Chronic pain is associated with less grey matter volume in the anterior cingulum, anterior and posterior insula and hippocampus across three different chronic pain conditions
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N. Neumann | M. Lotze | C. Schmidt | M. Domin
[1] T. Wager,et al. Individual Variability in Brain Representations of Pain , 2022, Nature Neuroscience.
[2] U. Habel,et al. Structural imaging studies of patients with chronic pain: an anatomic likelihood estimate meta-analysis. , 2022, Pain.
[3] A. Winkler,et al. Patients with chronic pain exhibit individually unique cortical signatures of pain encoding , 2021, Human brain mapping.
[4] B. Fitzgibbon,et al. Brain structure, psychosocial, and physical health in acute and chronic back pain: a UKBioBank study. , 2021, Pain.
[5] A. Apkarian,et al. Brain mechanisms of chronic pain: critical role of translational approach. , 2021, Translational research : the journal of laboratory and clinical medicine.
[6] Taha B. Abdullah,et al. Hippocampus shape deformation: potential diagnostic biomarker for chronic back pain in women. , 2020, Pain.
[7] N. Neumann,et al. Income is associated with hippocampal/amygdala and education with cingulate cortex grey matter volume , 2020, Scientific Reports.
[8] F. Nees,et al. Brain-behaviour correlates of habitual motivation in chronic back pain , 2020, Scientific Reports.
[9] H. Flor,et al. The revised International Association for the Study of Pain definition of pain: concepts, challenges, and compromises. , 2020, Pain.
[10] M. Zhuo. Cortical plasticity as synaptic mechanism for chronic pain , 2019, Journal of Neural Transmission.
[11] Blair H Smith,et al. Chronic pain: a review of its epidemiology and associated factors in population-based studies. , 2019, British journal of anaesthesia.
[12] T. Schnitzer,et al. Deconstructing biomarkers for chronic pain: context- and hypothesis-dependent biomarker types in relation to chronic pain. , 2019, Pain.
[13] A. Mouraux,et al. The search for pain biomarkers in the human brain , 2018, Brain : a journal of neurology.
[14] A. Sartorius,et al. Longitudinal Structural and Functional Brain Network Alterations in a Mouse Model of Neuropathic Pain , 2018, Neuroscience.
[15] Herta Flor,et al. Structural plasticity and reorganisation in chronic pain , 2016, Nature Reviews Neuroscience.
[16] W. Rief,et al. Do we need a third mechanistic descriptor for chronic pain states? , 2016, Pain.
[17] Min Zhuo,et al. Synaptic plasticity in the anterior cingulate cortex in acute and chronic pain , 2016, Nature Reviews Neuroscience.
[18] Carla Nasca,et al. Mechanisms of stress in the brain , 2015, Nature Neuroscience.
[19] Simon B. Eickhoff,et al. Functional organization of human subgenual cortical areas: Relationship between architectonical segregation and connectional heterogeneity , 2015, NeuroImage.
[20] Angela R. Laird,et al. Cytoarchitecture, probability maps and functions of the human frontal pole , 2014, NeuroImage.
[21] Franco Cauda,et al. Gray matter alterations in chronic pain: A network-oriented meta-analytic approach , 2014, NeuroImage: Clinical.
[22] Steven P. Cohen,et al. Neuropathic pain: mechanisms and their clinical implications , 2014, BMJ : British Medical Journal.
[23] Pierre Rainville,et al. The stress model of chronic pain: evidence from basal cortisol and hippocampal structure and function in humans. , 2013, Brain : a journal of neurology.
[24] K. Sacco,et al. Shared “Core” Areas between the Pain and Other Task-Related Networks , 2012, PloS one.
[25] Thomas J. Schnitzer,et al. Brain Morphological Signatures for Chronic Pain , 2011, PloS one.
[26] W. Rathmann,et al. Cohort profile: the study of health in Pomerania. , 2011, International journal of epidemiology.
[27] Mark Jenkinson,et al. Imaging dopamine receptors in humans with [11C]-(+)-PHNO: Dissection of D3 signal and anatomy , 2011, NeuroImage.
[28] R. Kuner,et al. Central mechanisms of pathological pain , 2010, Nature Medicine.
[29] K. Zilles,et al. A link between the systems: functional differentiation and integration within the human insula revealed by meta-analysis , 2010, Brain Structure and Function.
[30] M. Baliki,et al. Predicting Value of Pain and Analgesia: Nucleus Accumbens Response to Noxious Stimuli Changes in the Presence of Chronic Pain , 2010, Neuron.
[31] David A. Seminowicz,et al. MRI structural brain changes associated with sensory and emotional function in a rat model of long-term neuropathic pain , 2009, NeuroImage.
[32] Simon B. Eickhoff,et al. Assignment of functional activations to probabilistic cytoarchitectonic areas revisited , 2007, NeuroImage.
[33] K. Amunts,et al. Cytoarchitectonic mapping of the human amygdala, hippocampal region and entorhinal cortex: intersubject variability and probability maps , 2005, Anatomy and Embryology.
[34] Simon B. Eickhoff,et al. A new SPM toolbox for combining probabilistic cytoarchitectonic maps and functional imaging data , 2005, NeuroImage.
[35] A. Craig,et al. Pain mechanisms: labeled lines versus convergence in central processing. , 2003, Annual review of neuroscience.
[36] Timothy Edward John Behrens,et al. Non-invasive mapping of connections between human thalamus and cortex using diffusion imaging , 2003, Nature Neuroscience.
[37] R. Spitzer,et al. The PHQ-9 , 2001, Journal of General Internal Medicine.
[38] B. McEwen,et al. Plasticity of the Hippocampus: Adaptation to Chronic Stress and Allostatic Load , 2001, Annals of the New York Academy of Sciences.
[39] G. Box,et al. Transformation of the Independent Variables , 1962 .