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BOLD fMRI of c-fiber mediated nociceptive processing in mouse brain in response to thermal stimulation of the forepaws

Authors :
Bosshard, Simone C
Stuker, Florian
von Deuster, Constantin
Schroeter, Aileen
Rudin, Markus
Bosshard, Simone C
Stuker, Florian
von Deuster, Constantin
Schroeter, Aileen
Rudin, Markus
Source :
Bosshard, Simone C; Stuker, Florian; von Deuster, Constantin; Schroeter, Aileen; Rudin, Markus (2015). BOLD fMRI of c-fiber mediated nociceptive processing in mouse brain in response to thermal stimulation of the forepaws. PLoS ONE, 10(5):e0126513.
Publication Year :
2015

Abstract

Functional magnetic resonance imaging (fMRI) in rodents enables non-invasive studies of brain function in response to peripheral input or at rest. In this study we describe a thermal stimulation paradigm using infrared laser diodes to apply noxious heat to the forepaw of mice in order to study nociceptive processing. Stimulation at 45 and 46°C led to robust BOLD signal changes in various brain structures including the somatosensory cortices and the thalamus. The BOLD signal amplitude scaled with the temperature applied but not with the area irradiated by the laser beam. To demonstrate the specificity of the paradigm for assessing nociceptive signaling we administered the quaternary lidocaine derivative QX-314 to the forepaws, which due to its positive charge cannot readily cross biological membranes. However, upon activation of TRPV1 channels following the administration of capsaicin the BOLD signal was largely abolished, indicative of a selective block of the C-fiber nociceptors due to QX-314 having entered the cells via the now open TRPV1 channels. This demonstrates that the cerebral BOLD response to thermal noxious paw stimulation is specifically mediated by C-fibers.

Details

Database :
OAIster
Journal :
Bosshard, Simone C; Stuker, Florian; von Deuster, Constantin; Schroeter, Aileen; Rudin, Markus (2015). BOLD fMRI of c-fiber mediated nociceptive processing in mouse brain in response to thermal stimulation of the forepaws. PLoS ONE, 10(5):e0126513.
Notes :
application/pdf, info:doi/10.5167/uzh-114341, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn942507796
Document Type :
Electronic Resource