Pain matrices and neuropathic pain matrices: A review

被引:349
作者
Garcia-Larrea, Luis [1 ]
Peyron, Roland [1 ]
机构
[1] Univ Lyon 1, UMR5292, INSERM, U1028,Ctr Neurosci Lyon,Cent Integrat Pain Lab Ne, F-69622 Villeurbanne, France
关键词
Pain matrix; Functional imaging; Neuropathic pain; Insula; Thalamus; Cingulate; POSITRON-EMISSION-TOMOGRAPHY; MOTOR CORTEX STIMULATION; CEREBRAL-BLOOD-FLOW; BRUSH-EVOKED ALLODYNIA; PRINCIPAL SENSORY NUCLEUS; ANTERIOR CINGULATE CORTEX; CENTRAL POSTSTROKE PAIN; CENTRAL THALAMIC PAIN; VENTRAL SPINOTHALAMIC PATHWAYS; ROSTRAL VENTROMEDIAL MEDULLA;
D O I
10.1016/j.pain.2013.09.001
中图分类号
R614 [麻醉学];
学科分类号
100217 ;
摘要
The pain matrix is conceptualised here as a fluid system composed of several interacting networks. A nociceptive matrix receiving spinothalamic projections (mainly posterior operculoinsular areas) ensures the bodily specificity of pain and is the only one whose destruction entails selective pain deficits. Transition from cortical nociception to conscious pain relies on a second-order network, including posterior parietal, prefrontal and anterior insular areas. Second-order regions are not nociceptive-specific; focal stimulation does not evoke pain, and focal destruction does not produce analgesia, but their joint activation is necessary for conscious perception, attentional modulation and control of vegetative reactions. The ensuing pain experience can still be modified as a function of beliefs, emotions and expectations through activity of third-order areas, including the orbitofrontal and perigenual/limbic networks. The pain we remember results from continuous interaction of these subsystems, and substantial changes in the pain experience can be achieved by acting on each of them. Neuropathic pain (NP) is associated with changes in each of these levels of integration. The most robust abnormality in NP is a functional depression of thalamic activity, reversible with therapeutic manoeuvres and associated with rhythmic neural bursting. Neuropathic allodynia has been associated with enhancement of ipsilateral over contralateral insular activation and lack of reactivity in orbitofrontal/perigenual areas. Although lack of response of perigenual cortices may be an epiphenomenon of chronic pain, the enhancement of ipsilateral activity may reflect disinhibition of ipsilateral spinothalamic pathways due to depression of their contralateral counterpart. This in turn may bias perceptual networks and contribute to the subjective painful experience. (C) 2013 International Association for the Study of Pain. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:S29 / S43
页数:15
相关论文
共 278 条
  • [1] POSITRON EMISSION TOMOGRAPHY STUDIES OF CEREBRAL GLUCOSE-METABOLISM IN CHRONIC PARTIAL EPILEPSY
    ABOUKHALIL, BW
    SIEGEL, GJ
    SACKELLARES, JC
    GILMAN, S
    HICHWA, R
    MARSHALL, R
    [J]. ANNALS OF NEUROLOGY, 1987, 22 (04) : 480 - 486
  • [2] Effect of hypnotic pain modulation on brain activity in patients with temporomandibular disorder pain
    Abrahamsen, Randi
    Dietz, Martin
    Lodahl, Sanne
    Roepstorff, Andreas
    Zachariae, Robert
    Ostergaard, Leif
    Svensson, Peter
    [J]. PAIN, 2010, 151 (03) : 825 - 833
  • [3] Regional brain activity changes associated with fentanyl analgesia elucidated by positron emission tomography
    Adler, LJ
    Gyulai, FE
    Diehl, DJ
    Mintun, MA
    Winter, PM
    Firestone, LL
    [J]. ANESTHESIA AND ANALGESIA, 1997, 84 (01) : 120 - 126
  • [4] DIENCEPHALIC MECHANISMS OF PAIN SENSATION
    ALBEFESSARD, D
    BERKLEY, KJ
    KRUGER, L
    RALSTON, HJ
    WILLIS, WD
    [J]. BRAIN RESEARCH REVIEWS, 1985, 9 (03) : 217 - 296
  • [5] Cerebral activation during thermal stimulation of patients who have burning mouth disorder: An fMRI study
    Albuquerque, Romulo J. C.
    de Leeuw, Reny
    Carlson, Charles R.
    Okeson, Jeffrey P.
    Miller, Craig S.
    Andersen, Anders H.
    [J]. PAIN, 2006, 122 (03) : 223 - 234
  • [6] STIMULATION IN PREFRONTAL CORTEX AREA INHIBITS CARDIOVASCULAR AND MOTOR COMPONENTS OF THE DEFENSE REACTION IN RATS
    ALMASKATI, HA
    ZBROZYNA, AW
    [J]. JOURNAL OF THE AUTONOMIC NERVOUS SYSTEM, 1989, 28 (02): : 117 - 125
  • [7] A brain signature for acute pain
    Apkarian, A. Vania
    [J]. TRENDS IN COGNITIVE SCIENCES, 2013, 17 (07) : 309 - 310
  • [8] PRIMATE SPINOTHALAMIC PATHWAYS .2. THE CELLS OF ORIGIN OF THE DORSOLATERAL AND VENTRAL SPINOTHALAMIC PATHWAYS
    APKARIAN, AV
    HODGE, CJ
    [J]. JOURNAL OF COMPARATIVE NEUROLOGY, 1989, 288 (03) : 474 - 492
  • [9] Human brain mechanisms of pain perception and regulation in health and disease
    Apkarian, AV
    Bushnell, MC
    Treede, RD
    Zubieta, JK
    [J]. EUROPEAN JOURNAL OF PAIN, 2005, 9 (04) : 463 - 484
  • [10] PRIMATE SPINOTHALAMIC PATHWAYS .3. THALAMIC TERMINATIONS OF THE DORSOLATERAL AND VENTRAL SPINOTHALAMIC PATHWAYS
    APKARIAN, AV
    HODGE, CJ
    [J]. JOURNAL OF COMPARATIVE NEUROLOGY, 1989, 288 (03) : 493 - 511