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Coslett, B.

Publications and source records attributed to Coslett, B..

2 recordsLinked to original sources

Glutamate-Weighted Magnetic Resonance Imaging (GluCEST) Detects Effects of Transcranial Magnetic Stimulation to the Motor Cortex

Transcranial magnetic stimulation (TMS) is used in several FDA-approved treatments and, increasingly, to treat neurological disorders in off-label uses. However, the mechanism by which TMS causes physiological change is unclear, as are the origins of response variability in the general population. Ideally, objective in vivo biomarkers could shed light on these unknowns and eventually inform personalized interventions. Continuous theta burst stimulation (cTBS) is a form of TMS which has been observed to reduce motor evoked potentials (MEPs) for 60 minutes or longer post-stimulation, although the consistency of this effect and its mechanism continue to be under debate. Here, we use glutamate-weighted chemical exchange saturation transfer (gluCEST) magnetic resonance imaging (MRI) at ultra-high magnetic field (7T) to measure changes in glutamate concentration at the site of cTBS. We find that gluCEST signal in the ipsilateral hemisphere of the brain generally decreases in response to cTBS, whereas consistent changes were not detected in the contralateral or in subjects receiving a sham stimulation. One Sentence SummaryWe used glutamate-weighted Chemical Exchange Saturation Transfer (GluCEST) imaging to detect changes in glutamate contrast in the brains of young, healthy adults undergoing transcranial magnetic stimulation (TMS) to the motor cortex.

neuroscience↗

Apparent increase in lip size is linked to tactile discrimination improvement

Magnified vision of ones body part has been shown to improve tactile acuity. We used an anesthetic cream (AC) to explore this effect. In Experiment 1, application of AC caused an increase in perceived lip size. As perceived lip size increased, tactile discrimination (as assessed by two-point discrimination) improved. In Experiment 2, we replicated these results in a larger sample and showed that these effects are not observed without AC. Tactile discrimination was better and improved as a function of lip size with AC, while performance remained consistent without AC. In Experiment 3, we showed that the increase in perceived lip size occurred only with the application of AC, but not with moisturizing cream. The application of either cream induced an improvement in two-point discrimination, but this improvement was modulated by perceived lip size only for AC. Magnification effects are mediated by malleable, experience-dependent representations of the human body.

neuroscience↗