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64 channel hydrocel gsn 130 saline based electrode cap  (Welcony)


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    Structured Review

    Welcony 64 channel hydrocel gsn 130 saline based electrode cap
    64 Channel Hydrocel Gsn 130 Saline Based Electrode Cap, supplied by Welcony, used in various techniques. Bioz Stars score: 96/100, based on 2224 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/64 channel hydrocel gsn 130 saline based electrode cap/product/Welcony
    Average 96 stars, based on 2224 article reviews
    64 channel hydrocel gsn 130 saline based electrode cap - by Bioz Stars, 2026-02
    96/100 stars

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    Modulation index (MI) values between the frontal and posterior areas. (A) Time-frequency representation of MI values between the frontal and left posterior areas (FLP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly higher than zero ( p < .001). (B) Time-frequency representation of MI values between the frontal and right posterior areas (FRP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly lower than zero ( p = .022). (C) MI values between all <t>electrodes</t> within the significant time—frequency intervals identified in subfigure A. (D) MI values between all electrodes within the significant time—frequency intervals identified in subfigure B. In subFig. C and D, LP: left posterior; RP: right posterior.
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    Modulation index (MI) values between the frontal and posterior areas. (A) Time-frequency representation of MI values between the frontal and left posterior areas (FLP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly higher than zero ( p < .001). (B) Time-frequency representation of MI values between the frontal and right posterior areas (FRP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly lower than zero ( p = .022). (C) MI values between all <t>electrodes</t> within the significant time—frequency intervals identified in subfigure A. (D) MI values between all electrodes within the significant time—frequency intervals identified in subfigure B. In subFig. C and D, LP: left posterior; RP: right posterior.
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    Modulation index (MI) values between the frontal and posterior areas. (A) Time-frequency representation of MI values between the frontal and left posterior areas (FLP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly higher than zero ( p < .001). (B) Time-frequency representation of MI values between the frontal and right posterior areas (FRP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly lower than zero ( p = .022). (C) MI values between all <t>electrodes</t> within the significant time—frequency intervals identified in subfigure A. (D) MI values between all electrodes within the significant time—frequency intervals identified in subfigure B. In subFig. C and D, LP: left posterior; RP: right posterior.
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    Modulation index (MI) values between the frontal and posterior areas. (A) Time-frequency representation of MI values between the frontal and left posterior areas (FLP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly higher than zero ( p < .001). (B) Time-frequency representation of MI values between the frontal and right posterior areas (FRP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly lower than zero ( p = .022). (C) MI values between all <t>electrodes</t> within the significant time—frequency intervals identified in subfigure A. (D) MI values between all electrodes within the significant time—frequency intervals identified in subfigure B. In subFig. C and D, LP: left posterior; RP: right posterior.
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    Welcony 256 electrode geodesic sensor net
    Modulation index (MI) values between the frontal and posterior areas. (A) Time-frequency representation of MI values between the frontal and left posterior areas (FLP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly higher than zero ( p < .001). (B) Time-frequency representation of MI values between the frontal and right posterior areas (FRP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly lower than zero ( p = .022). (C) MI values between all <t>electrodes</t> within the significant time—frequency intervals identified in subfigure A. (D) MI values between all electrodes within the significant time—frequency intervals identified in subfigure B. In subFig. C and D, LP: left posterior; RP: right posterior.
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    Image Search Results


    Modulation index (MI) values between the frontal and posterior areas. (A) Time-frequency representation of MI values between the frontal and left posterior areas (FLP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly higher than zero ( p < .001). (B) Time-frequency representation of MI values between the frontal and right posterior areas (FRP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly lower than zero ( p = .022). (C) MI values between all electrodes within the significant time—frequency intervals identified in subfigure A. (D) MI values between all electrodes within the significant time—frequency intervals identified in subfigure B. In subFig. C and D, LP: left posterior; RP: right posterior.

    Journal: Developmental Cognitive Neuroscience

    Article Title: Distinct theta oscillation coherence patterns during visual selective attention in children with and without attention-deficit/hyperactivity disorder

    doi: 10.1016/j.dcn.2025.101636

    Figure Lengend Snippet: Modulation index (MI) values between the frontal and posterior areas. (A) Time-frequency representation of MI values between the frontal and left posterior areas (FLP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly higher than zero ( p < .001). (B) Time-frequency representation of MI values between the frontal and right posterior areas (FRP) in the TD (left panel) and ADHD (right panel) groups. The black solid line indicates the cluster in which MI values were significantly lower than zero ( p = .022). (C) MI values between all electrodes within the significant time—frequency intervals identified in subfigure A. (D) MI values between all electrodes within the significant time—frequency intervals identified in subfigure B. In subFig. C and D, LP: left posterior; RP: right posterior.

    Article Snippet: EEG data were recorded from 128 electrodes (HydroCel Geodesic Sensor Net, Electrical Geodesics, Inc., Eugene, OR), with electrode Cz used as an online reference.

    Techniques:

    The connections between frontal and posterior areas. (A) Schematic of the connections between frontal and left posterior areas (FLP) with significant positive MI values in the ADHD group ( p < .001). (B) Topographical representation of the edge number of nodes in the FLP network in the ADHD group. The solid dots represent the electrodes involved in the network. (C) Schematic of the connections between frontal and right posterior areas (FRP) with significant negative MI values in the TD group ( p < .001). (D) Topographical representation of the edge number of nodes in the FRP network in the TD group. The solid dots represent the electrodes involved in the network.

    Journal: Developmental Cognitive Neuroscience

    Article Title: Distinct theta oscillation coherence patterns during visual selective attention in children with and without attention-deficit/hyperactivity disorder

    doi: 10.1016/j.dcn.2025.101636

    Figure Lengend Snippet: The connections between frontal and posterior areas. (A) Schematic of the connections between frontal and left posterior areas (FLP) with significant positive MI values in the ADHD group ( p < .001). (B) Topographical representation of the edge number of nodes in the FLP network in the ADHD group. The solid dots represent the electrodes involved in the network. (C) Schematic of the connections between frontal and right posterior areas (FRP) with significant negative MI values in the TD group ( p < .001). (D) Topographical representation of the edge number of nodes in the FRP network in the TD group. The solid dots represent the electrodes involved in the network.

    Article Snippet: EEG data were recorded from 128 electrodes (HydroCel Geodesic Sensor Net, Electrical Geodesics, Inc., Eugene, OR), with electrode Cz used as an online reference.

    Techniques: