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Unique Microstructural Changes in the Brain Associated with Urological Chronic Pelvic Pain Syndrome (UCPPS) Revealed by Diffusion Tensor MRI, Super-Resolution Track Density Imaging, and Statistical Parameter Mapping: A MAPP Network Neuroimaging Study

Studies have suggested chronic pain syndromes are associated with neural reorganization in specific regions associated with perception, processing, and integration of pain. Urological chronic pelvic pain syndrome (UCPPS) represents a collection of pain syndromes characterized by pelvic pain, namely...

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Autores principales: Woodworth, Davis, Mayer, Emeran, Leu, Kevin, Ashe-McNalley, Cody, Naliboff, Bruce D., Labus, Jennifer S., Tillisch, Kirsten, Kutch, Jason J., Farmer, Melissa A., Apkarian, A. Vania, Johnson, Kevin A., Mackey, Sean C., Ness, Timothy J., Landis, J. Richard, Deutsch, Georg, Harris, Richard E., Clauw, Daniel J., Mullins, Chris, Ellingson, Benjamin M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4604194/
https://www.ncbi.nlm.nih.gov/pubmed/26460744
http://dx.doi.org/10.1371/journal.pone.0140250
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author Woodworth, Davis
Mayer, Emeran
Leu, Kevin
Ashe-McNalley, Cody
Naliboff, Bruce D.
Labus, Jennifer S.
Tillisch, Kirsten
Kutch, Jason J.
Farmer, Melissa A.
Apkarian, A. Vania
Johnson, Kevin A.
Mackey, Sean C.
Ness, Timothy J.
Landis, J. Richard
Deutsch, Georg
Harris, Richard E.
Clauw, Daniel J.
Mullins, Chris
Ellingson, Benjamin M.
author_facet Woodworth, Davis
Mayer, Emeran
Leu, Kevin
Ashe-McNalley, Cody
Naliboff, Bruce D.
Labus, Jennifer S.
Tillisch, Kirsten
Kutch, Jason J.
Farmer, Melissa A.
Apkarian, A. Vania
Johnson, Kevin A.
Mackey, Sean C.
Ness, Timothy J.
Landis, J. Richard
Deutsch, Georg
Harris, Richard E.
Clauw, Daniel J.
Mullins, Chris
Ellingson, Benjamin M.
author_sort Woodworth, Davis
collection PubMed
description Studies have suggested chronic pain syndromes are associated with neural reorganization in specific regions associated with perception, processing, and integration of pain. Urological chronic pelvic pain syndrome (UCPPS) represents a collection of pain syndromes characterized by pelvic pain, namely Chronic Prostatitis/Chronic Pelvic Pain Syndrome (CP/CPPS) and Interstitial Cystitis/Painful Bladder Syndrome (IC/PBS), that are both poorly understood in their pathophysiology, and treated ineffectively. We hypothesized patients with UCPPS may have microstructural differences in the brain compared with healthy control subjects (HCs), as well as patients with irritable bowel syndrome (IBS), a common gastrointestinal pain disorder. In the current study we performed population-based voxel-wise DTI and super-resolution track density imaging (TDI) in a large, two-center sample of phenotyped patients from the multicenter cohort with UCPPS (N = 45), IBS (N = 39), and HCs (N = 56) as part of the MAPP Research Network. Compared with HCs, UCPPS patients had lower fractional anisotropy (FA), lower generalized anisotropy (GA), lower track density, and higher mean diffusivity (MD) in brain regions commonly associated with perception and integration of pain information. Results also showed significant differences in specific anatomical regions in UCPPS patients when compared with IBS patients, consistent with microstructural alterations specific to UCPPS. While IBS patients showed clear sex related differences in FA, MD, GA, and track density consistent with previous reports, few such differences were observed in UCPPS patients. Heat maps illustrating the correlation between specific regions of interest and various pain and urinary symptom scores showed clustering of significant associations along the cortico-basal ganglia-thalamic-cortical loop associated with pain integration, modulation, and perception. Together, results suggest patients with UCPPS have extensive microstructural differences within the brain, many specific to syndrome UCPPS versus IBS, that appear to be localized to regions associated with perception and integration of sensory information and pain modulation, and seem to be a consequence of longstanding pain.
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spelling pubmed-46041942015-10-20 Unique Microstructural Changes in the Brain Associated with Urological Chronic Pelvic Pain Syndrome (UCPPS) Revealed by Diffusion Tensor MRI, Super-Resolution Track Density Imaging, and Statistical Parameter Mapping: A MAPP Network Neuroimaging Study Woodworth, Davis Mayer, Emeran Leu, Kevin Ashe-McNalley, Cody Naliboff, Bruce D. Labus, Jennifer S. Tillisch, Kirsten Kutch, Jason J. Farmer, Melissa A. Apkarian, A. Vania Johnson, Kevin A. Mackey, Sean C. Ness, Timothy J. Landis, J. Richard Deutsch, Georg Harris, Richard E. Clauw, Daniel J. Mullins, Chris Ellingson, Benjamin M. PLoS One Research Article Studies have suggested chronic pain syndromes are associated with neural reorganization in specific regions associated with perception, processing, and integration of pain. Urological chronic pelvic pain syndrome (UCPPS) represents a collection of pain syndromes characterized by pelvic pain, namely Chronic Prostatitis/Chronic Pelvic Pain Syndrome (CP/CPPS) and Interstitial Cystitis/Painful Bladder Syndrome (IC/PBS), that are both poorly understood in their pathophysiology, and treated ineffectively. We hypothesized patients with UCPPS may have microstructural differences in the brain compared with healthy control subjects (HCs), as well as patients with irritable bowel syndrome (IBS), a common gastrointestinal pain disorder. In the current study we performed population-based voxel-wise DTI and super-resolution track density imaging (TDI) in a large, two-center sample of phenotyped patients from the multicenter cohort with UCPPS (N = 45), IBS (N = 39), and HCs (N = 56) as part of the MAPP Research Network. Compared with HCs, UCPPS patients had lower fractional anisotropy (FA), lower generalized anisotropy (GA), lower track density, and higher mean diffusivity (MD) in brain regions commonly associated with perception and integration of pain information. Results also showed significant differences in specific anatomical regions in UCPPS patients when compared with IBS patients, consistent with microstructural alterations specific to UCPPS. While IBS patients showed clear sex related differences in FA, MD, GA, and track density consistent with previous reports, few such differences were observed in UCPPS patients. Heat maps illustrating the correlation between specific regions of interest and various pain and urinary symptom scores showed clustering of significant associations along the cortico-basal ganglia-thalamic-cortical loop associated with pain integration, modulation, and perception. Together, results suggest patients with UCPPS have extensive microstructural differences within the brain, many specific to syndrome UCPPS versus IBS, that appear to be localized to regions associated with perception and integration of sensory information and pain modulation, and seem to be a consequence of longstanding pain. Public Library of Science 2015-10-13 /pmc/articles/PMC4604194/ /pubmed/26460744 http://dx.doi.org/10.1371/journal.pone.0140250 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Woodworth, Davis
Mayer, Emeran
Leu, Kevin
Ashe-McNalley, Cody
Naliboff, Bruce D.
Labus, Jennifer S.
Tillisch, Kirsten
Kutch, Jason J.
Farmer, Melissa A.
Apkarian, A. Vania
Johnson, Kevin A.
Mackey, Sean C.
Ness, Timothy J.
Landis, J. Richard
Deutsch, Georg
Harris, Richard E.
Clauw, Daniel J.
Mullins, Chris
Ellingson, Benjamin M.
Unique Microstructural Changes in the Brain Associated with Urological Chronic Pelvic Pain Syndrome (UCPPS) Revealed by Diffusion Tensor MRI, Super-Resolution Track Density Imaging, and Statistical Parameter Mapping: A MAPP Network Neuroimaging Study
title Unique Microstructural Changes in the Brain Associated with Urological Chronic Pelvic Pain Syndrome (UCPPS) Revealed by Diffusion Tensor MRI, Super-Resolution Track Density Imaging, and Statistical Parameter Mapping: A MAPP Network Neuroimaging Study
title_full Unique Microstructural Changes in the Brain Associated with Urological Chronic Pelvic Pain Syndrome (UCPPS) Revealed by Diffusion Tensor MRI, Super-Resolution Track Density Imaging, and Statistical Parameter Mapping: A MAPP Network Neuroimaging Study
title_fullStr Unique Microstructural Changes in the Brain Associated with Urological Chronic Pelvic Pain Syndrome (UCPPS) Revealed by Diffusion Tensor MRI, Super-Resolution Track Density Imaging, and Statistical Parameter Mapping: A MAPP Network Neuroimaging Study
title_full_unstemmed Unique Microstructural Changes in the Brain Associated with Urological Chronic Pelvic Pain Syndrome (UCPPS) Revealed by Diffusion Tensor MRI, Super-Resolution Track Density Imaging, and Statistical Parameter Mapping: A MAPP Network Neuroimaging Study
title_short Unique Microstructural Changes in the Brain Associated with Urological Chronic Pelvic Pain Syndrome (UCPPS) Revealed by Diffusion Tensor MRI, Super-Resolution Track Density Imaging, and Statistical Parameter Mapping: A MAPP Network Neuroimaging Study
title_sort unique microstructural changes in the brain associated with urological chronic pelvic pain syndrome (ucpps) revealed by diffusion tensor mri, super-resolution track density imaging, and statistical parameter mapping: a mapp network neuroimaging study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4604194/
https://www.ncbi.nlm.nih.gov/pubmed/26460744
http://dx.doi.org/10.1371/journal.pone.0140250
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