Oono Yuka, Kubo Hidenori, Takagi Saori, Wang Kelun, Arendt-Nielsen Lars, Kohase Hikaru
Department of Diagnostic and Therapeutic Sciences, Division of Dental Anesthesiology, Meikai University School of Dentistry, Sakado, Japan.
Department of Health Science and Technology, School of Medicine, Center for Neuroplasticity and Pain, SMI, Aalborg University, Aalborg, Denmark.
Somatosens Mot Res. 2022 Mar;39(1):1-9. doi: 10.1080/08990220.2021.1986382. Epub 2021 Oct 21.
PURPOSE/AIM: The thermal grill illusion is a paradoxical pain sensation induced by simultaneous exposure to spatially separated, non-painful, cold, and warm stimuli. This study aimed to determine whether paradoxical sensations are also evoked by simultaneous exposure to painful cold-heat stimuli and whether the mechanism involves modulation by segmental and extra-segmental spatial integration.
Sensory perceptions were triggered by simultaneous application of painful cold-heat pulse stimuli using a developed bedside tool equipped with quantitative thermal stimulator devices. Four conditions were investigated: (1) one device placed on the forearm (condition 1, control); (2) two devices placed on the forearm (condition 2, ipsilateral segmental integration); (3) two devices placed on the forearm and ipsilateral thigh (condition 3, extra-segmental integration); and (4) two devices placed bilaterally on the forearms (condition 4, contralateral segmental integration). The evoked perceptions of paradoxical heat sensation and the loss of cold or heat sensation were evaluated.
The aforementioned phenomena were experienced by 11(35.4%), 3(9.7%), 3(9.7%), and 0(0.0%) subjects for conditions 1-4, respectively. Fisher's exact test revealed significant differences (=.001) among the four conditions. However, Bonferroni analysis revealed significant differences only between conditions 1 and 4 (=.005).
Simultaneous painful cold-heat pulse stimulation can induce paradoxical sensations similar to those shown for non-painful thermal (cold and heat) stimuli. They were predominantly evoked by ipsilateral integration. Paradoxical sensations have diagnostic value, and quantifying them using a simple bedside tool may be useful in the clinical setting.
目的/目标:热 grill 错觉是一种由同时暴露于空间分离的、非疼痛性的冷和热刺激所诱发的矛盾性疼痛感觉。本研究旨在确定同时暴露于疼痛性的冷 - 热刺激是否也会诱发矛盾性感觉,以及其机制是否涉及节段性和节段外空间整合的调节。
使用配备定量热刺激装置的自行开发的床边工具,通过同时施加疼痛性的冷 - 热脉冲刺激来触发感觉知觉。研究了四种情况:(1)一个装置置于前臂(情况 1,对照);(2)两个装置置于前臂(情况 2,同侧节段性整合);(3)两个装置分别置于前臂和同侧大腿(情况 3,节段外整合);(4)两个装置双侧置于前臂(情况 4,对侧节段性整合)。评估诱发的矛盾性热感觉以及冷或热感觉丧失的感知情况。
在情况 1 - 4 中,分别有 11(35.4%)、3(9.7%)、3(9.7%)和 0(0.0%)的受试者体验到了上述现象。Fisher 精确检验显示四种情况之间存在显著差异(P =.001)。然而,Bonferroni 分析显示仅在情况 1 和 4 之间存在显著差异(P =.005)。
同时进行疼痛性的冷 - 热脉冲刺激可诱发与非疼痛性热(冷和热)刺激类似的矛盾性感觉。它们主要由同侧整合诱发。矛盾性感觉具有诊断价值,使用简单的床边工具对其进行量化在临床环境中可能会有所帮助。