Imaging the functional connectivity of the Periaqueductal Gray during genuine and sham electroacupuncture treatment

<p>Abstract</p> <p>Background</p> <p>Electroacupuncture (EA) is currently one of the most popular acupuncture modalities. However, the continuous stimulation characteristic of EA treatment presents challenges to the use of conventional functional Magnetic Resonance Imag...

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Main Authors: Tu Peichi, LaViolette Peter S, Cheetham Alexandra, Loiotile Rita E, Polich Ginger, Jensen Karin, Zyloney Carolyn E, Kaptchuk Ted J, Gollub Randy L, Kong Jian
Format: Article
Language:English
Published: SAGE Publishing 2010-11-01
Series:Molecular Pain
Online Access:http://www.molecularpain.com/content/6/1/80
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spelling doaj-073ce61ca01e42e38a103c6a1410866a2020-11-25T03:11:20ZengSAGE PublishingMolecular Pain1744-80692010-11-01618010.1186/1744-8069-6-80Imaging the functional connectivity of the Periaqueductal Gray during genuine and sham electroacupuncture treatmentTu PeichiLaViolette Peter SCheetham AlexandraLoiotile Rita EPolich GingerJensen KarinZyloney Carolyn EKaptchuk Ted JGollub Randy LKong Jian<p>Abstract</p> <p>Background</p> <p>Electroacupuncture (EA) is currently one of the most popular acupuncture modalities. However, the continuous stimulation characteristic of EA treatment presents challenges to the use of conventional functional Magnetic Resonance Imaging (fMRI) approaches for the investigation of neural mechanisms mediating treatment response because of the requirement for brief and intermittent stimuli in event related or block designed task paradigms. A relatively new analysis method, functional connectivity fMRI (fcMRI), has great potential for studying continuous treatment modalities such as EA. In a previous study, we found that, compared with sham acupuncture, EA can significantly reduce Periaqueductal Gray (PAG) activity when subsequently evoked by experimental pain. Given the PAG's important role in mediating acupuncture analgesia, in this study we investigated functional connectivity with the area of the PAG we previously identified and how that connectivity was affected by genuine and sham EA.</p> <p>Results</p> <p>Forty-eight subjects, who were randomly assigned to receive either genuine or sham EA paired with either a high or low expectancy manipulation, completed the study. Direct comparison of each treatment mode's functional connectivity revealed: significantly greater connectivity between the PAG, left posterior cingulate cortex (PCC), and precuneus for the contrast of genuine minus sham; significantly greater connectivity between the PAG and right anterior insula for the contrast of sham minus genuine; no significant differences in connectivity between different contrasts of the two expectancy levels.</p> <p>Conclusions</p> <p>Our findings indicate the intrinsic functional connectivity changes among key brain regions in the pain matrix and default mode network during genuine EA compared with sham EA. We speculate that continuous genuine EA stimulation can modify the coupling of spontaneous activity in brain regions that play a role in modulating pain perception.</p> http://www.molecularpain.com/content/6/1/80
collection DOAJ
language English
format Article
sources DOAJ
author Tu Peichi
LaViolette Peter S
Cheetham Alexandra
Loiotile Rita E
Polich Ginger
Jensen Karin
Zyloney Carolyn E
Kaptchuk Ted J
Gollub Randy L
Kong Jian
spellingShingle Tu Peichi
LaViolette Peter S
Cheetham Alexandra
Loiotile Rita E
Polich Ginger
Jensen Karin
Zyloney Carolyn E
Kaptchuk Ted J
Gollub Randy L
Kong Jian
Imaging the functional connectivity of the Periaqueductal Gray during genuine and sham electroacupuncture treatment
Molecular Pain
author_facet Tu Peichi
LaViolette Peter S
Cheetham Alexandra
Loiotile Rita E
Polich Ginger
Jensen Karin
Zyloney Carolyn E
Kaptchuk Ted J
Gollub Randy L
Kong Jian
author_sort Tu Peichi
title Imaging the functional connectivity of the Periaqueductal Gray during genuine and sham electroacupuncture treatment
title_short Imaging the functional connectivity of the Periaqueductal Gray during genuine and sham electroacupuncture treatment
title_full Imaging the functional connectivity of the Periaqueductal Gray during genuine and sham electroacupuncture treatment
title_fullStr Imaging the functional connectivity of the Periaqueductal Gray during genuine and sham electroacupuncture treatment
title_full_unstemmed Imaging the functional connectivity of the Periaqueductal Gray during genuine and sham electroacupuncture treatment
title_sort imaging the functional connectivity of the periaqueductal gray during genuine and sham electroacupuncture treatment
publisher SAGE Publishing
series Molecular Pain
issn 1744-8069
publishDate 2010-11-01
description <p>Abstract</p> <p>Background</p> <p>Electroacupuncture (EA) is currently one of the most popular acupuncture modalities. However, the continuous stimulation characteristic of EA treatment presents challenges to the use of conventional functional Magnetic Resonance Imaging (fMRI) approaches for the investigation of neural mechanisms mediating treatment response because of the requirement for brief and intermittent stimuli in event related or block designed task paradigms. A relatively new analysis method, functional connectivity fMRI (fcMRI), has great potential for studying continuous treatment modalities such as EA. In a previous study, we found that, compared with sham acupuncture, EA can significantly reduce Periaqueductal Gray (PAG) activity when subsequently evoked by experimental pain. Given the PAG's important role in mediating acupuncture analgesia, in this study we investigated functional connectivity with the area of the PAG we previously identified and how that connectivity was affected by genuine and sham EA.</p> <p>Results</p> <p>Forty-eight subjects, who were randomly assigned to receive either genuine or sham EA paired with either a high or low expectancy manipulation, completed the study. Direct comparison of each treatment mode's functional connectivity revealed: significantly greater connectivity between the PAG, left posterior cingulate cortex (PCC), and precuneus for the contrast of genuine minus sham; significantly greater connectivity between the PAG and right anterior insula for the contrast of sham minus genuine; no significant differences in connectivity between different contrasts of the two expectancy levels.</p> <p>Conclusions</p> <p>Our findings indicate the intrinsic functional connectivity changes among key brain regions in the pain matrix and default mode network during genuine EA compared with sham EA. We speculate that continuous genuine EA stimulation can modify the coupling of spontaneous activity in brain regions that play a role in modulating pain perception.</p>
url http://www.molecularpain.com/content/6/1/80
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