Clinical Development and Human Pain Models, Fraunhofer Institute for Translational Medicine and Pharmacology ITMP, Theodor-Stern-Kai 7, 60596, Frankfurt, Germany.
Center for Pediatric and Adolescent Medicine, Childhood Cancer Center, University Medical Center Mainz, 55131, Mainz, Germany.
Exp Brain Res. 2023 Feb;241(2):341-354. doi: 10.1007/s00221-022-06522-4. Epub 2022 Dec 15.
Increased exercise loads, as observed in elite athletes, seem to modulate the subjective pain perception in healthy subjects. The combination of electroencephalography (EEG) and standardized noxious stimulation can contribute to an objective assessment of the somatosensory stimulus processing. We assessed the subjective pain ratings and the electroencephalogram (EEG)-based response after standardized noxious mechanical and thermal stimuli as well as during conditioned pain modulation (CPM) in 26 elite endurance athletes and compared them to 26 recreationally active controls. Elite endurance athletes had consistently stronger somatosensory responses in the EEG to both mechanical and thermal noxious stimuli than the control group. We observed no significant group differences in the subjective pain ratings, which may have been influenced by our statistics and choice of stimuli. The CPM testing revealed that our conditioning stimulus modulated the subjective pain perception only in the control group, whereas the EEG indicated a modulatory effect of the conditioning stimulus on the spectral response only in the athletes group. We conclude that a higher activation in the cortical regions that process nociceptive information may either be an indicator for central sensitization or an altered stimulus salience in the elite endurance athletes' group. Our findings from our CPM testing were limited by our methodology. Further longitudinal studies are needed to examine if exercise-induced changes in the somatosensory system might have a critical impact on the long-term health of athletes.
在精英运动员中观察到的运动负荷增加似乎可以调节健康受试者的主观疼痛感知。脑电图 (EEG) 和标准化的有害刺激相结合可以帮助客观评估躯体感觉刺激处理。我们评估了 26 名精英耐力运动员在标准化机械和热刺激以及条件性疼痛调制 (CPM) 期间的主观疼痛评分和基于脑电图 (EEG) 的反应,并将其与 26 名休闲活跃的对照组进行了比较。与对照组相比,精英耐力运动员的脑电图对机械和热有害刺激的躯体感觉反应始终更强。我们观察到主观疼痛评分没有显著的组间差异,这可能受到我们的统计数据和刺激选择的影响。CPM 测试表明,我们的条件刺激仅在对照组中调节主观疼痛感知,而脑电图则仅在运动员组中表明条件刺激对频谱反应的调节作用。我们得出结论,处理伤害性信息的皮质区域的更高激活可能是中枢敏化的指标,或者是精英耐力运动员组中刺激显著性的改变。我们的 CPM 测试结果受到我们的方法学的限制。需要进一步的纵向研究来检查运动引起的感觉系统变化是否会对运动员的长期健康产生重大影响。