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前额叶活动增强了纹外神经元的空间敏感性。

Prefrontal activity sharpens spatial sensitivity of extrastriate neurons.

作者信息

Isabel Vanegas M, Akbarian Amir, Clark Kelsey L, Nesse William H, Noudoost Behrad

机构信息

Department of Ophthalmology and Visual Sciences, University of Utah, Salt Lake City, UT 84132, USA.

Department of Mathematics, University of Utah, Salt Lake City, UT 84132, USA.

出版信息

bioRxiv. 2023 Oct 27:2023.10.25.564095. doi: 10.1101/2023.10.25.564095.

Abstract

Prefrontal cortex is known to exert its control over representation of visual signals in extrastriate areas such as V4. Frontal Eye Field (FEF) is suggested to be the proxy for the prefrontal control of visual signals. However, it is not known which aspects of sensory representation within extrastriate areas are under the influence of FEF activity. We employed a causal manipulation to examine how FEF activity contributes to spatial sensitivity of extrastriate neurons. Finding FEF and V4 areas with overlapping response field (RF) in two macaque monkeys, we recorded V4 responses before and after inactivation of the overlapping FEF. We assessed spatial sensitivity of V4 neurons in terms of their response gain, RF spread, coding capacity, and spatial discriminability. Unexpectedly, we found that in the absence of FEF activity, spontaneous and visually-evoked activity of V4 neurons both increase and their RFs enlarge. However, assessing the spatial sensitivity within V4, we found that these changes were associated with a reduction in the ability of V4 neurons to represent spatial information: After FEF inactivation, V4 neurons showed a reduced response gain and a decrease in their spatial discriminability and coding capacity. These results show the necessity of FEF activity for shaping spatial responses of extrastriate neurons and indicates the importance of FEF inputs in sharpening the sensitivity of V4 responses.

摘要

已知前额叶皮质对诸如V4等纹外区域的视觉信号表征施加控制。额叶眼区(FEF)被认为是前额叶对视觉信号控制的代理。然而,尚不清楚纹外区域内感觉表征的哪些方面受FEF活动的影响。我们采用了一种因果操纵方法来研究FEF活动如何影响纹外神经元的空间敏感性。在两只猕猴中找到具有重叠反应场(RF)的FEF和V4区域,我们记录了重叠FEF失活前后V4的反应。我们从反应增益、RF扩展、编码能力和空间辨别能力方面评估了V4神经元的空间敏感性。出乎意料的是,我们发现,在没有FEF活动的情况下,V4神经元的自发活动和视觉诱发活动均增加,且其RF扩大。然而,在评估V4内的空间敏感性时,我们发现这些变化与V4神经元表征空间信息的能力降低有关:FEF失活后,V4神经元的反应增益降低,其空间辨别能力和编码能力下降。这些结果表明FEF活动对于塑造纹外神经元的空间反应是必要的,并表明FEF输入在锐化V4反应敏感性方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34d6/10634826/00a4f5887690/nihpp-2023.10.25.564095v1-f0001.jpg

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