Analysis software HD-Targets™
medicalneurophysiological stimulation

Analysis software - HD-Targets™ - Soterix Medical - medical / neurophysiological stimulation
Analysis software - HD-Targets™ - Soterix Medical - medical / neurophysiological stimulation
Analysis software - HD-Targets™ - Soterix Medical - medical / neurophysiological stimulation - image - 2
Analysis software - HD-Targets™ - Soterix Medical - medical / neurophysiological stimulation - image - 3
Analysis software - HD-Targets™ - Soterix Medical - medical / neurophysiological stimulation - image - 4
Analysis software - HD-Targets™ - Soterix Medical - medical / neurophysiological stimulation - image - 5
Analysis software - HD-Targets™ - Soterix Medical - medical / neurophysiological stimulation - image - 6
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Characteristics

Function
analysis
Applications
medical, neurophysiological stimulation

Description

Soterix Medical revolutionary software for non-invasive brain targeting and specificity. HD-Targets™ automatically determines the best HD configuration for any brain target. Non-invasive brain targeting software Targeting is performed in three easy steps Choose the number of current sources – 4, 8, 16 or 32 electrodes. Pick the field orientation (Radial, Tangential, and more) and Optimization Criteria (max focality or max intensity). Choose your desired brain target either as a region (1100 Talairach locations, labels from the Human Connectome Project, voxel) or guided by EEG. Compatible with all Soterix Medical HD-tDCS and 1×1 tDCS and tES devices. As well as importing custom heads using ROAST 3.0 Revolutionary Features Non-invasive IF / TI brain targeting functionality Since conventional IF/TI stimulation involves 2 current sources, targeting is performed in two easy steps: Pick a desired brain target from a sub-set of locations (labels) as delineated by the Human Connectome Project. Obtain best montage for current source 1 and current source 2. Visualize modulation depth with options for several post-processing options. Compatible with Soterix Medical HD-IFS device. The HD-Targets-IFS extension is included as part of the HD-Targets software. EEG-Guided Targeting One can leverage the reciprocity principle to target the source of recorded EEG. The image on the left below indicates neural activation and resulting EEG map. Using reciprocity algorithm, a corresponding optimal electrode placement to target the brain activation source can be determined.

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