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low resolution brain electromagnetic tomography loreta module  (Brainvision Inc)

 
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    Brainvision Inc low resolution brain electromagnetic tomography loreta module
    Low Resolution Brain Electromagnetic Tomography Loreta Module, supplied by Brainvision Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/low-resolution+electromagnetic+tomography+loreta/brain+electromagnetic+loreta+low+module+resolution+tomography/10__1109_slash_tcds__2026__3658544-125-15-22
    Average 86 stars, based on 1 article reviews
    low resolution brain electromagnetic tomography loreta module - by Bioz Stars, 2026-09
    86/100 stars

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    other:

    Article Title: What makes somatosensory short-term memory maintenance effective? An EEG study comparing contralateral delay activity between sighted participants and participants who are blind.
    Article Snippet: To conduct source analysis, we used low-resolution electromagnetic omography (LORETA in BrainVision Analyzer 2.1), which provides curent density estimates for 2349 voxels spanning the gray matter and ippocampus ( Pascual-Marqui et al., 1999 ).



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    Low Resolution Brain Electromagnetic Tomography Loreta Module, supplied by Brainvision Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    <t>LORETA</t> source estimations for the differential effects of feedback types as revealed by the FRN, P3, and LPP components. The medial frontal gyrus and anterior cingulate emerged as relevant sources for the FRN (A) and P3 (B) components discriminating negative compared to positive feedback. (C) For the LPP, frontal lobe and orbital gyrus best-matched the differential cortical activity to unexpected loss vs. loss and win feedback. For the LPP difference loss vs. win, the best source match referred to the temporal lobe and inferior temporal gyrus.
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    <t>LORETA</t> source estimations for the differential effects of feedback types as revealed by the FRN, P3, and LPP components. The medial frontal gyrus and anterior cingulate emerged as relevant sources for the FRN (A) and P3 (B) components discriminating negative compared to positive feedback. (C) For the LPP, frontal lobe and orbital gyrus best-matched the differential cortical activity to unexpected loss vs. loss and win feedback. For the LPP difference loss vs. win, the best source match referred to the temporal lobe and inferior temporal gyrus.
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    <t>LORETA</t> source estimations for the differential effects of feedback types as revealed by the FRN, P3, and LPP components. The medial frontal gyrus and anterior cingulate emerged as relevant sources for the FRN (A) and P3 (B) components discriminating negative compared to positive feedback. (C) For the LPP, frontal lobe and orbital gyrus best-matched the differential cortical activity to unexpected loss vs. loss and win feedback. For the LPP difference loss vs. win, the best source match referred to the temporal lobe and inferior temporal gyrus.
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    <t>LORETA</t> source estimations for the differential effects of feedback types as revealed by the FRN, P3, and LPP components. The medial frontal gyrus and anterior cingulate emerged as relevant sources for the FRN (A) and P3 (B) components discriminating negative compared to positive feedback. (C) For the LPP, frontal lobe and orbital gyrus best-matched the differential cortical activity to unexpected loss vs. loss and win feedback. For the LPP difference loss vs. win, the best source match referred to the temporal lobe and inferior temporal gyrus.
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    LORETA source estimations for the differential effects of feedback types as revealed by the FRN, P3, and LPP components. The medial frontal gyrus and anterior cingulate emerged as relevant sources for the FRN (A) and P3 (B) components discriminating negative compared to positive feedback. (C) For the LPP, frontal lobe and orbital gyrus best-matched the differential cortical activity to unexpected loss vs. loss and win feedback. For the LPP difference loss vs. win, the best source match referred to the temporal lobe and inferior temporal gyrus.

    Journal: Frontiers in Behavioral Neuroscience

    Article Title: Aversive anticipations modulate electrocortical correlates of decision-making and reward reversal learning, but not behavioral performance

    doi: 10.3389/fnbeh.2022.908454

    Figure Lengend Snippet: LORETA source estimations for the differential effects of feedback types as revealed by the FRN, P3, and LPP components. The medial frontal gyrus and anterior cingulate emerged as relevant sources for the FRN (A) and P3 (B) components discriminating negative compared to positive feedback. (C) For the LPP, frontal lobe and orbital gyrus best-matched the differential cortical activity to unexpected loss vs. loss and win feedback. For the LPP difference loss vs. win, the best source match referred to the temporal lobe and inferior temporal gyrus.

    Article Snippet: For reasons of exploration and illustration, Low-Resolution Electromagnetic Tomography (LORETA; ) source estimations were carried out using the inbuilt function of the Brain Vision Analyzer 2.0 (BrainProducts).

    Techniques: Activity Assay