Department of Anesthesiology, Perioperative Care, and Pain Medicine, New York University School of Medicine, New York, 10016, USA.
College of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou, 310027, China.
Sci Rep. 2018 May 29;8(1):8299. doi: 10.1038/s41598-018-26527-w.
Pain is a complex sensory and affective experience. The current definition for pain relies on verbal reports in clinical settings and behavioral assays in animal models. These definitions can be subjective and do not take into consideration signals in the neural system. Local field potentials (LFPs) represent summed electrical currents from multiple neurons in a defined brain area. Although single neuronal spike activity has been shown to modulate the acute pain, it is not yet clear how ensemble activities in the form of LFPs can be used to decode the precise timing and intensity of pain. The anterior cingulate cortex (ACC) is known to play a role in the affective-aversive component of pain in human and animal studies. Few studies, however, have examined how neural activities in the ACC can be used to interpret or predict acute noxious inputs. Here, we recorded in vivo extracellular activity in the ACC from freely behaving rats after stimulus with non-noxious, low-intensity noxious, and high-intensity noxious stimuli, both in the absence and chronic pain. Using a supervised machine learning classifier with selected LFP features, we predicted the intensity and the onset of acute nociceptive signals with high degree of precision. These results suggest the potential to use LFPs to decode acute pain.
疼痛是一种复杂的感觉和情感体验。目前的疼痛定义依赖于临床环境中的口头报告和动物模型中的行为测定。这些定义可能是主观的,没有考虑到神经系统中的信号。局部场电位(LFPs)代表来自特定脑区中多个神经元的总和电流。尽管已经表明单个神经元的尖峰活动可以调节急性疼痛,但尚不清楚 LFPs 形式的集合活动如何用于解码疼痛的精确时间和强度。已知前扣带皮层(ACC)在人类和动物研究中对疼痛的情感厌恶成分起作用。然而,很少有研究检查 ACC 中的神经活动如何用于解释或预测急性有害输入。在这里,我们在自由行为的大鼠中记录了 ACC 中的体内细胞外活动,这些大鼠在无伤害性、低强度伤害性和高强度伤害性刺激下,无论是在无伤害性和慢性疼痛的情况下都进行了记录。使用具有选定 LFPs 特征的监督机器学习分类器,我们以高精度预测急性伤害性信号的强度和发作。这些结果表明有可能使用 LFPs 来解码急性疼痛。