Alitto Henry J, Weyand Theodore G, Usrey W Martin
Center for Neuroscience, University of California, Davis, California 95616, USA.
J Neurosci. 2005 Jan 12;25(2):514-23. doi: 10.1523/JNEUROSCI.3369-04.2005.
Neurons in the lateral geniculate nucleus (LGN) of the thalamus produce spikes that can be classified as burst spikes and tonic spikes. Although burst spikes are generally associated with states of sleep and drowsiness, bursts may also play an important role in sensory processing. This study explores the stimulus properties that evoke burst and tonic spikes and examines the reliability of LGN neurons to produce visually driven bursts. Using reverse-correlation techniques, we show that the receptive fields of burst spikes are similar to, but significantly different from, the receptive fields of tonic spikes. Compared with tonic spikes, burst spikes (1) occur with a shorter latency between stimulus and response, (2) have a greater dependence on stimuli with transitions from suppressive to preferred states, and (3) prefer stimuli that provide increased drive to the receptive field center and even greater increased drive to the receptive field surround. These differences are not attributable to the long interspike interval that precedes burst spikes, because tonic spikes with similar preceding interspike intervals also differ from burst spikes in both the spatial and temporal domains. Finally, measures of reliability are significantly greater for burst spikes than for tonic spikes with similar preceding interspike intervals. These results demonstrate that thalamic bursts contribute to sensory processing and can reliably provide the cortex with information that is similar to, but distinct from, that of tonic spikes.
丘脑外侧膝状体核(LGN)中的神经元产生的尖峰可分为爆发性尖峰和紧张性尖峰。虽然爆发性尖峰通常与睡眠和困倦状态相关,但爆发也可能在感觉处理中发挥重要作用。本研究探讨了诱发爆发性尖峰和紧张性尖峰的刺激特性,并检验了LGN神经元产生视觉驱动爆发的可靠性。使用反向相关技术,我们发现爆发性尖峰的感受野与紧张性尖峰的感受野相似,但存在显著差异。与紧张性尖峰相比,爆发性尖峰(1)在刺激与反应之间的潜伏期更短,(2)对从抑制状态转变为偏好状态的刺激依赖性更强,(3)更喜欢那些能增加对感受野中心驱动且更能增加对感受野周边驱动的刺激。这些差异并非归因于爆发性尖峰之前较长的峰间间隔,因为具有相似峰间间隔的紧张性尖峰在空间和时间域上也与爆发性尖峰不同。最后,对于具有相似峰间间隔的情况,爆发性尖峰的可靠性测量值显著高于紧张性尖峰。这些结果表明,丘脑爆发有助于感觉处理,并能可靠地向皮层提供与紧张性尖峰相似但又不同的信息。