School of Psychological Science, La Trobe University, VIC 3086, Australia. The Bionic Ear Institute, East Melbourne, VIC 3002, Australia.
J Neural Eng. 2010 Jun;7(3):036004. doi: 10.1088/1741-2560/7/3/036004. Epub 2010 May 4.
The cochlear nucleus (CN) is the first auditory processing site within the brain and the target location of the auditory brainstem implant (ABI), which provides speech perception to patients who cannot benefit from a cochlear implant (CI). Although there is variance between ABI recipient speech performance outcomes, performance is typically low compared to CI recipients. Temporal aspects of neural firing such as first spike latency (FSL) are thought to code for many speech features; however, no studies have investigated FSL from CN stimulation. Consequently, ABIs currently do not incorporate CN-specific temporal information. We therefore systematically investigated inferior colliculus (IC) neuron's FSL response to frequency-specific electrical stimulation of the CN in rats. The range of FSLs from electrical stimulation of many neurons indicates that both monosynaptic and polysynaptic pathways were activated, suggesting initial activation of multiple CN neuron types. Electrical FSLs for a single neuron did not change irrespective of the CN frequency region stimulated, indicating highly segregated projections from the CN to the IC. These results present the first evidence of temporal responses to frequency-specific CN electrical stimulation. Understanding the auditory system's temporal response to electrical stimulation will help in future ABI designs and stimulation strategies.
耳蜗核(CN)是大脑内的第一个听觉处理部位,也是听觉脑干植入物(ABI)的目标位置,为不能从耳蜗植入(CI)中受益的患者提供言语感知。尽管 ABI 受者的言语表现结果存在差异,但与 CI 受者相比,其表现通常较低。神经放电的时间方面,如首次尖峰潜伏期(FSL),被认为编码了许多言语特征;然而,目前还没有研究调查 CN 刺激的 FSL。因此,ABIs 目前不包含 CN 特定的时间信息。因此,我们系统地研究了大鼠 CN 频率特异性电刺激对下丘(IC)神经元 FSL 的反应。许多神经元电刺激的 FSL 范围表明激活了单突触和多突触通路,表明 CN 中多个神经元类型的初始激活。单个神经元的电 FSL 不变,与刺激的 CN 频率区域无关,表明从 CN 到 IC 的高度分离的投射。这些结果首次提供了对频率特异性 CN 电刺激的时间响应的证据。了解听觉系统对电刺激的时间响应将有助于未来的 ABI 设计和刺激策略。