Habituation to painful stimulation involves the antinociceptive system

被引:222
作者
Bingel, U. [1 ]
Schoell, E.
Herken, W.
Buechel, C.
May, A.
机构
[1] Univ Hamburg, Dept Neurol, Hamburg, Germany
[2] Univ Hamburg, Dept Syst Neurosci, Hamburg, Germany
关键词
habituation; pain; thermode; antinociception; rACC; fMRI;
D O I
10.1016/j.pain.2006.12.005
中图分类号
R614 [麻醉学];
学科分类号
100217 ;
摘要
The perception of pain results from an interaction between nociceptive and antinociceptive mechanisms. A better understanding of the neural circuitry underlying these physiological interactions provides an important opportunity to develop better treatment strategies for and ultimately even prevent pain. Here, we investigated how repeated painful stimulation over several days is processed, perceived and finally modulated in the healthy human brain. Twenty healthy subjects were stimulated daily with a 20 min pain paradigm for 8 consecutive days, and functional MRI performed on days 1, 8 and 22. Repeated painful stimulation over several days resulted in substantially decreased pain ratings to identical painful stimuli. The decreased perception of pain over time is reflected in decreased BOLD responses to nociceptive stimuli in classical pain areas, including thalamus, insula, S11 and the putamen. In contrast to this finding, we found that pain-related responses in the rACC, specifically the subgenual anterior cingulate cortex (sgACC), significantly increased over time. Given this area's predominant role in endogenous pain control, this response pattern suggests that habituation to pain is at least in part mediated by increased antinociceptive activity. (C) 2006 International Association for the Study of Pain. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:21 / 30
页数:10
相关论文
共 66 条
[1]   Regional brain activity changes associated with fentanyl analgesia elucidated by positron emission tomography [J].
Adler, LJ ;
Gyulai, FE ;
Diehl, DJ ;
Mintun, MA ;
Winter, PM ;
Firestone, LL .
ANESTHESIA AND ANALGESIA, 1997, 84 (01) :120-126
[2]   Imaging how attention modulates pain in humans using functional MRI [J].
Bantick, SJ ;
Wise, RG ;
Ploghaus, A ;
Clare, S ;
Smith, SM ;
Tracey, I .
BRAIN, 2002, 125 :310-319
[3]  
Benedetti F, 1999, J NEUROSCI, V19, P3639
[4]   Mechanisms of placebo analgesia:: rACC recruitment of a subcortical antinociceptive network [J].
Bingel, U ;
Lorenz, J ;
Schoell, E ;
Weiller, C ;
Büchel, C .
PAIN, 2006, 120 (1-2) :8-15
[5]   Somatotopic representation of nociceptive information in the putamen:: An event-related fMRI study [J].
Bingel, U ;
Gläscher, J ;
Weiller, C ;
Büchel, C .
CEREBRAL CORTEX, 2004, 14 (12) :1340-1345
[6]   Subcortical structures involved in pain processing:: evidence from single-trial fMR1 [J].
Bingel, U ;
Quante, M ;
Knab, R ;
Bromm, B ;
Weiller, C ;
Büchel, C .
PAIN, 2002, 99 (1-2) :313-321
[7]   Mechanisms of pain modulation in chronic syndromes [J].
Bolay, H ;
Moskowitz, MA .
NEUROLOGY, 2002, 59 (05) :S2-S7
[8]   Painful stimuli evoke different stimulus-response functions in the amygdala, prefrontal, insula and somatosensory cortex:: a single-trial fMRI study [J].
Bornhövd, K ;
Quante, M ;
Glauche, V ;
Bromm, B ;
Weiller, C ;
Büchel, C .
BRAIN, 2002, 125 :1326-1336
[9]   Dissociable neural responses related to pain intensity, stimulus intensity, and stimulus awareness within the anterior cingulate cortex:: A parametric single-trial laser functional magnetic resonance imaging study [J].
Büchel, C ;
Bornhövd, K ;
Quante, M ;
Glauche, V ;
Bromm, B ;
Weiller, C .
JOURNAL OF NEUROSCIENCE, 2002, 22 (03) :970-976
[10]   Trigeminofacial reflexes in primary headaches [J].
Cecchini, AP ;
Sandrini, G ;
Fokin, IV ;
Moglia, A ;
Nappi, G .
CEPHALALGIA, 2003, 23 :33-41