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外侧膝状体中的信息处理:神经编码与细胞类型的比较。

Information processing in the LGN: a comparison of neural codes and cell types.

作者信息

Pregowska Agnieszka, Casti Alex, Kaplan Ehud, Wajnryb Eligiusz, Szczepanski Janusz

机构信息

Institute of Fundamental Technological Research, Polish Academy of Sciences, Pawinskiego 5B, 02-106, Warsaw, Poland.

Department of Mathematics, Gildart-Haase School of Computer Sciences and Engineering, Fairleigh Dickinson University, Teaneck, NY, 07666, USA.

出版信息

Biol Cybern. 2019 Aug;113(4):453-464. doi: 10.1007/s00422-019-00801-0. Epub 2019 Jun 26.

Abstract

To understand how anatomy and physiology allow an organism to perform its function, it is important to know how information that is transmitted by spikes in the brain is received and encoded. A natural question is whether the spike rate alone encodes the information about a stimulus (rate code), or additional information is contained in the temporal pattern of the spikes (temporal code). Here we address this question using data from the cat Lateral Geniculate Nucleus (LGN), which is the visual portion of the thalamus, through which visual information from the retina is communicated to the visual cortex. We analyzed the responses of LGN neurons to spatially homogeneous spots of various sizes with temporally random luminance modulation. We compared the Firing Rate with the Shannon Information Transmission Rate , which quantifies the information contained in the temporal relationships between spikes. We found that the behavior of these two rates can differ quantitatively. This suggests that the energy used for spiking does not translate directly into the information to be transmitted. We also compared Firing Rates with Information Rates for X-ON and X-OFF cells. We found that, for X-ON cells the Firing Rate and Information Rate often behave in a completely different way, while for X-OFF cells these rates are much more highly correlated. Our results suggest that for X-ON cells a more efficient "temporal code" is employed, while for X-OFF cells a straightforward "rate code" is used, which is more reliable and is correlated with energy consumption.

摘要

为了理解解剖学和生理学如何使生物体发挥其功能,了解大脑中尖峰所传递的信息是如何被接收和编码的很重要。一个自然的问题是,仅仅是尖峰频率对刺激信息进行编码(频率编码),还是尖峰的时间模式中包含了额外信息(时间编码)。在这里,我们使用来自猫的外侧膝状体核(LGN)的数据来解决这个问题,LGN是丘脑的视觉部分,来自视网膜的视觉信息通过它传递到视觉皮层。我们分析了LGN神经元对各种大小的空间均匀光斑以及时间上随机的亮度调制的反应。我们将放电频率与香农信息传输率进行了比较,香农信息传输率量化了尖峰之间时间关系中所包含的信息。我们发现这两种速率的行为在数量上可能不同。这表明用于产生尖峰的能量并不能直接转化为要传输的信息。我们还比较了X-ON和X-OFF细胞的放电频率与信息率。我们发现,对于X-ON细胞,放电频率和信息率的行为往往完全不同,而对于X-OFF细胞,这些速率的相关性要高得多。我们的结果表明,对于X-ON细胞采用了更有效的“时间编码”,而对于X-OFF细胞使用了直接的“频率编码”,这种编码更可靠且与能量消耗相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5c9/6658673/8232eb3f2f02/422_2019_801_Fig1_HTML.jpg

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