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A manually controlled new device for punctuate mechanical stimulation of teeth during functional magnetic resonance imaging studies

Identifieur interne : 000E82 ( Istex/Corpus ); précédent : 000E81; suivant : 000E83

A manually controlled new device for punctuate mechanical stimulation of teeth during functional magnetic resonance imaging studies

Auteurs : Pascale Habre-Hallage ; Laurent Hermoye ; Wojciech Gradkowski ; Reinhilde Jacobs ; Hervé Reychler ; Cécile B. Grandin

Source :

RBID : ISTEX:1DCE7083B064DFCE14030C3BF15CE68ABC7D5608

English descriptors

Abstract

Habre‐Hallage P, Hermoye L, Gradkowski W, Jacobs R, Reychler H, Grandin CB. A manually controlled new device for punctuate mechanical stimulation of teeth during functional magnetic resonance imaging studies. J Clin Periodontol 2010; 37: 863–872. doi: 10.1111/j.1600‐051X.2010.01596.x.

Url:
DOI: 10.1111/j.1600-051X.2010.01596.x

Links to Exploration step

ISTEX:1DCE7083B064DFCE14030C3BF15CE68ABC7D5608

Le document en format XML

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<term>Anterior border</term>
<term>Anterior teeth</term>
<term>Behavioural questionnaire</term>
<term>Block design paradigms</term>
<term>Blue arrow</term>
<term>Brodmann</term>
<term>Brodmann area</term>
<term>Brodmann areas</term>
<term>Brush stimulator</term>
<term>Canine</term>
<term>Clear acrylic resin</term>
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<term>Ettlin</term>
<term>European journal</term>
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<term>Fmri studies</term>
<term>Frey</term>
<term>Gyrus</term>
<term>Hagen pardo</term>
<term>Hand tooth</term>
<term>Head coil</term>
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<term>Human brain</term>
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<term>Ipsilateral side</term>
<term>John wiley sons</term>
<term>John wiley sons device</term>
<term>Labial aspect</term>
<term>Labial side</term>
<term>Lament</term>
<term>Light touch</term>
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<term>Periodontal</term>
<term>Periodontal ligament</term>
<term>Periodontal mechanoreceptors</term>
<term>Philips healthcare</term>
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<term>Present study</term>
<term>Pressure sensation</term>
<term>Previous studies</term>
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<term>Primary somatosensory cortex</term>
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<term>Punctuate stimuli</term>
<term>Reconstruction matrix</term>
<term>Repetitive stimulation</term>
<term>Resonance imaging</term>
<term>Resonance imaging studies</term>
<term>Rest periods</term>
<term>Right hand</term>
<term>Same area</term>
<term>Same experiment</term>
<term>Same experimenter</term>
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<term>Secondary somatosensory cortex</term>
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<term>Somatosensory cortex</term>
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<term>Statistical thresholds</term>
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<term>Stimulation device</term>
<term>Stimulation frequency</term>
<term>Tactile</term>
<term>Tactile stimulation</term>
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<term>Trulsson johansson</term>
<term>Universite catholique</term>
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<term>Behavioural questionnaire</term>
<term>Block design paradigms</term>
<term>Blue arrow</term>
<term>Brodmann</term>
<term>Brodmann area</term>
<term>Brodmann areas</term>
<term>Brush stimulator</term>
<term>Canine</term>
<term>Clear acrylic resin</term>
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<term>Clinical neurophysiology</term>
<term>Consistent activation</term>
<term>Constant frequency</term>
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<term>Cortical activation</term>
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<term>Entire system</term>
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<term>European journal</term>
<term>Eventual replacement</term>
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<term>Gyrus</term>
<term>Hagen pardo</term>
<term>Hand tooth</term>
<term>Head coil</term>
<term>Head movement</term>
<term>Human brain</term>
<term>Human cortex</term>
<term>Human subjects</term>
<term>Imaging</term>
<term>Incisor</term>
<term>Innovative tool</term>
<term>Ipsi</term>
<term>Ipsilateral</term>
<term>Ipsilateral side</term>
<term>John wiley sons</term>
<term>John wiley sons device</term>
<term>Labial aspect</term>
<term>Labial side</term>
<term>Lament</term>
<term>Light touch</term>
<term>Limited number</term>
<term>Local activation maxima</term>
<term>Long axis</term>
<term>Magnetic resonance imaging</term>
<term>Manual control</term>
<term>Mechanoreceptors</term>
<term>Neurophysiology</term>
<term>Oral area</term>
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<term>Other structures</term>
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<term>Periodontal</term>
<term>Periodontal ligament</term>
<term>Periodontal mechanoreceptors</term>
<term>Philips healthcare</term>
<term>Plane resolution</term>
<term>Present study</term>
<term>Pressure sensation</term>
<term>Previous studies</term>
<term>Primary somatosensory area</term>
<term>Primary somatosensory cortex</term>
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<term>Punctuate stimuli</term>
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<term>Repetitive stimulation</term>
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<term>Same area</term>
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<term>Same experimenter</term>
<term>Secondary somatosensory area</term>
<term>Secondary somatosensory cortex</term>
<term>Sense factor</term>
<term>Sensory stimulation</term>
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<term>Somatosensory areas</term>
<term>Somatosensory cortex</term>
<term>Somatosensory system</term>
<term>Special attention</term>
<term>Splint</term>
<term>Standardized stimulation</term>
<term>Statistical threshold</term>
<term>Statistical thresholds</term>
<term>Stimulation</term>
<term>Stimulation device</term>
<term>Stimulation frequency</term>
<term>Tactile</term>
<term>Tactile stimulation</term>
<term>Tactile stimuli</term>
<term>Tactile teeth stimulation</term>
<term>Talairach tournoux</term>
<term>Teeth stimulation</term>
<term>Tooth loss</term>
<term>Torque force</term>
<term>Total number</term>
<term>Trulsson</term>
<term>Trulsson johansson</term>
<term>Universite catholique</term>
<term>University hospital</term>
<term>Value subject</term>
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<div type="abstract">Habre‐Hallage P, Hermoye L, Gradkowski W, Jacobs R, Reychler H, Grandin CB. A manually controlled new device for punctuate mechanical stimulation of teeth during functional magnetic resonance imaging studies. J Clin Periodontol 2010; 37: 863–872. doi: 10.1111/j.1600‐051X.2010.01596.x.</div>
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<name>Wojciech Gradkowski</name>
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To design a simple and affordable device that could apply standardized mechanical punctuate stimuli to trigger the periodontal mechanoreceptors during functional magnetic resonance imaging (fMRI).</p>
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The device did not induce any artefacts in MR images. The most efficient protocol included an epoch duration of 24 s and stimuli delivered at 1 Hz. When stimulating the teeth, activations of the primary (S1) and secondary (S2) somatosensory areas were consistently obtained, either on the ipsilateral, contra‐lateral or both sides. Stimulation of the thumb led to activations of the contra‐lateral S1 area and either ipsilateral or contra‐lateral S2 area.</p>
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The use of this innovative tool should allow to perform fMRI studies aimed to unveil the neural correlates of periodontal neural receptors, and to understand their plasticity induced by tooth loss and their eventual replacement by endosseous oral implants.</p>
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<i>Habre‐Hallage P, Hermoye L, Gradkowski W, Jacobs R, Reychler H, Grandin CB. A manually controlled new device for punctuate mechanical stimulation of teeth during functional magnetic resonance imaging studies. J Clin Periodontol 2010; 37: 863–872. doi: 10.1111/j.1600‐051X.2010.01596.x.</i>
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<b>Aim: </b>
To design a simple and affordable device that could apply standardized mechanical punctuate stimuli to trigger the periodontal mechanoreceptors during functional magnetic resonance imaging (fMRI).</p>
<p>
<b>Material and Methods: </b>
A new manually controlled device using von Frey monofilaments was tested on a phantom and on eight volunteers. Four block design paradigms with different timing were compared. Teeth 11, 12, 13, 21, 22, 23 and the thumb were stimulated.</p>
<p>
<b>Results: </b>
The device did not induce any artefacts in MR images. The most efficient protocol included an epoch duration of 24 s and stimuli delivered at 1 Hz. When stimulating the teeth, activations of the primary (S1) and secondary (S2) somatosensory areas were consistently obtained, either on the ipsilateral, contra‐lateral or both sides. Stimulation of the thumb led to activations of the contra‐lateral S1 area and either ipsilateral or contra‐lateral S2 area.</p>
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<affiliation>Institute of Neurosciences, Université Catholique de Louvain, Brussels, Belgium</affiliation>
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<namePart type="given">Cécile B.</namePart>
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<dateIssued encoding="w3cdtf">2010-09</dateIssued>
<edition>Accepted for publication 27 May 2010</edition>
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<abstract>Habre‐Hallage P, Hermoye L, Gradkowski W, Jacobs R, Reychler H, Grandin CB. A manually controlled new device for punctuate mechanical stimulation of teeth during functional magnetic resonance imaging studies. J Clin Periodontol 2010; 37: 863–872. doi: 10.1111/j.1600‐051X.2010.01596.x.</abstract>
<abstract>Aim: To design a simple and affordable device that could apply standardized mechanical punctuate stimuli to trigger the periodontal mechanoreceptors during functional magnetic resonance imaging (fMRI). Material and Methods: A new manually controlled device using von Frey monofilaments was tested on a phantom and on eight volunteers. Four block design paradigms with different timing were compared. Teeth 11, 12, 13, 21, 22, 23 and the thumb were stimulated. Results: The device did not induce any artefacts in MR images. The most efficient protocol included an epoch duration of 24 s and stimuli delivered at 1 Hz. When stimulating the teeth, activations of the primary (S1) and secondary (S2) somatosensory areas were consistently obtained, either on the ipsilateral, contra‐lateral or both sides. Stimulation of the thumb led to activations of the contra‐lateral S1 area and either ipsilateral or contra‐lateral S2 area. Conclusion: The use of this innovative tool should allow to perform fMRI studies aimed to unveil the neural correlates of periodontal neural receptors, and to understand their plasticity induced by tooth loss and their eventual replacement by endosseous oral implants.</abstract>
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<topic>dental</topic>
<topic>fMRI</topic>
<topic>MR‐compatible</topic>
<topic>periodontal mechanoreceptor</topic>
<topic>somatosensory cortex</topic>
<topic>stimulation device</topic>
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