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分析猫初级视皮层神经元的细胞外尖峰波形和相关感受野。

Analysis of extracellular spike waveforms and associated receptive fields of neurons in cat primary visual cortex.

机构信息

National Vision Research Institute, Australian College of Optometry, Carlton, Victoria, 3053, Australia.

Faculty of Science, Engineering and Technology, Swinburne University, Hawthorn, Victoria, 3122, Australia.

出版信息

J Physiol. 2021 Apr;599(8):2211-2238. doi: 10.1113/JP280844. Epub 2021 Mar 2.

Abstract

KEY POINTS

Extracellular spikes recorded in the visual cortex (Area 17/18, V1) are commonly classified into either regular-spiking (RS) or fast-spiking (FS). Using multi-electrode arrays positioned in cat V1 and a broadband stimulus, we show that there is also a distinct class with positive-spiking (PS) waveforms. PS units were associated mainly with non-oriented receptive fields while RS and FS units had orientation-selective receptive fields. We suggest that PS units are recordings of axons originating from the thalamus. This conclusion was reinforced by our finding that we could record PS units after cortical silencing, but not record RS and FS units. The importance of our findings is that we were able to correlate spike shapes with receptive field characteristics with high precision using multi-electrode extracellular recording techniques. This allows considerable increases in the amount of information that can be extracted from future cortical experiments.

ABSTRACT

Extracellular spike waveforms from recordings in the visual cortex have been classified into either regular-spiking (RS) or fast-spiking (FS) units. While both these types of spike waveforms are negative-dominant, we show that there are also distinct classes of spike waveforms in visual Area 17/18 (V1) of anaesthetised cats with positive-dominant waveforms, which are not regularly reported. The spatial receptive fields (RFs) of these different spike waveform types were estimated, which objectively revealed the existence of oriented and non-oriented RFs. We found that units with positive-dominant spikes, which have been associated with recordings from axons in the literature, had mostly non-oriented RFs (84%), which are similar to the centre-surround RFs observed in the dorsal lateral geniculate nucleus (dLGN). Thus, we hypothesise that these positive-dominant waveforms may be recordings from dLGN afferents. We recorded from V1 before and after the application of muscimol (a cortical silencer) and found that the positive-dominant spikes (PS) remained while the RS and FS cells did not. We also noted that the PS units had spiking characteristics normally associated with dLGN units (i.e. higher response spike rates, lower response latencies and higher proportion of burst spikes). Our findings show quantitatively that it is possible to correlate the RF properties of cortical neurons with particular spike waveforms. This has implications for how extracellular recordings should be interpreted and complex experiments can now be contemplated that would have been very challenging previously, such as assessing the feedforward connectivity between brain areas in the same location of cortical tissue.

摘要

要点

在视觉皮层(区域 17/18,V1)中记录到的细胞外尖峰通常分为规则放电(RS)或快速放电(FS)。使用放置在猫 V1 中的多电极阵列和宽带刺激,我们表明还有一个具有正放电(PS)波形的明显类别。PS 单元主要与非定向感受野相关,而 RS 和 FS 单元具有定向选择性感受野。我们认为 PS 单元是起源于丘脑的轴突的记录。这一结论得到了我们的发现的支持,即我们可以在皮层沉默后记录到 PS 单元,但不能记录到 RS 和 FS 单元。我们发现的重要意义在于,我们能够使用多电极细胞外记录技术精确地将尖峰形状与感受野特征相关联。这使得可以从未来的皮层实验中提取出大量的信息。

摘要

来自视觉皮层记录的细胞外尖峰波形已分为规则放电(RS)或快速放电(FS)单元。虽然这两种类型的尖峰波形都是负主导的,但我们表明,在麻醉猫的视觉区域 17/18(V1)中,还存在具有正主导波形的明显的尖峰波形类型,这些波形类型通常未被报道。这些不同尖峰波形类型的空间感受野(RFs)进行了估计,客观地揭示了定向和非定向 RFs 的存在。我们发现,具有正主导尖峰的单元与文献中的轴突记录有关,它们大多具有非定向 RFs(84%),与背外侧膝状体核(dLGN)中观察到的中心-周围 RFs 相似。因此,我们假设这些正主导的波形可能是来自 dLGN 传入的记录。我们在应用 muscimol(皮层沉默剂)前后记录了 V1,并发现正主导尖峰(PS)仍然存在,而 RS 和 FS 细胞则不存在。我们还注意到,PS 单元具有与 dLGN 单元通常相关的尖峰特征(即更高的反应尖峰率、更低的反应潜伏期和更高的爆发尖峰比例)。我们的发现定量地表明,有可能将皮层神经元的 RF 特性与特定的尖峰波形相关联。这对如何解释细胞外记录具有重要意义,并且现在可以考虑进行更复杂的实验,这些实验以前是非常具有挑战性的,例如评估同一皮质组织位置的脑区之间的前馈连接。

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