Review




Structured Review

Compumedics Neuroscan erp data processing
(A) Event-related potential <t>(ERP)</t> waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes Fz in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (B) ERP waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes C3 in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (C) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 300–500-ms early time window. (D) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 500–800-ms late time window. The scale bar in the bottom of the map indicates the maximum and minimum of the voltage range. (E) Schematic maps with the highlighted sites employed to analyze the intact/rearranged effects of 300–500-ms and 500–800-ms time windows. LF, left frontal (F3); MF, middle frontal (Fz); RF, right frontal (F4); LC, left central (C3); MC, middle central (Cz); RC, right central (C4); LP, left parietal (P3); MP, middle parietal (Pz); RP, right parietal (P4).
Erp Data Processing, supplied by Compumedics Neuroscan, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/erp data processing/product/Compumedics Neuroscan
Average 90 stars, based on 1 article reviews
erp data processing - by Bioz Stars, 2026-03
90/100 stars

Images

1) Product Images from "Electrophysiological Correlates of Familiarity and Recollection in Associative Recognition: Contributions of Perceptual and Conceptual Processing to Unitization"

Article Title: Electrophysiological Correlates of Familiarity and Recollection in Associative Recognition: Contributions of Perceptual and Conceptual Processing to Unitization

Journal: Frontiers in Human Neuroscience

doi: 10.3389/fnhum.2017.00125

(A) Event-related potential (ERP) waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes Fz in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (B) ERP waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes C3 in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (C) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 300–500-ms early time window. (D) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 500–800-ms late time window. The scale bar in the bottom of the map indicates the maximum and minimum of the voltage range. (E) Schematic maps with the highlighted sites employed to analyze the intact/rearranged effects of 300–500-ms and 500–800-ms time windows. LF, left frontal (F3); MF, middle frontal (Fz); RF, right frontal (F4); LC, left central (C3); MC, middle central (Cz); RC, right central (C4); LP, left parietal (P3); MP, middle parietal (Pz); RP, right parietal (P4).
Figure Legend Snippet: (A) Event-related potential (ERP) waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes Fz in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (B) ERP waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes C3 in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (C) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 300–500-ms early time window. (D) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 500–800-ms late time window. The scale bar in the bottom of the map indicates the maximum and minimum of the voltage range. (E) Schematic maps with the highlighted sites employed to analyze the intact/rearranged effects of 300–500-ms and 500–800-ms time windows. LF, left frontal (F3); MF, middle frontal (Fz); RF, right frontal (F4); LC, left central (C3); MC, middle central (Cz); RC, right central (C4); LP, left parietal (P3); MP, middle parietal (Pz); RP, right parietal (P4).

Techniques Used:



Similar Products

90
Makoto USA Inc erp analyses data-pre-processing pipeline script
Erp Analyses Data Pre Processing Pipeline Script, supplied by Makoto USA Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/erp analyses data-pre-processing pipeline script/product/Makoto USA Inc
Average 90 stars, based on 1 article reviews
erp analyses data-pre-processing pipeline script - by Bioz Stars, 2026-03
90/100 stars
  Buy from Supplier

96
MathWorks Inc erp-data pre-processing via matlab toolbox eeglab
Erp Data Pre Processing Via Matlab Toolbox Eeglab, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/erp-data pre-processing via matlab toolbox eeglab/product/MathWorks Inc
Average 96 stars, based on 1 article reviews
erp-data pre-processing via matlab toolbox eeglab - by Bioz Stars, 2026-03
96/100 stars
  Buy from Supplier

90
Compumedics Neuroscan erp data processing
(A) Event-related potential <t>(ERP)</t> waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes Fz in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (B) ERP waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes C3 in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (C) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 300–500-ms early time window. (D) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 500–800-ms late time window. The scale bar in the bottom of the map indicates the maximum and minimum of the voltage range. (E) Schematic maps with the highlighted sites employed to analyze the intact/rearranged effects of 300–500-ms and 500–800-ms time windows. LF, left frontal (F3); MF, middle frontal (Fz); RF, right frontal (F4); LC, left central (C3); MC, middle central (Cz); RC, right central (C4); LP, left parietal (P3); MP, middle parietal (Pz); RP, right parietal (P4).
Erp Data Processing, supplied by Compumedics Neuroscan, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/erp data processing/product/Compumedics Neuroscan
Average 90 stars, based on 1 article reviews
erp data processing - by Bioz Stars, 2026-03
90/100 stars
  Buy from Supplier

90
Compumedics Neuroscan erp data processing software neuroscan 4.3
(A) Event-related potential <t>(ERP)</t> waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes Fz in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (B) ERP waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes C3 in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (C) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 300–500-ms early time window. (D) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 500–800-ms late time window. The scale bar in the bottom of the map indicates the maximum and minimum of the voltage range. (E) Schematic maps with the highlighted sites employed to analyze the intact/rearranged effects of 300–500-ms and 500–800-ms time windows. LF, left frontal (F3); MF, middle frontal (Fz); RF, right frontal (F4); LC, left central (C3); MC, middle central (Cz); RC, right central (C4); LP, left parietal (P3); MP, middle parietal (Pz); RP, right parietal (P4).
Erp Data Processing Software Neuroscan 4.3, supplied by Compumedics Neuroscan, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/erp data processing software neuroscan 4.3/product/Compumedics Neuroscan
Average 90 stars, based on 1 article reviews
erp data processing software neuroscan 4.3 - by Bioz Stars, 2026-03
90/100 stars
  Buy from Supplier

Image Search Results


(A) Event-related potential (ERP) waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes Fz in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (B) ERP waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes C3 in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (C) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 300–500-ms early time window. (D) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 500–800-ms late time window. The scale bar in the bottom of the map indicates the maximum and minimum of the voltage range. (E) Schematic maps with the highlighted sites employed to analyze the intact/rearranged effects of 300–500-ms and 500–800-ms time windows. LF, left frontal (F3); MF, middle frontal (Fz); RF, right frontal (F4); LC, left central (C3); MC, middle central (Cz); RC, right central (C4); LP, left parietal (P3); MP, middle parietal (Pz); RP, right parietal (P4).

Journal: Frontiers in Human Neuroscience

Article Title: Electrophysiological Correlates of Familiarity and Recollection in Associative Recognition: Contributions of Perceptual and Conceptual Processing to Unitization

doi: 10.3389/fnhum.2017.00125

Figure Lengend Snippet: (A) Event-related potential (ERP) waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes Fz in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (B) ERP waveform for HP-HC, HP-LC, LP-HC and LP-LC at electrodes C3 in the 300–500-ms early time window (light bars) and the 500–800-ms time window (dark bars). (C) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 300–500-ms early time window. (D) Topographic maps illustrating the distribution of associative recognition differences (intact minus rearranged trials mean amplitudes) for HP-HC, HP-LC, LP-HC and LP-LC conditions during the 500–800-ms late time window. The scale bar in the bottom of the map indicates the maximum and minimum of the voltage range. (E) Schematic maps with the highlighted sites employed to analyze the intact/rearranged effects of 300–500-ms and 500–800-ms time windows. LF, left frontal (F3); MF, middle frontal (Fz); RF, right frontal (F4); LC, left central (C3); MC, middle central (Cz); RC, right central (C4); LP, left parietal (P3); MP, middle parietal (Pz); RP, right parietal (P4).

Article Snippet: ERP data were collected and processed by Neuroscan software, and statistical analysis was performed using SPSS 20.0 statistical software.

Techniques: