Park Sanggeon, Sohn Jeong-Woo, Cho Jeiwon, Huh Yeowool
Department of Medical Science, College of Medicine, Catholic Kwandong University, Gangneung 25601, Korea.
Translational Brain Research Center, Catholic Kwandong University International St. Mary's Hospital, Incheon 22711, Korea.
Exp Neurobiol. 2019 Oct 31;28(5):568-577. doi: 10.5607/en.2019.28.5.568.
The thalamus is a brain structure known to modulate sensory information before relaying to the cortex. The unique ability of a thalamocortical (TC) neuron to switch between the high frequency burst firing and single spike tonic firing has been implicated to have a key role in sensory modulation including pain. Of the two firing modes, burst firing, especially maintaining certain burst firing properties, was suggested to be critical in controlling nociceptive behaviors. Therefore, understanding the factors that influence burst firing properties would offer important insight into understanding sensory modulation. Using computational modeling, we investigated how the balance of excitatory and inhibitory inputs into a TC neuron influence TC bursting properties. We found that intensity of inhibitory inputs and the timing of excitatory input delivery control the dynamics of bursting properties. Then, to reflect a more realistic model, excitatory inputs delivered at different dendritic locations-proximal, intermediate, or distal-of a TC neuron were also investigated. Interestingly, excitatory input delivered into a distal dendrite, despite the furthest distance, had the strongest influence in shaping burst firing properties, suggesting that not all inputs equally contribute to modulating TC bursting properties. Overall, the results provide computational insights in understanding the detailed mechanism of the factors influencing temporal pattern of thalamic bursts.
丘脑是一种大脑结构,已知其在将感觉信息传递到皮层之前会对其进行调节。丘脑皮质(TC)神经元在高频爆发式放电和单峰紧张性放电之间切换的独特能力,被认为在包括疼痛在内的感觉调节中起关键作用。在这两种放电模式中,爆发式放电,尤其是维持某些爆发式放电特性,被认为对控制伤害性感受行为至关重要。因此,了解影响爆发式放电特性的因素将为理解感觉调节提供重要的见解。通过计算建模,我们研究了输入到TC神经元的兴奋性和抑制性输入的平衡如何影响TC爆发特性。我们发现抑制性输入的强度和兴奋性输入传递的时间控制着爆发特性的动态变化。然后,为了反映更现实的模型,我们还研究了在TC神经元的不同树突位置——近端、中间或远端——传递的兴奋性输入。有趣的是,尽管距离最远,但传递到远端树突的兴奋性输入对塑造爆发式放电特性的影响最强,这表明并非所有输入对调节TC爆发特性的贡献都相同。总体而言,这些结果为理解影响丘脑爆发时间模式的因素的详细机制提供了计算方面的见解。