Mercier Catherine, Gagné Martin, Reilly Karen T, Bouyer Laurent J
Center for Interdisciplinary Research in Rehabilitation and Social Integration, Québec, QC G1M 2S8, Canada.
Department of Rehabilitation, Laval University, Québec, QC G1V 0A6, Canada.
Brain Sci. 2016 Sep 29;6(4):45. doi: 10.3390/brainsci6040045.
Sensorimotor integration is altered in people with chronic pain. While there is substantial evidence that pain interferes with neural activity in primary sensory and motor cortices, much less is known about its impact on integrative sensorimotor processes. Here, the short latency afferent inhibition (SAI) paradigm was used to assess sensorimotor integration in the presence and absence of experimental cutaneous heat pain applied to the hand. Ulnar nerve stimulation was combined with transcranial magnetic stimulation to condition motor evoked potentials (MEPs) in the first dorsal interosseous muscle. Four interstimulus intervals (ISI) were tested, based on the latency of the N20 component of the afferent sensory volley (N20-5 ms, N20+2 ms, N20+4 ms, N20+10 ms). In the PAIN condition, MEPs were smaller compared to the NEUTRAL condition ( = 0.005), and were modulated as a function of the ISI ( = 0.012). Post-hoc planned comparisons revealed that MEPs at N20+2 and N20+4 were inhibited compared to unconditioned MEPs. However, the level of inhibition (SAI) was similar in the PAIN and NEUTRAL conditions. This suggests that the interplay between pain and sensorimotor integration is not mediated through direct and rapid pathways as assessed by SAI, but rather might involve higher-order integrative areas.
慢性疼痛患者的感觉运动整合功能发生改变。虽然有大量证据表明疼痛会干扰初级感觉和运动皮层的神经活动,但对于其对感觉运动整合过程的影响却知之甚少。在此,采用短潜伏期传入抑制(SAI)范式来评估在对手部施加或不施加实验性皮肤热痛的情况下的感觉运动整合。将尺神经刺激与经颅磁刺激相结合,以调节第一背侧骨间肌的运动诱发电位(MEP)。基于传入感觉冲动N20成分的潜伏期测试了四个刺激间隔(ISI)(N20 - 5毫秒、N20 + 2毫秒、N20 + 4毫秒、N20 + 10毫秒)。在疼痛(PAIN)状态下,与中性(NEUTRAL)状态相比,MEP较小(P = 0.005),并且根据ISI进行调节(P = 0.012)。事后计划比较显示,与未受条件刺激的MEP相比,N20 + 2和N20 + 4时的MEP受到抑制。然而,疼痛(PAIN)和中性(NEUTRAL)状态下的抑制水平(SAI)相似。这表明,如通过SAI评估的那样,疼痛与感觉运动整合之间的相互作用并非通过直接和快速的途径介导,而是可能涉及更高阶的整合区域。