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Ensemble encoding of nociceptive stimulus intensity in the rat medial and lateral pain systems

机译:在大鼠内侧和外侧疼痛系统中伤害性刺激强度的整体编码

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Background The ability to encode noxious stimulus intensity is essential for the neural processing of pain perception. It is well accepted that the intensity information is transmitted within both sensory and affective pathways. However, it remains unclear what the encoding patterns are in the thalamocortical brain regions, and whether the dual pain systems share similar responsibility in intensity coding. Results Multichannel single-unit recordings were used to investigate the activity of individual neurons and neuronal ensembles in the rat brain following the application of noxious laser stimuli of increasing intensity to the hindpaw. Four brain regions were monitored, including two within the lateral sensory pain pathway, namely, the ventral posterior lateral thalamic nuclei and the primary somatosensory cortex, and two in the medial pathway, namely, the medial dorsal thalamic nuclei and the anterior cingulate cortex. Neuron number, firing rate, and ensemble spike count codings were examined in this study. Our results showed that the noxious laser stimulation evoked double-peak responses in all recorded brain regions. Significant correlations were found between the laser intensity and the number of responsive neurons, the firing rates, as well as the mass spike counts (MSCs). MSC coding was generally more efficient than the other two methods. Moreover, the coding capacities of neurons in the two pathways were comparable. Conclusion This study demonstrated the collective contribution of medial and lateral pathway neurons to the noxious intensity coding. Additionally, we provide evidence that ensemble spike count may be the most reliable method for coding pain intensity in the brain.
机译:背景编码有害刺激强度的能力对于疼痛感知的神经处理至关重要。公认的是,强度信息在感觉和情感途径中均传递。然而,尚不清楚丘脑皮质区域中的编码模式是什么,以及双重疼痛系统在强度编码中是否也承担着相似的责任。结果多通道单单位记录被用来研究在后爪上增加强度的有害激光刺激后大鼠脑中单个神经元和神经元集合的活动。监测了四个大脑区域,包括在外侧感觉疼痛途径内的两个区域,即腹侧后丘脑外侧核和初级体感皮层,以及在内侧途径中的两个区域,即内侧丘脑背面核和前扣带回皮层。在这项研究中检查了神经元数量,发射率和整体峰值计数编码。我们的结果表明,有害的激光刺激在所有记录的大脑区域中引起了双峰反应。发现激光强度与反应性神经元数量,发射率以及质量峰值计数(MSC)之间存在显着相关性。 MSC编码通常比其他两种方法更有效。此外,两种途径中神经元的编码能力是可比的。结论本研究证明了内侧和外侧通路神经元对有害强度编码的集体贡献。此外,我们提供证据表明合奏峰值计数可能是编码大脑中疼痛强度的最可靠方法。

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