首页> 外文会议>Engineering in Medicine and Biology Society, 2004. IEMBS '04. 26th Annual International Conference of the IEEE >Spike-triggered averaging to assess rat auditory cortex time-frequency receptive fields
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Spike-triggered averaging to assess rat auditory cortex time-frequency receptive fields

机译:峰值触发平均评估大鼠听觉皮层时频感受野

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Receptive fields have been used as a tool to study the functional organization of the auditory system in several animals. In this study, they have been used to characterize the primary auditory cortex of rats, specifically to address the differences in auditory processing at different depths of the cortex. The depths chosen; 500, 800 and 1300 μm correspond to layers IV, V and VI of the cortex. This study aims at quantifying the differences in the receptive field in terms of changes in latency, differences in tuning curves, spectral bandwidth and the complexity of the receptive fields. The following preliminary trends were observed: the mean peak latency changes from 10 ± 4 ms at a depth of 500 μm to 46 ± 13.08 ms at a depth of 1300 μm. Mean spectral bandwidth changes from 6.4 ± 0.95 kHz at 500 μm to 8.9 ± 1.73 KHz at 800 μm to 8 ± 2.53 KHz at 1300 μm. The mean temporal width changes with increasing depth from 13.6 ± 1.15 ms at 500 μm to 9.4 ± 1.88 ms at 1300 μm. Quantitative characterization of the receptive field can be used to generate mathematical models of the auditory neurons, which could aid the computation of stimulation levels for implantable cortical prosthetics. Preliminary data from our experiment on three animals has been presented here.
机译:接受领域已被用作研究多种动物听觉系统功能组织的工具。在这项研究中,它们已被用于表征大鼠的主要听觉皮质,特别是解决皮层不同深度的听觉处理的差异。选择的深度; 500,800和1300μm对应于皮质的层IV,V和VI。本研究旨在在延迟变化,调整曲线的变化,调谐曲线,光谱带宽和接收领域的复杂性方面的变化来量化接受领域的差异。观察到以下初步趋势:平均峰值延迟在深度为500μm至46±13.08ms的深度,深度为1300μm的深度。平均光谱带宽从6.4±0.95kHz变化为500μm至8.9±1.73kHz,在800μm至8±2.53kHz,1300μm。平均时间宽度随深度从13.6±1.15ms的深度升高到1300μm的500μm至9.4±1.88ms。可以使用接收领域的定量表征来产生听觉神经元的数学模型,这可以帮助计算植入皮质假肢的刺激水平。这里提出了我们在三种动物的实验中的初步数据。

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