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Decoding Neuropathic Pain in the Central Nervous System Through the Peri-Stimulus Histogram Method

机译:通过周围刺激直方图方法解码中枢神经系统的神经性疼痛

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Neuropathic pain develops as a result of damage to the peripheral or central nervous system from lesions or other forms of dysfunction. In a clinical setting, neuropathic pain is difficult to treat because the underlying mechanisms and pathophysiology are not well known. In order to investigate the connection between neuropathic pain and motor cortex encoding, rats with spared nerve injuries (SNI) were utilized as models. Using active stimulation methods, somatosensory data from both lesioned and sham paws was collected via two microarray electrodes in the hindlimb sensory motor cortices. The peri-stimulus time histogram (PSTH) method was employed for data classification. Compared to the sham group, the SNI group exhibited significant mean neuron response increases in the somatosensory cortex contralateral to the lesion site when exposed to a noxious surface. In addition, the uninjured limb also showed increased mean neuron responses in ipsilateral and contralateral sensorimotor cortices. These results support the idea that neuropathic pain is encoded in the central nervous system and not restricted to the periphery. Further exploration of these central nervous system mechanisms is required in order to develop a neurocomputational model of neuropathic pain.
机译:神经性疼痛是由于病变或其他形式的功能障碍对周围或中枢神经系统造成损害而引起的。在临床环境中,神经性疼痛很难治疗,因为其潜在的机制和病理生理机制尚不为人所知。为了研究神经性疼痛与运动皮质编码之间的联系,将具有幸免神经损伤(SNI)的大鼠用作模型。使用主动刺激方法,通过后肢感觉运动皮层中的两个微阵列电极收集来自病变和假爪的体感数据。刺激周围时间直方图(PSTH)方法用于数据分类。与假手术组相比,SNI组暴露于有害表面时,在病变部位对侧的体感皮质中显示出明显的平均神经元反应增加。此外,未受伤的肢体在同侧和对侧感觉运动皮层中还显示出平均神经元反应增加。这些结果支持了神经性疼痛被编码在中枢神经系统中,而不仅限于周围神经的想法。为了开发神经性疼痛的神经计算模型,需要进一步探索这些中枢神经系统机制。

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