In their commentary on our recently published paper about electroencephalographic responses induced by cerebellar transcranial magnetic stimulation (Fong et al., 2023), Gassmann and colleagues (Gassmann et al., 2023b) try to explain the differences between our results and their own previous work on the same topic. We agree with them that many of the differences arise from our use of a different magnetic stimulation coil. However, two unresolved questions remain. (1) Which method is most likely to achieve optimal activation of cerebellar output? (2) To what extent are the evoked cerebellar responses contaminated by concomitant sensory input? We highlight the role of careful experimental design and of combining electrophysiological ...
Transcranial magnetic stimulation (TMS) evokes neuronal activity in the targeted cortex and connecte...
This commentary is on the original article by Andreasson et al. on pages 793–798 of this issue
Continuous theta-burst stimulation (cTBS) is a repetitive transcranial magnetic stimulation paradigm...
BACKGROUND: the use of combined transcranial magnetic stimulation (TMS) and electroencephalography (...
Background: Connections between the cerebellum and the cortex play a critical role in learning and e...
Comment on: Changes in interoceptive processes following brain stimulation by Pollatos, Herbert, Mai...
First published: 18 February 2021Key points: TMS is commonly used to study excitatory/inhibitory neu...
Background: Transcranial magnetic stimulation (TMS) evokes voltage deflections in electroencephalog...
The transcranial evoked potential (TEP) is a powerful technique to investigate brain dynamics, but s...
AbstractBackgroundWhile transcranial magnetic stimulation (TMS) coil geometry has important effects ...
The cerebellum sends dense projections to both motor and non-motor regions of the cerebral cortex vi...
peer reviewedBackground Transcranial magnetic stimulation combined with electroencephalography (TMS/...
Publisher Copyright: © 2022 Granö I et al.Background: Spontaneous cortical oscillations have been sh...
Background: it is well-known that the cerebellum is critical for the integrity of motor and cognitiv...
Understanding cerebellar–cortical physiological interactions is of fundamental importance to advance...
Transcranial magnetic stimulation (TMS) evokes neuronal activity in the targeted cortex and connecte...
This commentary is on the original article by Andreasson et al. on pages 793–798 of this issue
Continuous theta-burst stimulation (cTBS) is a repetitive transcranial magnetic stimulation paradigm...
BACKGROUND: the use of combined transcranial magnetic stimulation (TMS) and electroencephalography (...
Background: Connections between the cerebellum and the cortex play a critical role in learning and e...
Comment on: Changes in interoceptive processes following brain stimulation by Pollatos, Herbert, Mai...
First published: 18 February 2021Key points: TMS is commonly used to study excitatory/inhibitory neu...
Background: Transcranial magnetic stimulation (TMS) evokes voltage deflections in electroencephalog...
The transcranial evoked potential (TEP) is a powerful technique to investigate brain dynamics, but s...
AbstractBackgroundWhile transcranial magnetic stimulation (TMS) coil geometry has important effects ...
The cerebellum sends dense projections to both motor and non-motor regions of the cerebral cortex vi...
peer reviewedBackground Transcranial magnetic stimulation combined with electroencephalography (TMS/...
Publisher Copyright: © 2022 Granö I et al.Background: Spontaneous cortical oscillations have been sh...
Background: it is well-known that the cerebellum is critical for the integrity of motor and cognitiv...
Understanding cerebellar–cortical physiological interactions is of fundamental importance to advance...
Transcranial magnetic stimulation (TMS) evokes neuronal activity in the targeted cortex and connecte...
This commentary is on the original article by Andreasson et al. on pages 793–798 of this issue
Continuous theta-burst stimulation (cTBS) is a repetitive transcranial magnetic stimulation paradigm...