The Ventral intermediate nucleus (Vim) of thalamus is the most targeted structure for the treatment of drug-refractory tremors. Since methodological differences across existing studies are remarkable and no gold-standard pipeline is available, in this study, we tested different parcellation pipelines for tractography-derived putative Vim identification.Thalamic parcellation was performed on a high quality, multi-shell dataset and a downsampled, clinical-like dataset using two different diffusion signal modeling techniques and two different voxel classification criteria, thus implementing a total of four parcellation pipelines. The most reliable pipeline in terms of inter-subject variability has been picked and parcels putatively correspondi...
Parcellation of the human thalamus based on cortical connectivity information inferred from non-inva...
International audienceHigh frequency stimulation of the ventral intermedius nucleus (Vim) of the tha...
Parcellation of the human thalamus based on cortical connectivity information inferred from non-inva...
The ventral intermediate nucleus (VIM) of the thalamus is an established surgical target for stereot...
Objectives: Traditional targeting methods for thalamic deep brain stimulation (DBS) performed to add...
BACKGROUND: Targeting of the motor thalamus for the treatment of tremor has traditionally been achie...
International audienceThe ventro-intermediate nucleus (Vim), as part of the motor thalamic nuclei, i...
The ventro-intermediate nucleus (Vim), as part of the motor thalamic nuclei, is a commonly used targ...
The ventralis intermedius nucleus (Vim) is centrally placed in the dentato-thalamo-cortical pathway ...
BACKGROUND: Stereotactic targets for thalamotomy are usually derived from population-based coordinat...
BACKGROUND: Stereotactic targets for thalamotomy are usually derived from population-based coordinat...
Abstract To analyze and compare direct and indirect targeting of the Vim for MRgFUS thalamotomy. We ...
To evaluate functional connectivity (FC) of the ventrolateral thalamus, a common target for drug-res...
Scientific Reports - Nature - DOI : 10.1038/s41598-018-37825-8 ################################## "...
<p>Results are overlaid on the postoperative T1-weighted image. White voxels represent the location ...
Parcellation of the human thalamus based on cortical connectivity information inferred from non-inva...
International audienceHigh frequency stimulation of the ventral intermedius nucleus (Vim) of the tha...
Parcellation of the human thalamus based on cortical connectivity information inferred from non-inva...
The ventral intermediate nucleus (VIM) of the thalamus is an established surgical target for stereot...
Objectives: Traditional targeting methods for thalamic deep brain stimulation (DBS) performed to add...
BACKGROUND: Targeting of the motor thalamus for the treatment of tremor has traditionally been achie...
International audienceThe ventro-intermediate nucleus (Vim), as part of the motor thalamic nuclei, i...
The ventro-intermediate nucleus (Vim), as part of the motor thalamic nuclei, is a commonly used targ...
The ventralis intermedius nucleus (Vim) is centrally placed in the dentato-thalamo-cortical pathway ...
BACKGROUND: Stereotactic targets for thalamotomy are usually derived from population-based coordinat...
BACKGROUND: Stereotactic targets for thalamotomy are usually derived from population-based coordinat...
Abstract To analyze and compare direct and indirect targeting of the Vim for MRgFUS thalamotomy. We ...
To evaluate functional connectivity (FC) of the ventrolateral thalamus, a common target for drug-res...
Scientific Reports - Nature - DOI : 10.1038/s41598-018-37825-8 ################################## "...
<p>Results are overlaid on the postoperative T1-weighted image. White voxels represent the location ...
Parcellation of the human thalamus based on cortical connectivity information inferred from non-inva...
International audienceHigh frequency stimulation of the ventral intermedius nucleus (Vim) of the tha...
Parcellation of the human thalamus based on cortical connectivity information inferred from non-inva...