Departamento de Neurobiología del Desarrollo y Neurofisiología, Instituto de Neurobiología, Universidad Nacional Autónoma de México, Campus UNAM-Juriquilla, Querétaro, México.
Departamento de Neurobiología del Desarrollo y Neurofisiología, Instituto de Neurobiología, Universidad Nacional Autónoma de México, Campus UNAM-Juriquilla, Querétaro, México.
Brain Res. 2010 Sep 10;1351:104-114. doi: 10.1016/j.brainres.2010.06.010. Epub 2010 Jun 11.
Clinically, the stimulation of motor cortical areas has been used to alleviate certain pain conditions. However, the attempts to understand the mechanisms of cortical nociceptive modulation at the spinal cord level have yielded controversial results. The objectives of the present work were to: 1) determine the effects of activating and suppressing the activity of sensorimotor cortical neurons on the nociceptive electrophysiological responses of the segmental C-fibers, and 2) evaluate the contribution of direct and indirect corticospinal projections in segmental nociceptive modulation. By means of a bipolar matrix of stimulation electrodes we mapped the stimulation of cortical areas that modulate C-fiber evoked field potentials in the dorsal horn. In addition, suppressing the cortical activity by means of cortical spreading depression, we observed that the C-fiber evoked field potentials in the dorsal horn are facilitated when cortical activity is suppressed specifically in sensorimotor cortex. Moreover, the C-fiber evoked field potentials were inhibited during spontaneous activation of cortical projecting neurons. Furthermore, after a lesion of the pyramidal tract contralateral to the spinal cord recording sites, the cortical action was suppressed. Our results show that corticospinal tract fibers arising from the sensorimotor cortex modulate directly the nociceptive C-fiber evoked responses of the dorsal horn.
临床上,刺激运动皮质区已被用于缓解某些疼痛状况。然而,试图理解脊髓水平上皮质伤害性调制的机制所得到的结果却存在争议。本研究的目的是:1)确定激活和抑制感觉运动皮质神经元的活动对节段性 C 纤维伤害性电生理反应的影响,以及 2)评估直接和间接皮质脊髓投射在节段性伤害性调制中的贡献。通过双极矩阵刺激电极,我们绘制了刺激调节背角 C 纤维诱发场电位的皮质区域的图谱。此外,通过皮质扩散性抑制来抑制皮质活动,我们观察到当皮质活动在感觉运动皮质中被特异性抑制时,背角中的 C 纤维诱发场电位被促进。此外,在脊髓记录部位对侧的锥体束损伤后,皮质活动被抑制。我们的结果表明,来自感觉运动皮质的皮质脊髓束纤维直接调节背角伤害性 C 纤维诱发反应。