Keeping pain out of mind: the role of the dorsolateral prefrontal cortex in pain modulation
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Open Access
- 1 May 2003
- journal article
- clinical trial
- Published by Oxford University Press (OUP) in Brain
- Vol. 126 (5) , 1079-1091
- https://doi.org/10.1093/brain/awg102
Abstract
Frontal lobe activity during pain is generally linked to attentional processing. We addressed the question of whether ‘bottom‐up’ processing and ‘top‐down’ modulation of nociceptive information dissociate anatomically within the frontal lobe by using PET scanning during painful thermal stimulation of normal and capsaicin‐treated skin. We showed recently that pain following normally non‐painful heat stimuli on chemically irritated skin (heat allodynia) uniquely engages extensive areas of the bilateral dorsolateral prefrontal (DLPFC), ventral/orbitofrontal (VOFC) and perigenual anterior cingulate (ACC) cortices. Here, we applied principal component analysis (PCA) and multiple regression analysis to study the covariance structure of the volumes of interest (VOI) activated specifically during heat allodynia in 14 male healthy subjects and evaluated the relationship of these VOI to ratings of pain intensity and affect. Results yielded a primary principal component (PC) that correlated positively with intensity and unpleasantness and accounted for activity in the medial thalamus, bilateral anterior insula, ventral striatum, perigenual ACC and bilateral VOFC. Activities in the right and left DLPFC loaded on separate PC and correlated negatively with perceived intensity and unpleasantness. The inter‐regional correlation of midbrain and medial thalamic activity was significantly reduced during high left DLPFC activity, suggesting that its negative correlation with pain affect may result from dampening of the effective connectivity of the midbrain–medial thalamic pathway. In contrast, right DLPFC activity was associated with a weakened relationship of the anterior insula with both pain intensity and affect. We propose that the DLPFC exerts active control on pain perception by modulating corticosubcortical and corticocortical pathways.Keywords
This publication has 57 references indexed in Scilit:
- Reward Circuitry Activation by Noxious Thermal StimuliNeuron, 2001
- Thermosensory activation of insular cortexNature Neuroscience, 2000
- Modulation of connectivity in visual pathways by attention: cortical interactions evaluated with structural equation modelling and fMRICerebral Cortex, 1997
- Comparison of human cerebral activation pattern during cutaneous warmth, heat pain, and deep cold painJournal of Neurophysiology, 1996
- Dissociation in prefrontal cortex of affective and attentional shiftsNature, 1996
- Dorsal raphe and nociceptive stimulations evoke convergent responses on the thalamic centralis lateralis and medial prefrontal cortex neuronsBrain Research, 1989
- Periaqueductal gray and cerebral cortex modulate responses of medial thalamic neurons to noxious stimulationBrain Research, 1986
- Endogenous pain control mechanisms: Review and hypothesisAnnals of Neurology, 1978
- Anaesthetisation of prefrontal cortex and response to noxious stimulationNature, 1975
- The Scree Test For The Number Of FactorsMultivariate Behavioral Research, 1966