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Published in: Journal of Neural Transmission 8/2011

01-08-2011 | Basic Neurosciences, Genetics and Immunology - Original Article

Brain activity associated with pain, hyperalgesia and allodynia: an ALE meta-analysis

Authors: Stefan Lanz, Frank Seifert, Christian Maihöfner

Published in: Journal of Neural Transmission | Issue 8/2011

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Abstract

The use of functional brain imaging techniques offers the possibility of uncovering the cerebral processing of the human pain experience. In recent years, many imaging studies have focused on defining a network of brain structures involved in the processing of normal pain. Additionally, it has been shown that stimulus-evoked pain, which is a frequent symptom of neuropathic pain, causes distinct patterns of brain activation. In the present study, we quantitatively analyzed the data of previous functional imaging studies. Studies were thus collected by means of a MEDLINE query. A meta-analysis using the activation-likelihood estimation method was conducted to quantify the acquired results. We then used this data to summarize and compare the cerebral activations of (i) normal and stimulus-evoked pain, (ii) thermal and mechanical pain, (iii) different types of stimulus-evoked pain (hyperalgesia, allodynia), and (iv) clinical neuropathic and experimental pain. The results suggest the existence of distinct, although overlapping, neuronal networks related to these different types of pain.
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Literature
go back to reference Apkarian AV, Shi T (1994) Squirrel monkey lateral thalamus I. Somatic nociresponsive neurons and their relation to spinothalamic terminals. J Neurosci 14:6779–6795PubMed Apkarian AV, Shi T (1994) Squirrel monkey lateral thalamus I. Somatic nociresponsive neurons and their relation to spinothalamic terminals. J Neurosci 14:6779–6795PubMed
go back to reference Apkarian AV, Bushnell MC, Treede RD, Zubieta JK (2005) Human brain mechanisms of pain perception and regulation in health and disease. Eur J Pain 9:463–484PubMedCrossRef Apkarian AV, Bushnell MC, Treede RD, Zubieta JK (2005) Human brain mechanisms of pain perception and regulation in health and disease. Eur J Pain 9:463–484PubMedCrossRef
go back to reference Baron R, Baron Y, Disbrow E, Roberts TP (1999) Brain processing of capsaicin-induced secondary hyperalgesia: a functional MRI study. Neurology 53:548–557PubMed Baron R, Baron Y, Disbrow E, Roberts TP (1999) Brain processing of capsaicin-induced secondary hyperalgesia: a functional MRI study. Neurology 53:548–557PubMed
go back to reference Bingel U, Quante M, Knab R, Bromm B, Weiller C, Buchel C (2003) Single trial fMRI reveals significant contralateral bias in responses to laser pain within thalamus and somatosensory cortices. Neuroimage 18:740–748PubMedCrossRef Bingel U, Quante M, Knab R, Bromm B, Weiller C, Buchel C (2003) Single trial fMRI reveals significant contralateral bias in responses to laser pain within thalamus and somatosensory cortices. Neuroimage 18:740–748PubMedCrossRef
go back to reference Bingel U, Lorenz J, Schoell E, Weiller C, Buchel C (2006) Mechanisms of placebo analgesia: rACC recruitment of a subcortical antinociceptive network. Pain 120:8–15PubMedCrossRef Bingel U, Lorenz J, Schoell E, Weiller C, Buchel C (2006) Mechanisms of placebo analgesia: rACC recruitment of a subcortical antinociceptive network. Pain 120:8–15PubMedCrossRef
go back to reference Bingel U, Schoell E, Herken W, Buchel C, May A (2007) Habituation to painful stimulation involves the antinociceptive system. Pain 131:21–30PubMedCrossRef Bingel U, Schoell E, Herken W, Buchel C, May A (2007) Habituation to painful stimulation involves the antinociceptive system. Pain 131:21–30PubMedCrossRef
go back to reference Chein JM, Fissell K, Jacobs S, Fiez JA (2002) Functional heterogeneity within Broca’s area during verbal working memory. Physiol Behav 77:635–639PubMedCrossRef Chein JM, Fissell K, Jacobs S, Fiez JA (2002) Functional heterogeneity within Broca’s area during verbal working memory. Physiol Behav 77:635–639PubMedCrossRef
go back to reference Coghill RC, Sang CN, Maisog JM, Iadarola MJ (1999) Pain intensity processing within the human brain: a bilateral, distributed mechanism. J Neurophysiol 82:1934–1943PubMed Coghill RC, Sang CN, Maisog JM, Iadarola MJ (1999) Pain intensity processing within the human brain: a bilateral, distributed mechanism. J Neurophysiol 82:1934–1943PubMed
go back to reference Collins DL, Neelin P, Peters TM, Evans AC (1994) Automatic 3D intersubject registration of MR volumetric data in standardized Talairach space. J Comput Assist Tomogr 18:192–205PubMedCrossRef Collins DL, Neelin P, Peters TM, Evans AC (1994) Automatic 3D intersubject registration of MR volumetric data in standardized Talairach space. J Comput Assist Tomogr 18:192–205PubMedCrossRef
go back to reference Disbrow E, Roberts T, Krubitzer L (2000) Somatotopic organization of cortical fields in the lateral sulcus of Homo sapiens: evidence for SII and PV. J Comp Neurol 418:1–21PubMedCrossRef Disbrow E, Roberts T, Krubitzer L (2000) Somatotopic organization of cortical fields in the lateral sulcus of Homo sapiens: evidence for SII and PV. J Comp Neurol 418:1–21PubMedCrossRef
go back to reference Ducreux D, Attal N, Parker F, Bouhassira D (2006) Mechanisms of central neuropathic pain: a combined psychophysical and fMRI study in syringomyelia. Brain 129:963–976PubMedCrossRef Ducreux D, Attal N, Parker F, Bouhassira D (2006) Mechanisms of central neuropathic pain: a combined psychophysical and fMRI study in syringomyelia. Brain 129:963–976PubMedCrossRef
go back to reference Eickhoff SB, Laird AR, Grefkes C, Wang LE, Zilles K, Fox PT (2009) Coordinate-based activation likelihood estimation meta-analysis of neuroimaging data: a random-effects approach based on empirical estimates of spatial uncertainty. Hum Brain Mapp 30:2907–2926PubMedCrossRef Eickhoff SB, Laird AR, Grefkes C, Wang LE, Zilles K, Fox PT (2009) Coordinate-based activation likelihood estimation meta-analysis of neuroimaging data: a random-effects approach based on empirical estimates of spatial uncertainty. Hum Brain Mapp 30:2907–2926PubMedCrossRef
go back to reference Farrell MJ, Laird AR, Egan GF (2005) Brain activity associated with painfully hot stimuli applied to the upper limb: a meta-analysis. Hum Brain Mapp 25:129–139PubMedCrossRef Farrell MJ, Laird AR, Egan GF (2005) Brain activity associated with painfully hot stimuli applied to the upper limb: a meta-analysis. Hum Brain Mapp 25:129–139PubMedCrossRef
go back to reference Forss N, Raij TT, Seppa M, Hari R (2005) Common cortical network for first and second pain. Neuroimage 24:132–142PubMedCrossRef Forss N, Raij TT, Seppa M, Hari R (2005) Common cortical network for first and second pain. Neuroimage 24:132–142PubMedCrossRef
go back to reference Fox PT, Parsons LM, Lancaster JL (1998) Beyond the single study: function/location metanalysis in cognitive neuroimaging. Curr Opin Neurobiol 8:178–187PubMedCrossRef Fox PT, Parsons LM, Lancaster JL (1998) Beyond the single study: function/location metanalysis in cognitive neuroimaging. Curr Opin Neurobiol 8:178–187PubMedCrossRef
go back to reference Geha PY, Baliki MN, Wang X, Harden RN, Paice JA, Apkarian AV (2008) Brain dynamics for perception of tactile allodynia (touch-induced pain) in postherpetic neuralgia. Pain 138:641–656PubMedCrossRef Geha PY, Baliki MN, Wang X, Harden RN, Paice JA, Apkarian AV (2008) Brain dynamics for perception of tactile allodynia (touch-induced pain) in postherpetic neuralgia. Pain 138:641–656PubMedCrossRef
go back to reference Hoffman HG, Richards TL, Coda B, Bills AR, Blough D, Richards AL, Sharar SR (2004) Modulation of thermal pain-related brain activity with virtual reality: evidence from fMRI. Neuroreport 15:1245–1248PubMedCrossRef Hoffman HG, Richards TL, Coda B, Bills AR, Blough D, Richards AL, Sharar SR (2004) Modulation of thermal pain-related brain activity with virtual reality: evidence from fMRI. Neuroreport 15:1245–1248PubMedCrossRef
go back to reference Iadarola MJ, Berman KF, Zeffiro TA, Byas-Smith MG, Gracely RH, Max MB, Bennett GJ (1998) Neural activation during acute capsaicin-evoked pain and allodynia assessed with PET. Brain 121(Pt 5):931–947PubMedCrossRef Iadarola MJ, Berman KF, Zeffiro TA, Byas-Smith MG, Gracely RH, Max MB, Bennett GJ (1998) Neural activation during acute capsaicin-evoked pain and allodynia assessed with PET. Brain 121(Pt 5):931–947PubMedCrossRef
go back to reference Jensen TS, Baron R (2003) Translation of symptoms and signs into mechanisms in neuropathic pain. Pain 102:1–8PubMedCrossRef Jensen TS, Baron R (2003) Translation of symptoms and signs into mechanisms in neuropathic pain. Pain 102:1–8PubMedCrossRef
go back to reference Jung P, Baumgartner U, Stoeter P, Treede RD (2009) Structural and functional asymmetry in the human parietal opercular cortex. J Neurophysiol 101:3246–3257PubMedCrossRef Jung P, Baumgartner U, Stoeter P, Treede RD (2009) Structural and functional asymmetry in the human parietal opercular cortex. J Neurophysiol 101:3246–3257PubMedCrossRef
go back to reference Kenshalo DR Jr, Isensee O (1983) Responses of primate SI cortical neurons to noxious stimuli. J Neurophysiol 50:1479–1496PubMed Kenshalo DR Jr, Isensee O (1983) Responses of primate SI cortical neurons to noxious stimuli. J Neurophysiol 50:1479–1496PubMed
go back to reference Koltzenburg M, Torebjork HE, Wahren LK (1994) Nociceptor modulated central sensitization causes mechanical hyperalgesia in acute chemogenic and chronic neuropathic pain. Brain 117(Pt 3):579–591PubMedCrossRef Koltzenburg M, Torebjork HE, Wahren LK (1994) Nociceptor modulated central sensitization causes mechanical hyperalgesia in acute chemogenic and chronic neuropathic pain. Brain 117(Pt 3):579–591PubMedCrossRef
go back to reference Kupers R, Kehlet H (2006) Brain imaging of clinical pain states: a critical review and strategies for future studies. Lancet Neurol 5:1033–1044PubMedCrossRef Kupers R, Kehlet H (2006) Brain imaging of clinical pain states: a critical review and strategies for future studies. Lancet Neurol 5:1033–1044PubMedCrossRef
go back to reference Laird AR, Fox PM, Price CJ, Glahn DC, Uecker AM, Lancaster JL, Turkeltaub PE, Kochunov P, Fox PT (2005) ALE meta-analysis: controlling the false discovery rate and performing statistical contrasts. Hum Brain Mapp 25:155–164PubMedCrossRef Laird AR, Fox PM, Price CJ, Glahn DC, Uecker AM, Lancaster JL, Turkeltaub PE, Kochunov P, Fox PT (2005) ALE meta-analysis: controlling the false discovery rate and performing statistical contrasts. Hum Brain Mapp 25:155–164PubMedCrossRef
go back to reference Lebel A, Becerra L, Wallin D, Moulton EA, Morris S, Pendse G, Jasciewicz J, Stein M, Aiello-Lammens M, Grant E, Berde C, Borsook D (2008) fMRI reveals distinct CNS processing during symptomatic and recovered complex regional pain syndrome in children. Brain 131:1854–1879PubMedCrossRef Lebel A, Becerra L, Wallin D, Moulton EA, Morris S, Pendse G, Jasciewicz J, Stein M, Aiello-Lammens M, Grant E, Berde C, Borsook D (2008) fMRI reveals distinct CNS processing during symptomatic and recovered complex regional pain syndrome in children. Brain 131:1854–1879PubMedCrossRef
go back to reference Lorenz J, Cross D, Minoshima S, Morrow T, Paulson P, Casey K (2002) A unique representation of heat allodynia in the human brain. Neuron 35:383–393PubMedCrossRef Lorenz J, Cross D, Minoshima S, Morrow T, Paulson P, Casey K (2002) A unique representation of heat allodynia in the human brain. Neuron 35:383–393PubMedCrossRef
go back to reference Lorenz J, Minoshima S, Casey KL (2003) Keeping pain out of mind: the role of the dorsolateral prefrontal cortex in pain modulation. Brain 126:1079–1091PubMedCrossRef Lorenz J, Minoshima S, Casey KL (2003) Keeping pain out of mind: the role of the dorsolateral prefrontal cortex in pain modulation. Brain 126:1079–1091PubMedCrossRef
go back to reference Lui F, Duzzi D, Corradini M, Serafini M, Baraldi P, Porro CA (2008) Touch or pain? Spatio-temporal patterns of cortical fMRI activity following brief mechanical stimuli. Pain 138:362–374PubMedCrossRef Lui F, Duzzi D, Corradini M, Serafini M, Baraldi P, Porro CA (2008) Touch or pain? Spatio-temporal patterns of cortical fMRI activity following brief mechanical stimuli. Pain 138:362–374PubMedCrossRef
go back to reference Maihofner C, Handwerker HO (2005) Differential coding of hyperalgesia in the human brain: a functional MRI study. Neuroimage 28:996–1006PubMedCrossRef Maihofner C, Handwerker HO (2005) Differential coding of hyperalgesia in the human brain: a functional MRI study. Neuroimage 28:996–1006PubMedCrossRef
go back to reference Maihofner C, Schmelz M, Forster C, Neundorfer B, Handwerker HO (2004) Neural activation during experimental allodynia: a functional magnetic resonance imaging study. Eur J Neurosci 19:3211–3218PubMedCrossRef Maihofner C, Schmelz M, Forster C, Neundorfer B, Handwerker HO (2004) Neural activation during experimental allodynia: a functional magnetic resonance imaging study. Eur J Neurosci 19:3211–3218PubMedCrossRef
go back to reference Maihofner C, Forster C, Birklein F, Neundorfer B, Handwerker HO (2005) Brain processing during mechanical hyperalgesia in complex regional pain syndrome: a functional MRI study. Pain 114:93–103PubMedCrossRef Maihofner C, Forster C, Birklein F, Neundorfer B, Handwerker HO (2005) Brain processing during mechanical hyperalgesia in complex regional pain syndrome: a functional MRI study. Pain 114:93–103PubMedCrossRef
go back to reference Maihofner C, Herzner B, Otto Handwerker H (2006) Secondary somatosensory cortex is important for the sensory-discriminative dimension of pain: a functional MRI study. Eur J Neurosci 23:1377–1383PubMedCrossRef Maihofner C, Herzner B, Otto Handwerker H (2006) Secondary somatosensory cortex is important for the sensory-discriminative dimension of pain: a functional MRI study. Eur J Neurosci 23:1377–1383PubMedCrossRef
go back to reference Maihofner C, Ringler R, Herrndobler F, Koppert W (2007) Brain imaging of analgesic and antihyperalgesic effects of cyclooxygenase inhibition in an experimental human pain model: a functional MRI study. Eur J Neurosci 26:1344–1356PubMedCrossRef Maihofner C, Ringler R, Herrndobler F, Koppert W (2007) Brain imaging of analgesic and antihyperalgesic effects of cyclooxygenase inhibition in an experimental human pain model: a functional MRI study. Eur J Neurosci 26:1344–1356PubMedCrossRef
go back to reference Melzack R (1999) From the gate to the neuromatrix. Pain Suppl 6:S121–126 Melzack R (1999) From the gate to the neuromatrix. Pain Suppl 6:S121–126
go back to reference Merskey H, Bogduk N (1994) Classification of chronic pain: descriptions of chronic pain syndromes and definition of pain terms, 2nd edn. IASP Press, Seattle Merskey H, Bogduk N (1994) Classification of chronic pain: descriptions of chronic pain syndromes and definition of pain terms, 2nd edn. IASP Press, Seattle
go back to reference Mohr C, Leyendecker S, Helmchen C (2008) Dissociable neural activity to self- vs. externally administered thermal hyperalgesia: a parametric fMRI study. Eur J Neurosci 27:739–749PubMedCrossRef Mohr C, Leyendecker S, Helmchen C (2008) Dissociable neural activity to self- vs. externally administered thermal hyperalgesia: a parametric fMRI study. Eur J Neurosci 27:739–749PubMedCrossRef
go back to reference Neumann J, von Cramon DY, Lohmann G (2008) Model-based clustering of meta-analytic functional imaging data. Hum Brain Mapp 29:177–192PubMedCrossRef Neumann J, von Cramon DY, Lohmann G (2008) Model-based clustering of meta-analytic functional imaging data. Hum Brain Mapp 29:177–192PubMedCrossRef
go back to reference Ochoa JL, Yarnitsky D (1993) Mechanical hyperalgesias in neuropathic pain patients: dynamic and static subtypes. Ann Neurol 33:465–472PubMedCrossRef Ochoa JL, Yarnitsky D (1993) Mechanical hyperalgesias in neuropathic pain patients: dynamic and static subtypes. Ann Neurol 33:465–472PubMedCrossRef
go back to reference Ochoa JL, Yarnitsky D (1994) The triple cold syndrome. Cold hyperalgesia, cold hypoaesthesia and cold skin in peripheral nerve disease. Brain 117(Pt 1):185–197PubMedCrossRef Ochoa JL, Yarnitsky D (1994) The triple cold syndrome. Cold hyperalgesia, cold hypoaesthesia and cold skin in peripheral nerve disease. Brain 117(Pt 1):185–197PubMedCrossRef
go back to reference Petrovic P, Ingvar M, Stone-Elander S, Petersson KM, Hansson P (1999) A PET activation study of dynamic mechanical allodynia in patients with mononeuropathy. Pain 83:459–470PubMedCrossRef Petrovic P, Ingvar M, Stone-Elander S, Petersson KM, Hansson P (1999) A PET activation study of dynamic mechanical allodynia in patients with mononeuropathy. Pain 83:459–470PubMedCrossRef
go back to reference Peyron R, Garcia-Larrea L, Gregoire MC, Convers P, Lavenne F, Veyre L, Froment JC, Mauguiere F, Michel D, Laurent B (1998) Allodynia after lateral-medullary (Wallenberg) infarct. A PET study. Brain 121(Pt 2):345–356PubMedCrossRef Peyron R, Garcia-Larrea L, Gregoire MC, Convers P, Lavenne F, Veyre L, Froment JC, Mauguiere F, Michel D, Laurent B (1998) Allodynia after lateral-medullary (Wallenberg) infarct. A PET study. Brain 121(Pt 2):345–356PubMedCrossRef
go back to reference Peyron R, Laurent B, Garcia-Larrea L (2000) Functional imaging of brain responses to pain. A review and meta-analysis (2000). Neurophysiol Clin 30:263–288PubMedCrossRef Peyron R, Laurent B, Garcia-Larrea L (2000) Functional imaging of brain responses to pain. A review and meta-analysis (2000). Neurophysiol Clin 30:263–288PubMedCrossRef
go back to reference Qiu Y, Noguchi Y, Honda M, Nakata H, Tamura Y, Tanaka S, Sadato N, Wang X, Inui K, Kakigi R (2006) Brain processing of the signals ascending through unmyelinated C fibers in humans: an event-related functional magnetic resonance imaging study. Cereb Cortex 16:1289–1295PubMedCrossRef Qiu Y, Noguchi Y, Honda M, Nakata H, Tamura Y, Tanaka S, Sadato N, Wang X, Inui K, Kakigi R (2006) Brain processing of the signals ascending through unmyelinated C fibers in humans: an event-related functional magnetic resonance imaging study. Cereb Cortex 16:1289–1295PubMedCrossRef
go back to reference Rogers R, Wise RG, Painter DJ, Longe SE, Tracey I (2004) An investigation to dissociate the analgesic and anesthetic properties of ketamine using functional magnetic resonance imaging. Anesthesiology 100:292–301PubMedCrossRef Rogers R, Wise RG, Painter DJ, Longe SE, Tracey I (2004) An investigation to dissociate the analgesic and anesthetic properties of ketamine using functional magnetic resonance imaging. Anesthesiology 100:292–301PubMedCrossRef
go back to reference Salimi-Khorshidi G, Smith SM, Keltner JR, Wager TD, Nichols TE (2009) Meta-analysis of neuroimaging data: a comparison of image-based and coordinate-based pooling of studies. Neuroimage 45:810–823PubMedCrossRef Salimi-Khorshidi G, Smith SM, Keltner JR, Wager TD, Nichols TE (2009) Meta-analysis of neuroimaging data: a comparison of image-based and coordinate-based pooling of studies. Neuroimage 45:810–823PubMedCrossRef
go back to reference Schlereth T, Baumgartner U, Magerl W, Stoeter P, Treede RD (2003) Left-hemisphere dominance in early nociceptive processing in the human parasylvian cortex. Neuroimage 20:441–454PubMedCrossRef Schlereth T, Baumgartner U, Magerl W, Stoeter P, Treede RD (2003) Left-hemisphere dominance in early nociceptive processing in the human parasylvian cortex. Neuroimage 20:441–454PubMedCrossRef
go back to reference Schmelz M, Schmid R, Handwerker HO, Torebjork HE (2000) Encoding of burning pain from capsaicin-treated human skin in two categories of unmyelinated nerve fibres. Brain 123(Pt 3):560–571PubMedCrossRef Schmelz M, Schmid R, Handwerker HO, Torebjork HE (2000) Encoding of burning pain from capsaicin-treated human skin in two categories of unmyelinated nerve fibres. Brain 123(Pt 3):560–571PubMedCrossRef
go back to reference Schmidt R, Schmelz M, Forster C, Ringkamp M, Torebjork E, Handwerker H (1995) Novel classes of responsive and unresponsive C nociceptors in human skin. J Neurosci 15:333–341PubMed Schmidt R, Schmelz M, Forster C, Ringkamp M, Torebjork E, Handwerker H (1995) Novel classes of responsive and unresponsive C nociceptors in human skin. J Neurosci 15:333–341PubMed
go back to reference Schoedel AL, Zimmermann K, Handwerker HO, Forster C (2008) The influence of simultaneous ratings on cortical BOLD effects during painful and non-painful stimulation. Pain 135:131–141PubMedCrossRef Schoedel AL, Zimmermann K, Handwerker HO, Forster C (2008) The influence of simultaneous ratings on cortical BOLD effects during painful and non-painful stimulation. Pain 135:131–141PubMedCrossRef
go back to reference Schweinhardt P, Glynn C, Brooks J, McQuay H, Jack T, Chessell I, Bountra C, Tracey I (2006) An fMRI study of cerebral processing of brush-evoked allodynia in neuropathic pain patients. Neuroimage 32:256–265PubMedCrossRef Schweinhardt P, Glynn C, Brooks J, McQuay H, Jack T, Chessell I, Bountra C, Tracey I (2006) An fMRI study of cerebral processing of brush-evoked allodynia in neuropathic pain patients. Neuroimage 32:256–265PubMedCrossRef
go back to reference Seifert F, Maihofner C (2009) Central mechanisms of experimental and chronic neuropathic pain: findings from functional imaging studies. Cell Mol Life Sci 66:375–390PubMedCrossRef Seifert F, Maihofner C (2009) Central mechanisms of experimental and chronic neuropathic pain: findings from functional imaging studies. Cell Mol Life Sci 66:375–390PubMedCrossRef
go back to reference Seifert F, Jungfer I, Schmelz M, Maihofner C (2007) Representation of UV-B-induced thermal and mechanical hyperalgesia in the human brain: a functional MRI study. Hum Brain Mapp Seifert F, Jungfer I, Schmelz M, Maihofner C (2007) Representation of UV-B-induced thermal and mechanical hyperalgesia in the human brain: a functional MRI study. Hum Brain Mapp
go back to reference Seifert F, Jungfer I, Schmelz M, Maihofner C (2008) Representation of UV-B-induced thermal and mechanical hyperalgesia in the human brain: a functional MRI study. Hum Brain Mapp 29:1327–1342PubMedCrossRef Seifert F, Jungfer I, Schmelz M, Maihofner C (2008) Representation of UV-B-induced thermal and mechanical hyperalgesia in the human brain: a functional MRI study. Hum Brain Mapp 29:1327–1342PubMedCrossRef
go back to reference Seminowicz DA, Davis KD (2007) Interactions of pain intensity and cognitive load: the brain stays on task. Cereb Cortex 17:1412–1422PubMedCrossRef Seminowicz DA, Davis KD (2007) Interactions of pain intensity and cognitive load: the brain stays on task. Cereb Cortex 17:1412–1422PubMedCrossRef
go back to reference Seminowicz DA, Mikulis DJ, Davis KD (2004) Cognitive modulation of pain-related brain responses depends on behavioral strategy. Pain 112:48–58PubMedCrossRef Seminowicz DA, Mikulis DJ, Davis KD (2004) Cognitive modulation of pain-related brain responses depends on behavioral strategy. Pain 112:48–58PubMedCrossRef
go back to reference Smith SM, Fox PT, Miller KL, Glahn DC, Fox PM, Mackay CE, Filippini N, Watkins KE, Toro R, Laird AR, Beckmann CF (2009) Correspondence of the brain’s functional architecture during activation and rest. Proc Natl Acad Sci USA 106:13040–13045PubMedCrossRef Smith SM, Fox PT, Miller KL, Glahn DC, Fox PM, Mackay CE, Filippini N, Watkins KE, Toro R, Laird AR, Beckmann CF (2009) Correspondence of the brain’s functional architecture during activation and rest. Proc Natl Acad Sci USA 106:13040–13045PubMedCrossRef
go back to reference Sprenger T, Valet M, Woltmann R, Zimmer C, Freynhagen R, Kochs EF, Tolle TR, Wagner KJ (2006) Imaging pain modulation by subanesthetic S-(+)-ketamine. Anesth Analg 103:729–737PubMedCrossRef Sprenger T, Valet M, Woltmann R, Zimmer C, Freynhagen R, Kochs EF, Tolle TR, Wagner KJ (2006) Imaging pain modulation by subanesthetic S-(+)-ketamine. Anesth Analg 103:729–737PubMedCrossRef
go back to reference Symonds LL, Gordon NS, Bixby JC, Mande MM (2006) Right-lateralized pain processing in the human cortex: an FMRI study. J Neurophysiol 95:3823–3830PubMedCrossRef Symonds LL, Gordon NS, Bixby JC, Mande MM (2006) Right-lateralized pain processing in the human cortex: an FMRI study. J Neurophysiol 95:3823–3830PubMedCrossRef
go back to reference Talairach J, Tournoux P (1988) Co-planar stereotaxic atlas of the human brain. Thieme Medical Publishers, Germany, pp 1–122 Talairach J, Tournoux P (1988) Co-planar stereotaxic atlas of the human brain. Thieme Medical Publishers, Germany, pp 1–122
go back to reference Treede RD, Kenshalo DR, Gracely RH, Jones AK (1999) The cortical representation of pain. Pain 79:105–111PubMedCrossRef Treede RD, Kenshalo DR, Gracely RH, Jones AK (1999) The cortical representation of pain. Pain 79:105–111PubMedCrossRef
go back to reference Turkeltaub PE, Eden GF, Jones KM, Zeffiro TA (2002) Meta-analysis of the functional neuroanatomy of single-word reading: method and validation. Neuroimage 16:765–780PubMedCrossRef Turkeltaub PE, Eden GF, Jones KM, Zeffiro TA (2002) Meta-analysis of the functional neuroanatomy of single-word reading: method and validation. Neuroimage 16:765–780PubMedCrossRef
go back to reference Wager TD, Jonides J, Reading S (2004a) Neuroimaging studies of shifting attention: a meta-analysis. Neuroimage 22:1679–1693PubMedCrossRef Wager TD, Jonides J, Reading S (2004a) Neuroimaging studies of shifting attention: a meta-analysis. Neuroimage 22:1679–1693PubMedCrossRef
go back to reference Wager TD, Rilling JK, Smith EE, Sokolik A, Casey KL, Davidson RJ, Kosslyn SM, Rose RM, Cohen JD (2004b) Placebo-induced changes in FMRI in the anticipation and experience of pain. Science 303:1162–1167PubMedCrossRef Wager TD, Rilling JK, Smith EE, Sokolik A, Casey KL, Davidson RJ, Kosslyn SM, Rose RM, Cohen JD (2004b) Placebo-induced changes in FMRI in the anticipation and experience of pain. Science 303:1162–1167PubMedCrossRef
go back to reference Wager TD, Lindquist M, Kaplan L (2007) Meta-analysis of functional neuroimaging data: current and future directions. Soc Cogn Affect Neurosci 2:150–158PubMedCrossRef Wager TD, Lindquist M, Kaplan L (2007) Meta-analysis of functional neuroimaging data: current and future directions. Soc Cogn Affect Neurosci 2:150–158PubMedCrossRef
go back to reference Wager TD, Lindquist MA, Nichols TE, Kober H, Van Snellenberg JX (2009) Evaluating the consistency and specificity of neuroimaging data using meta-analysis. Neuroimage 45:S210–S221PubMedCrossRef Wager TD, Lindquist MA, Nichols TE, Kober H, Van Snellenberg JX (2009) Evaluating the consistency and specificity of neuroimaging data using meta-analysis. Neuroimage 45:S210–S221PubMedCrossRef
go back to reference Wagner KJ, Sprenger T, Kochs EF, Tolle TR, Valet M, Willoch F (2007) Imaging human cerebral pain modulation by dose-dependent opioid analgesia: a positron emission tomography activation study using remifentanil. Anesthesiology 106:548–556PubMedCrossRef Wagner KJ, Sprenger T, Kochs EF, Tolle TR, Valet M, Willoch F (2007) Imaging human cerebral pain modulation by dose-dependent opioid analgesia: a positron emission tomography activation study using remifentanil. Anesthesiology 106:548–556PubMedCrossRef
go back to reference Wiech K, Seymour B, Kalisch R, Stephan KE, Koltzenburg M, Driver J, Dolan RJ (2005) Modulation of pain processing in hyperalgesia by cognitive demand. Neuroimage 27:59–69PubMedCrossRef Wiech K, Seymour B, Kalisch R, Stephan KE, Koltzenburg M, Driver J, Dolan RJ (2005) Modulation of pain processing in hyperalgesia by cognitive demand. Neuroimage 27:59–69PubMedCrossRef
go back to reference Witting N, Kupers RC, Svensson P, Arendt-Nielsen L, Gjedde A, Jensen TS (2001) Experimental brush-evoked allodynia activates posterior parietal cortex. Neurology 57:1817–1824PubMed Witting N, Kupers RC, Svensson P, Arendt-Nielsen L, Gjedde A, Jensen TS (2001) Experimental brush-evoked allodynia activates posterior parietal cortex. Neurology 57:1817–1824PubMed
go back to reference Witting N, Kupers RC, Svensson P, Jensen TS (2006) A PET activation study of brush-evoked allodynia in patients with nerve injury pain. Pain 120:145–154PubMedCrossRef Witting N, Kupers RC, Svensson P, Jensen TS (2006) A PET activation study of brush-evoked allodynia in patients with nerve injury pain. Pain 120:145–154PubMedCrossRef
go back to reference Woolf CJ, Mannion RJ (1999) Neuropathic pain: aetiology, symptoms, mechanisms, and management. Lancet 353:1959–1964PubMedCrossRef Woolf CJ, Mannion RJ (1999) Neuropathic pain: aetiology, symptoms, mechanisms, and management. Lancet 353:1959–1964PubMedCrossRef
go back to reference Xu X, Fukuyama H, Yazawa S, Mima T, Hanakawa T, Magata Y, Kanda M, Fujiwara N, Shindo K, Nagamine T, Shibasaki H (1997) Functional localization of pain perception in the human brain studied by PET. Neuroreport 8:555–559PubMedCrossRef Xu X, Fukuyama H, Yazawa S, Mima T, Hanakawa T, Magata Y, Kanda M, Fujiwara N, Shindo K, Nagamine T, Shibasaki H (1997) Functional localization of pain perception in the human brain studied by PET. Neuroreport 8:555–559PubMedCrossRef
go back to reference Youell PD, Wise RG, Bentley DE, Dickinson MR, King TA, Tracey I, Jones AK (2004) Lateralisation of nociceptive processing in the human brain: a functional magnetic resonance imaging study. Neuroimage 23:1068–1077PubMedCrossRef Youell PD, Wise RG, Bentley DE, Dickinson MR, King TA, Tracey I, Jones AK (2004) Lateralisation of nociceptive processing in the human brain: a functional magnetic resonance imaging study. Neuroimage 23:1068–1077PubMedCrossRef
go back to reference Ziegler EA, Magerl W, Meyer RA, Treede RD (1999) Secondary hyperalgesia to punctate mechanical stimuli. Central sensitization to A-fibre nociceptor input. Brain 122(Pt 12):2245–2257PubMedCrossRef Ziegler EA, Magerl W, Meyer RA, Treede RD (1999) Secondary hyperalgesia to punctate mechanical stimuli. Central sensitization to A-fibre nociceptor input. Brain 122(Pt 12):2245–2257PubMedCrossRef
Metadata
Title
Brain activity associated with pain, hyperalgesia and allodynia: an ALE meta-analysis
Authors
Stefan Lanz
Frank Seifert
Christian Maihöfner
Publication date
01-08-2011
Publisher
Springer Vienna
Published in
Journal of Neural Transmission / Issue 8/2011
Print ISSN: 0300-9564
Electronic ISSN: 1435-1463
DOI
https://doi.org/10.1007/s00702-011-0606-9

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