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3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache

A growing body of research, generated primarily from MRI-based studies, shows that migraine appears to occur, and possibly endure, due to the alteration of specific neural processes in the central nervous system. However, information is lacking on the molecular impact of these changes, especially on...

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Autores principales: DaSilva, Alexandre F., Nascimento, Thiago D., Love, Tiffany, DosSantos, Marcos F., Martikainen, Ilkka K., Cummiford, Chelsea M., DeBoer, Misty, Lucas, Sarah R., Bender, MaryCatherine A., Koeppe, Robert A., Hall, Theodore, Petty, Sean, Maslowski, Eric, Smith, Yolanda R., Zubieta, Jon-Kar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MyJove Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4186390/
https://www.ncbi.nlm.nih.gov/pubmed/24962460
http://dx.doi.org/10.3791/50682
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author DaSilva, Alexandre F.
Nascimento, Thiago D.
Love, Tiffany
DosSantos, Marcos F.
Martikainen, Ilkka K.
Cummiford, Chelsea M.
DeBoer, Misty
Lucas, Sarah R.
Bender, MaryCatherine A.
Koeppe, Robert A.
Hall, Theodore
Petty, Sean
Maslowski, Eric
Smith, Yolanda R.
Zubieta, Jon-Kar
author_facet DaSilva, Alexandre F.
Nascimento, Thiago D.
Love, Tiffany
DosSantos, Marcos F.
Martikainen, Ilkka K.
Cummiford, Chelsea M.
DeBoer, Misty
Lucas, Sarah R.
Bender, MaryCatherine A.
Koeppe, Robert A.
Hall, Theodore
Petty, Sean
Maslowski, Eric
Smith, Yolanda R.
Zubieta, Jon-Kar
author_sort DaSilva, Alexandre F.
collection PubMed
description A growing body of research, generated primarily from MRI-based studies, shows that migraine appears to occur, and possibly endure, due to the alteration of specific neural processes in the central nervous system. However, information is lacking on the molecular impact of these changes, especially on the endogenous opioid system during migraine headaches, and neuronavigation through these changes has never been done. This study aimed to investigate, using a novel 3D immersive and interactive neuronavigation (3D-IIN) approach, the endogenous µ-opioid transmission in the brain during a migraine headache attack in vivo. This is arguably one of the most central neuromechanisms associated with pain regulation, affecting multiple elements of the pain experience and analgesia. A 36 year-old female, who has been suffering with migraine for 10 years, was scanned in the typical headache (ictal) and nonheadache (interictal) migraine phases using Positron Emission Tomography (PET) with the selective radiotracer [(11)C]carfentanil, which allowed us to measure µ-opioid receptor availability in the brain (non-displaceable binding potential - µOR BP(ND)). The short-life radiotracer was produced by a cyclotron and chemical synthesis apparatus on campus located in close proximity to the imaging facility. Both PET scans, interictal and ictal, were scheduled during separate mid-late follicular phases of the patient's menstrual cycle. During the ictal PET session her spontaneous headache attack reached severe intensity levels; progressing to nausea and vomiting at the end of the scan session. There were reductions in µOR BP(ND) in the pain-modulatory regions of the endogenous µ-opioid system during the ictal phase, including the cingulate cortex, nucleus accumbens (NAcc), thalamus (Thal), and periaqueductal gray matter (PAG); indicating that µORs were already occupied by endogenous opioids released in response to the ongoing pain. To our knowledge, this is the first time that changes in µOR BP(ND) during a migraine headache attack have been neuronavigated using a novel 3D approach. This method allows for interactive research and educational exploration of a migraine attack in an actual patient's neuroimaging dataset.
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spelling pubmed-41863902014-10-17 3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache DaSilva, Alexandre F. Nascimento, Thiago D. Love, Tiffany DosSantos, Marcos F. Martikainen, Ilkka K. Cummiford, Chelsea M. DeBoer, Misty Lucas, Sarah R. Bender, MaryCatherine A. Koeppe, Robert A. Hall, Theodore Petty, Sean Maslowski, Eric Smith, Yolanda R. Zubieta, Jon-Kar J Vis Exp Medicine A growing body of research, generated primarily from MRI-based studies, shows that migraine appears to occur, and possibly endure, due to the alteration of specific neural processes in the central nervous system. However, information is lacking on the molecular impact of these changes, especially on the endogenous opioid system during migraine headaches, and neuronavigation through these changes has never been done. This study aimed to investigate, using a novel 3D immersive and interactive neuronavigation (3D-IIN) approach, the endogenous µ-opioid transmission in the brain during a migraine headache attack in vivo. This is arguably one of the most central neuromechanisms associated with pain regulation, affecting multiple elements of the pain experience and analgesia. A 36 year-old female, who has been suffering with migraine for 10 years, was scanned in the typical headache (ictal) and nonheadache (interictal) migraine phases using Positron Emission Tomography (PET) with the selective radiotracer [(11)C]carfentanil, which allowed us to measure µ-opioid receptor availability in the brain (non-displaceable binding potential - µOR BP(ND)). The short-life radiotracer was produced by a cyclotron and chemical synthesis apparatus on campus located in close proximity to the imaging facility. Both PET scans, interictal and ictal, were scheduled during separate mid-late follicular phases of the patient's menstrual cycle. During the ictal PET session her spontaneous headache attack reached severe intensity levels; progressing to nausea and vomiting at the end of the scan session. There were reductions in µOR BP(ND) in the pain-modulatory regions of the endogenous µ-opioid system during the ictal phase, including the cingulate cortex, nucleus accumbens (NAcc), thalamus (Thal), and periaqueductal gray matter (PAG); indicating that µORs were already occupied by endogenous opioids released in response to the ongoing pain. To our knowledge, this is the first time that changes in µOR BP(ND) during a migraine headache attack have been neuronavigated using a novel 3D approach. This method allows for interactive research and educational exploration of a migraine attack in an actual patient's neuroimaging dataset. MyJove Corporation 2014-06-02 /pmc/articles/PMC4186390/ /pubmed/24962460 http://dx.doi.org/10.3791/50682 Text en Copyright © 2014, Journal of Visualized Experiments http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visithttp://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Medicine
DaSilva, Alexandre F.
Nascimento, Thiago D.
Love, Tiffany
DosSantos, Marcos F.
Martikainen, Ilkka K.
Cummiford, Chelsea M.
DeBoer, Misty
Lucas, Sarah R.
Bender, MaryCatherine A.
Koeppe, Robert A.
Hall, Theodore
Petty, Sean
Maslowski, Eric
Smith, Yolanda R.
Zubieta, Jon-Kar
3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache
title 3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache
title_full 3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache
title_fullStr 3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache
title_full_unstemmed 3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache
title_short 3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache
title_sort 3d-neuronavigation in vivo through a patient's brain during a spontaneous migraine headache
topic Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4186390/
https://www.ncbi.nlm.nih.gov/pubmed/24962460
http://dx.doi.org/10.3791/50682
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