Sun Shi Hai, Killian Nathaniel J, Pezaris John S
Department of Neurosurgery, Massachusetts General Hospital, Boston, MA, USA.
Department of Neurosurgery, Harvard Medical School, Boston, MA, USA.
bioRxiv. 2024 May 16:2023.11.22.568065. doi: 10.1101/2023.11.22.568065.
Unlike the exhaustive determination of cell types in the retina, key populations in the lateral geniculate nucleus of the thalamus (LGN) may have been missed. Here, we have begun to characterize the full range of extracellular neuronal responses in the LGN of awake monkeys using multi-electrodes during the presentation of colored noise visual stimuli to identify any previously overlooked signals. Extracellular spike waveforms of single units were classified into seven distinct classes, revealing previously unrecognized diversity: four negative-dominant classes that were narrow or broad, one triphasic class, and two positive-dominant classes. Based on their mapped receptive field (RF), these units were further categorized into either magnocellular (), parvocellular (), koniocellular (), or non-RF (). We found correlations between spike shape and mapped RF and response characteristics, with negative and narrow spiking waveform units predominantly associated with and RFs, and positive waveforms mostly linked to RFs. Responses from positive waveforms exhibited shorter latencies, larger RF sizes, and were associated with larger eccentricities in the visual field than the other waveform classes. Additionally, cells, those without an estimated RF, were consistently responsive to the visually presented mapping stimulus at a lower and more sustained rate than units with an RF. These findings suggest that the LGN cell population may be more diverse than previously believed.
与对视网膜中细胞类型的详尽确定不同,丘脑外侧膝状体(LGN)中的关键细胞群可能被遗漏了。在这里,我们开始在清醒猴子的LGN中使用多电极来表征细胞外神经元的全范围反应,在呈现彩色噪声视觉刺激时识别任何先前被忽视的信号。单个单元的细胞外尖峰波形被分类为七个不同的类别,揭示了以前未被认识到的多样性:四个负向主导类别,它们是窄的或宽的,一个三相类别,以及两个正向主导类别。基于它们映射的感受野(RF),这些单元进一步被分类为大细胞()、小细胞()、颗粒细胞()或非RF()。我们发现尖峰形状与映射的RF和反应特征之间存在相关性,负向且窄的尖峰波形单元主要与 和 RF相关,而正向波形大多与 RF相关。与其他波形类别相比,正向波形的反应表现出更短的潜伏期、更大的RF尺寸,并且与视野中更大的偏心率相关。此外,没有估计RF的 细胞,对视觉呈现的映射刺激的反应始终比有RF的单元更低且更持续。这些发现表明,LGN细胞群可能比以前认为的更加多样化。