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首页> 外文期刊>Journal of Computational Neuroscience >Optogenetic activation of corticogeniculate feedback stabilizes response gain and increases information coding in LGN neurons
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Optogenetic activation of corticogeniculate feedback stabilizes response gain and increases information coding in LGN neurons

机译:皮质化反馈的致敏活化稳定响应增益并增加LGN神经元的信息编码

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摘要

In spite of their anatomical robustness, it has been difficult to establish the functional role of corticogeniculate circuits connecting primary visual cortex with the lateral geniculate nucleus of the thalamus (LGN) in the feedback direction. Growing evidence suggests that corticogeniculate feedback does not directly shape the spatial receptive field properties of LGN neurons, but rather regulates the timing and precision of LGN responses and the information coding capacity of LGN neurons. We propose that corticogeniculate feedback specifically stabilizes the response gain of LGN neurons, thereby increasing their information coding capacity. Inspired by early work by McClurkin et al. (1994), we manipulated the activity of corticogeniculate neurons to test this hypothesis. We used optogenetic methods to selectively and reversibly enhance the activity of corticogeniculate neurons in anesthetized ferrets while recording responses of LGN neurons to drifting gratings and white noise stimuli. We found that optogenetic activation of corticogeniculate feedback systematically reduced LGN gain variability and increased information coding capacity among LGN neurons. Optogenetic activation of corticogeniculate neurons generated similar increases in information encoded in LGN responses to drifting gratings and white noise stimuli. Together, these findings suggest that the influence of corticogeniculate feedback on LGN response precision and information coding capacity could be mediated through reductions in gain variability.
机译:尽管它们的解剖稳健性,但是难以建立皮质化电路与反馈方向上的丘脑(LGN)的横向遗传核来建立皮质化电路的功能作用。日益增长的证据表明,皮质源性反馈不直接塑造LGN神经元的空间接收场性能,而是调节LGN响应的定时和精度和LGN神经元的信息编码能力。我们提出皮质源性反馈特异性稳定LGN神经元的响应增益,从而提高其信息编码能力。通过McClurkin等人的早期工作启发。 (1994),我们操纵皮质化神经元的活性以测试该假设。我们使用致硫化方法选择性地,可逆地增强麻醉的雪貂中皮质源性神经元的活性,同时记录LGN神经元以漂流光栅和白噪声刺激的反应。我们发现皮质苷的致敏激活系统地降低了LGN的可变异性和LGN神经元中的信息编码能力增加。皮质源性神经元的致敏活化在LGN响应中的信息中产生类似的增加,以漂移和白噪声刺激。这些研究结果表明,通过降低增益可变性,可以介导皮质化反馈对LGN响应精度和信息编码能力的影响。

著录项

  • 来源
    《Journal of Computational Neuroscience》 |2021年第3期|259-271|共13页
  • 作者单位

    Univ Rochester Neurosci Grad Program 601 Elmwood Ave Rochester NY 14642 USA|Univ Rochester Ctr Visual Sci 601 Elmwood Ave Rochester NY 14642 USA;

    Univ Rochester Neurosci Grad Program 601 Elmwood Ave Rochester NY 14642 USA;

    Univ Rochester Sch Med Ernest J Del Monte Inst Neurosci 601 Elmwood Ave Box 603 Rochester NY 14642 USA|NYU Ctr Neural Sci New York NY 10003 USA;

    Univ Texas Austin Inst Neurosci Austin TX 78712 USA|Univ Texas Austin Dept Psychol Austin TX 78712 USA;

    Univ Rochester Neurosci Grad Program 601 Elmwood Ave Rochester NY 14642 USA|Univ Rochester Ctr Visual Sci 601 Elmwood Ave Rochester NY 14642 USA|Univ Rochester Sch Med Ernest J Del Monte Inst Neurosci 601 Elmwood Ave Box 603 Rochester NY 14642 USA|Univ Rochester Sch Med Dept Neurosci Rochester NY 14642 USA|Univ Rochester Dept Brain & Cognit Sci 601 Elmwood Ave Rochester NY 14642 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LGN; Corticogeniculate; V1; Optogenetics; Variance; Entropy;

    机译:LGN;皮质素;V1;Optogenetics;方差;熵;

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