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3D model of frequency representation in the cochlear nucleus of the CBA/J mouse

机译:CBA / J小鼠耳蜗核中频率表示的3D模型

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摘要

The relationship between structure and function is an invaluable context with which to explore biological mechanisms of normal and dysfunctional hearing. The systematic and topographic representation of frequency originates at the cochlea, and is retained throughout much of the central auditory system. The cochlear nucleus (CN), which initiates all ascending auditory pathways, represents an essential link for understanding frequency organization. A model of the CN that maps frequency representation in 3D would facilitate investigations of possible frequency specializations and pathologic changes that disturb frequency organization. Toward this goal, we reconstructed in 3D the trajectories of labeled auditory nerve (AN) fibers following multiunit recordings and dye injections in the anteroventral CN of the CBA/J mouse. We observed that each injection produced a continuous sheet of labeled AN fibers. Individual cases were normalized to a template using 3D alignment procedures that revealed a systematic and tonotopic arrangement of AN fibers in each subdivision with a clear indication of isofrequency laminae. The combined dataset was used to mathematically derive a 3D quantitative map of frequency organization throughout the entire volume of the CN. This model, available online (http://3D.ryugolab.com/), can serve as a tool for quantitatively testing hypotheses concerning frequency and location in the CN.
机译:结构与功能之间的关系是探索正常和功能失常的听力的生物学机制的宝贵背景。频率的系统和地形学表示起源于耳蜗,并在整个中央听觉系统中都得到保留。启动所有上升听觉通路的耳蜗核(CN)代表理解频率组织的必不可少的环节。以3D映射频率表示形式的CN模型将有助于调查可能的频率专长和干扰频率组织的病理变化。为了实现这一目标,我们在CBA / J小鼠前腹CN中进行了多单位记录和染料注射后,以3D方式重构了标记听觉神经(AN)纤维的轨迹。我们观察到,每次注射均产生连续的标记AN纤维板。使用3D对齐程序将单个案例标准化为模板,该程序显示出每个细分区域中AN纤维的系统性和局部排列,并清楚地显示了等频率薄片。合并后的数据集可用于从数学上推导整个CN体积内频率组织的3D定量图。该模型可以在线(http://3D.ryugolab.com/)获得,可以用作定量测试与CN中频率和位置有关的假设的工具。

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