School of Psychological Science, La Trobe University, Bundoora, Victoria, Australia.
J Comp Neurol. 2010 Oct 15;518(20):4226-42. doi: 10.1002/cne.22450.
A major limitation of the present auditory brainstem implant (ABI) is its inability to access the tonotopic organization of the ventral cochlear nucleus (VCN). A previous study by our group indicated that stimulation of single sites within a given VCN frequency region did not always elicit frequency-specific responses within the central nucleus of the inferior colliculus (CIC) and in some cases did not elicit a response at all. For this study, we hypothesized that sequential stimulation (with a short interpulse delay of 320 μsec) of two VCN sites in similar frequency regions would enhance responsiveness in CIC neurons. Multiunit neural recordings in response to pure tones were obtained at 58 VCN and 164 CIC sites in anesthetized rats. Among the 58 VCN sites, 39 pairs of sites with similar characteristic frequencies were chosen for electrical stimulation. Each member of a VCN pair was electrically stimulated individually, followed by sequential stimulation of the pair, while recording CIC responses. On average, CIC sites were found to respond to dual-site VCN stimulation with significantly lower thresholds, wider dynamic ranges, a greater extent of activation with increasing current levels, and a higher degree of frequency specificity compared with single-site stimulation. Although these effects were positive for the most part, in some cases dual-site stimulation resulted in increased CIC thresholds and decreased dynamic ranges, extent of activation, and frequency specificity. The results suggest that multisite stimulation within VCN isofrequency laminae using penetrating electrodes could significantly improve ABI stimulation strategies and implant performance.
目前听觉脑干植入物(ABI)的一个主要限制是其无法访问腹侧耳蜗核(VCN)的音调组织。我们小组的先前研究表明,刺激给定 VCN 频率区域内的单个部位并不总是在中脑下丘(CIC)的中央核内引起频率特异性反应,并且在某些情况下根本没有引起反应。在这项研究中,我们假设在相似频率区域中的两个 VCN 部位的顺序刺激(脉冲间隔延迟 320 μsec)将增强 CIC 神经元的反应性。在麻醉大鼠的 58 个 VCN 和 164 个 CIC 部位获得了对纯音的多单位神经记录。在 58 个 VCN 部位中,选择了具有相似特征频率的 39 对部位进行电刺激。VCN 对的每个成员都单独进行电刺激,然后对该对进行顺序刺激,同时记录 CIC 反应。平均而言,与单部位刺激相比,CIC 部位对双部位 VCN 刺激的响应具有明显更低的阈值、更宽的动态范围、随着电流水平增加而更大的激活程度以及更高的频率特异性。尽管这些效果在大多数情况下是积极的,但在某些情况下,双部位刺激会导致 CIC 阈值增加、动态范围、激活程度和频率特异性降低。结果表明,使用穿透电极在 VCN 等频层内进行多部位刺激可以显著改善 ABI 刺激策略和植入物性能。