation led to CF-aligned neural activity in the AC. Altering the distance between the stimulation and reference electrodes in the IC led to changes in both threshold and dynamic range, with bipolar stimulation with 400 µm spacing evoking the lowest AC threshold and widest dynamic range. At saturation, bipolar stimulation elicited a significantly higher mean spike count in the AC at CF-aligned areas than at CF-unaligned areas when electrode spacing was 400 µm or less. Bipolar stimulation using electrode spacing of 400 µm or less also elicited a higher rate of elicited activity in the AC in both CF-aligned and CF-unaligned regions than monopolar stimulation. When electrodes were spaced 600 µm apart no benefit over monopolar stimulation was observed. Furthermore, monopolar stimulation of the external cortex of the IC resulted in more localized frequency responses than bipolar stimulation when stimulation and reference sites were 200 µm apart.

SIGNIFICANCE

These findings have implications for the future development of AMI, as a bipolar stimulation strategy may improve the ability of implant users to discriminate between frequencies.

摘要

目的

听觉中脑植入物(AMI)在开放式语音感知中提供不足的频率辨别能力。能够利用中脑的音调层状结构的 AMI 可能能够更好地传递频率特异性感知,并提高性能。需要确定最佳激发频率特异性活动的刺激策略。本研究通过比较单极和层内双极电刺激,检查了听觉皮层(AC)区域与下丘(IC)刺激区域之间的特征频率(CF)关系,以响应刺激。

方法

使用多通道微电极阵列在 IC 中进行电刺激,以诱发出麻醉雄性 Hooded Wistar 大鼠的 AC 反应。使用 CF 对齐(CF-aligned)和未对齐 CF 的 AC 区域的活动率来评估响应的频率特异性。

主要结果

单极和双极 IC 刺激均导致 AC 中 CF-aligned 神经活动。改变 IC 中刺激和参考电极之间的距离会导致阈值和动态范围发生变化,400 µm 间隔的双极刺激产生的 AC 阈值最低,动态范围最宽。在饱和时,当电极间距为 400 µm 或更小时,双极刺激在 CF-aligned 区域比在 CF-unaligned 区域诱发的 AC 平均尖峰计数显着更高。当电极间距为 400 µm 或更小时,双极刺激在 CF-aligned 和 CF-unaligned 区域中也比单极刺激诱发更高的 AC 激发活性率。当电极间距为 600 µm 时,与单极刺激相比,没有观察到优势。此外,当刺激和参考位点相距 200 µm 时,与双极刺激相比,IC 外部皮层的单极刺激导致更局部的频率响应。

意义

这些发现对 AMI 的未来发展具有意义,因为双极刺激策略可能会提高植入物使用者区分频率的能力。

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