<p>Top: Location of the electrodes (black dots) used to built the decoding model and the removed electrodes (red crosses), and estimated neural sources involved in encoding hand kinematic projected onto sagittal MRI slices. Bottom: Recorded vs estimated 3D velocity profiles and trajectories in one of the targets. The first column displays the measured velocity profiles (upper panel) and trajectories (lower panel); the second, third and fourth columns display the time course of the reconstructed velocity profiles (upper panels) and the reconstructed trajectories (lower panel).</p
<p>The top-most plot depicts target position observed by user, in response to which the user makes o...
<p>From the top to the bottom, the first and second columns represent the temporal sequence of movem...
<p>Top row: Left, example slice through volumetric head mesh model. Color indicates tissue type. Cen...
<p>First column displays the measured velocity profiles and trajectories; the second, third and four...
<p>(A–F) Neural sources involved in encoding hand kinematic projected onto sagittal MRI slices, with...
<p>Example of 3D hand trajectory prediction over 100 s of test data using 32 channel ECoG signals. R...
<p>Time relative to movement onset, vertical black lines indicate movement onset and end, horizontal...
<p>(<b>a</b>) Responses of four example neurons for a V1 dataset recorded via an implanted electrode...
<p>Example prediction of 3D hand positioning over 8 s of test data using 3, 6, 9, 12, and 16 electro...
<p>(<b>A</b>) Sample plot of prediction values (green) overlaid on recorded positions, velocities or...
<p>(A) The output of the motor interface during the test phase is represented as the force vectors (...
<p><b>A:</b> Schematic of the linear decoding method, here for 4 cells. A temporal filter is associa...
Copyright © 2014 Hong Gi Yeom et al.This is an open access article distributed under the Creative Co...
(A) Left: mouse brain showing insertion mark in the vermal lobule VIa. Right: NeuroNexus ‘Buzsaki32’...
<p>Hand trajectories and velocity profiles from subject 13 of the Mattar_2007_e3 dataset, and the pr...
<p>The top-most plot depicts target position observed by user, in response to which the user makes o...
<p>From the top to the bottom, the first and second columns represent the temporal sequence of movem...
<p>Top row: Left, example slice through volumetric head mesh model. Color indicates tissue type. Cen...
<p>First column displays the measured velocity profiles and trajectories; the second, third and four...
<p>(A–F) Neural sources involved in encoding hand kinematic projected onto sagittal MRI slices, with...
<p>Example of 3D hand trajectory prediction over 100 s of test data using 32 channel ECoG signals. R...
<p>Time relative to movement onset, vertical black lines indicate movement onset and end, horizontal...
<p>(<b>a</b>) Responses of four example neurons for a V1 dataset recorded via an implanted electrode...
<p>Example prediction of 3D hand positioning over 8 s of test data using 3, 6, 9, 12, and 16 electro...
<p>(<b>A</b>) Sample plot of prediction values (green) overlaid on recorded positions, velocities or...
<p>(A) The output of the motor interface during the test phase is represented as the force vectors (...
<p><b>A:</b> Schematic of the linear decoding method, here for 4 cells. A temporal filter is associa...
Copyright © 2014 Hong Gi Yeom et al.This is an open access article distributed under the Creative Co...
(A) Left: mouse brain showing insertion mark in the vermal lobule VIa. Right: NeuroNexus ‘Buzsaki32’...
<p>Hand trajectories and velocity profiles from subject 13 of the Mattar_2007_e3 dataset, and the pr...
<p>The top-most plot depicts target position observed by user, in response to which the user makes o...
<p>From the top to the bottom, the first and second columns represent the temporal sequence of movem...
<p>Top row: Left, example slice through volumetric head mesh model. Color indicates tissue type. Cen...