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对猫外侧膝状体核的方向不连续敏感的皮质离心反馈的空间频率调谐

Spatial frequency tuning of orientation-discontinuity-sensitive corticofugal feedback to the cat lateral geniculate nucleus.

作者信息

Cudeiro J, Sillito A M

机构信息

Department of Visual Science, Institute of Ophthalmology, London, UK.

出版信息

J Physiol. 1996 Jan 15;490 ( Pt 2)(Pt 2):481-92. doi: 10.1113/jphysiol.1996.sp021159.

Abstract
  1. The influence of spatial frequency on the inhibitory component of the effects mediated by feedback from the visual cortex has been examined in X and Y cells in the A laminae of the feline dorsal lateral geniculate nucleus (dLGN). Experiments utilized a concentric, bipartite visual stimulus centered over the receptive fields of the cells studied. The responses of dLGN cells to selective stimulation of receptive field centre (with the inner window) were compared with those to stimulation of centre and surround mechanisms (both inner and outer window), with the stimuli either in or out of orientation alignment. 2. With these same stimuli, layer VI cells in the visual cortex showed a marked increase in response magnitude when the inner and outer components of the stimulus were in orientation alignment, and presented at the preferred orientation. In the case of dLGN X and Y cells we observed an enhancement of the surround antagonism of the centre response when the inner and outer sections of the stimulus were in orientation alignment. 3. The effects of varying spatial frequency on these responses were examined in dLGN cells in the presence of corticofugal feedback. With the stimulus sections in orientation alignment, surround stimulation produced a powerful and significant reduction in the response to stimulation of centre mechanism alone with the most marked effects for stimuli in the range 0.1-0.85 cycles per degree (c.p.d.). The reduction produced by surround stimulation in the range 0.1-0.5 c.p.d. was notably more potent in X cells than in Y cells. 4. The responses to the same stimuli were examined in dLGN cells with the corticofugal feedback inactivated. Comparison of data from cells studied with and without feedback revealed a significant decrease in surround-mediated attenuation of the centre response in Y cells for spatial frequencies in the range 0.1-0.85 c.p.d. For X cells the decrease in strength of the surround antagonism was also clear and significant but only seen in the range 0.1-0.5 c.p.d. 5. The influence of the orientation alignment of inner and outer stimulus sections revealed a marked difference between cells studied with and without feedback. In the presence of feedback fully aligned stimuli enhanced surround antagonism of centre responses for spatial frequencies in the range 0.1-0.5 c.p.d., in X and Y cells. In the absence of corticofugal feedback this alignment effect was essentially eliminated. 6. These data show that surround antagonism of the centre response is influenced by orientation alignment of the stimulus sections at low spatial frequencies and in the presence of corticofugal feedback. They support a cortically driven enhancement of the inhibitory mechanisms reinforcing surround mechanisms in the dLGN. We propose that feedback enhances a low spatial frequency cut-off in the dLGN, that this effect is maximal for a continuous iso-orientated contour, but diminished whenever there is an orientation discontinuity. The hyperpolarizing influence underlying this effect may contribute to the recently described synchronizing influence of the direct corticofugal contacts onto relay cells. We suggest feedback of the cortical level of analysis refines the transfer of the visual input at geniculate level in a stimulus-context-dependent fashion.
摘要
  1. 已经在猫的背外侧膝状核(dLGN)A层的X和Y细胞中研究了空间频率对由视觉皮层反馈介导的效应的抑制成分的影响。实验采用了以所研究细胞的感受野为中心的同心二分视觉刺激。将dLGN细胞对感受野中心(通过内窗)的选择性刺激的反应与对中心和周边机制(内窗和外窗)的刺激的反应进行比较,刺激的方向要么对齐要么不对齐。2. 使用这些相同的刺激,当刺激的内、外成分方向对齐且呈现为最佳方向时,视觉皮层的VI层细胞的反应幅度显著增加。对于dLGN的X和Y细胞,当刺激的内、外部分方向对齐时,我们观察到中心反应的周边拮抗作用增强。3. 在存在皮质离心反馈的情况下,研究了不同空间频率对dLGN细胞这些反应的影响。当刺激部分方向对齐时,周边刺激会使仅对中心机制刺激的反应产生强烈且显著的降低,对于每度0.1 - 0.85周(c.p.d.)范围内的刺激,这种影响最为明显。在0.1 - 0.5 c.p.d.范围内,周边刺激产生的降低在X细胞中比在Y细胞中明显更强。4. 在皮质离心反馈失活的情况下,研究了dLGN细胞对相同刺激的反应。对有反馈和无反馈情况下研究的细胞数据进行比较发现,对于0.1 - 0.85 c.p.d.范围内的空间频率,Y细胞中周边介导的中心反应衰减显著降低。对于X细胞,周边拮抗强度的降低也很明显且显著,但仅在0.1 - 0.5 c.p.d.范围内可见。5. 内、外刺激部分方向对齐的影响揭示了有反馈和无反馈情况下研究的细胞之间的显著差异。在有反馈的情况下,完全对齐的刺激增强了X和Y细胞中0.1 - 0.5 c.p.d.范围内空间频率的中心反应的周边拮抗作用。在没有皮质离心反馈的情况下,这种对齐效应基本消除。6. 这些数据表明,在低空间频率且存在皮质离心反馈的情况下,中心反应的周边拮抗作用受刺激部分方向对齐的影响。它们支持皮质驱动增强dLGN中加强周边机制的抑制机制。我们提出,反馈增强了dLGN中的低空间频率截止,这种效应对于连续的等方向轮廓最大,但每当存在方向不连续时就会减弱。这种效应背后的超极化影响可能有助于最近描述的直接皮质离心接触对中继细胞的同步影响。我们认为,皮质水平分析的反馈以依赖刺激背景的方式优化了膝状核水平视觉输入的传递。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b85/1158684/dd3e504a263f/jphysiol00301-0191-a.jpg

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