A fundamental problem of transcranial magnetic stimulation (TMS) is determining the site and size of the stimulated cortical area. In the motor system, the most common procedure for this is motor mapping. The obtained two-dimensional distribution of coil positions with associated muscle responses is used to calculate a center of gravity on the skull. However, even in motor mapping the exact stimulation site on the cortex is not known and only rough estimates of its size are possible. We report a new method which combines physiological measurements with a physical model used to predict the electric field induced by the TMS coil. In four subjects motor responses in a small hand muscle were mapped with 9–13 stimulation sites at the head perpen...
Computational models have been be used to estimate the electric and magnetic fields induced by trans...
Transcranial magnetic stimulation (TMS) can evoke an electromyographic response in muscles of the ha...
Realistic field calculations in transcranial neurostimulation promise a better insight into the posi...
We report a novel method to determine the site and size of stimulated cortical area in TMS. Applied ...
We report a novel method to determine the site and size of stimulated cortical area in TMS. Applied ...
Stereotactic positioning devices allow to exactly navigate the position of a TMS coil with respect t...
Stereotactic positioning devices allow to exactly navigate the position of a TMS coil with respect t...
Much of our knowledge on the physiological mechanisms of transcranial magnetic stimulation (TMS) ste...
Much of our knowledge on the physiological mechanisms of transcranial magnetic stimulation (TMS) ste...
Knowledge of the type and position of the neural population stimulated by transcranial magnetic stim...
Introduction: TMS modulates brain activity non-invasively by means of induced electric fields. Calcu...
Introduction: TMS modulates brain activity non-invasively by means of induced electric fields. Calcu...
We describe a routine to precisely localize cortical muscle representations within the primary motor...
Many human cortical regions are targeted with transcranial magnetic stimulation (TMS). The stimulus ...
Computational models have been be used to estimate the electric and magnetic fields induced by trans...
Computational models have been be used to estimate the electric and magnetic fields induced by trans...
Transcranial magnetic stimulation (TMS) can evoke an electromyographic response in muscles of the ha...
Realistic field calculations in transcranial neurostimulation promise a better insight into the posi...
We report a novel method to determine the site and size of stimulated cortical area in TMS. Applied ...
We report a novel method to determine the site and size of stimulated cortical area in TMS. Applied ...
Stereotactic positioning devices allow to exactly navigate the position of a TMS coil with respect t...
Stereotactic positioning devices allow to exactly navigate the position of a TMS coil with respect t...
Much of our knowledge on the physiological mechanisms of transcranial magnetic stimulation (TMS) ste...
Much of our knowledge on the physiological mechanisms of transcranial magnetic stimulation (TMS) ste...
Knowledge of the type and position of the neural population stimulated by transcranial magnetic stim...
Introduction: TMS modulates brain activity non-invasively by means of induced electric fields. Calcu...
Introduction: TMS modulates brain activity non-invasively by means of induced electric fields. Calcu...
We describe a routine to precisely localize cortical muscle representations within the primary motor...
Many human cortical regions are targeted with transcranial magnetic stimulation (TMS). The stimulus ...
Computational models have been be used to estimate the electric and magnetic fields induced by trans...
Computational models have been be used to estimate the electric and magnetic fields induced by trans...
Transcranial magnetic stimulation (TMS) can evoke an electromyographic response in muscles of the ha...
Realistic field calculations in transcranial neurostimulation promise a better insight into the posi...