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BioSemi eeg active scalp electrodes
Grand-average SNR for the oddball responses over Right Occipital-temporal <t>electrodes.</t> The high SNR responses at the base rate (6 Hz) and its harmonics (12 Hz and 18 Hz) are clearly visible, as are the oddball response (1.2 Hz) and its harmonics.
Eeg Active Scalp Electrodes, supplied by BioSemi, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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1) Product Images from "Investigating Facial Expression Processing during Fast Periodic Visual Stimulation using Highly Variable Stimuli"

Article Title: Investigating Facial Expression Processing during Fast Periodic Visual Stimulation using Highly Variable Stimuli

Journal: bioRxiv

doi: 10.1101/2025.02.14.638300

Grand-average SNR for the oddball responses over Right Occipital-temporal electrodes. The high SNR responses at the base rate (6 Hz) and its harmonics (12 Hz and 18 Hz) are clearly visible, as are the oddball response (1.2 Hz) and its harmonics.
Figure Legend Snippet: Grand-average SNR for the oddball responses over Right Occipital-temporal electrodes. The high SNR responses at the base rate (6 Hz) and its harmonics (12 Hz and 18 Hz) are clearly visible, as are the oddball response (1.2 Hz) and its harmonics.

Techniques Used:


Figure Legend Snippet:

Techniques Used:



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Grand-average SNR for the oddball responses over Right Occipital-temporal <t>electrodes.</t> The high SNR responses at the base rate (6 Hz) and its harmonics (12 Hz and 18 Hz) are clearly visible, as are the oddball response (1.2 Hz) and its harmonics.
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Grand-average SNR for the oddball responses over Right Occipital-temporal <t>electrodes.</t> The high SNR responses at the base rate (6 Hz) and its harmonics (12 Hz and 18 Hz) are clearly visible, as are the oddball response (1.2 Hz) and its harmonics.
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Grand-average SNR for the oddball responses over Right Occipital-temporal <t>electrodes.</t> The high SNR responses at the base rate (6 Hz) and its harmonics (12 Hz and 18 Hz) are clearly visible, as are the oddball response (1.2 Hz) and its harmonics.
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Study design and experimental procedure . (A). Schematic of assessments and musical-electrical TNS. DOC patients’ consciousness was assessed by two experienced blinded clinicians using the CRS-R. Long-term outcomes were assessed using the GOSE. Patients’ brain activity was assessed by measuring 64-channel <t>EEG</t> during the presentation of continuous rhythmic auditory Chinese speech. The rhythmic musical-electrical TNS involved the simultaneous application of auditory music via earphones and electrical current via <t>electrodes</t> attached to the middle and lower parts of the patient’s face (see green and orange squares). Both acoustic and electrical stimulation were amplitude-modulated at gamma frequency (40 Hz, gamma-stimulation group) or beta frequency (28 Hz, beta-stimulation group), or their intensities were set to zero after a short (30 s) initial stimulation interval (sham-stimulation group). (B). Experimental procedure. Each patient underwent a 15-day long experimental procedure consisting of three 5-day long consecutive phases (pretest, stimulation, and posttest,) and a follow-up assessment approximately-one year after the initial CRS-R assessment. The treatment phase involved daily administration of 40 min of rhythmic musical-electrical TNS or sham stimulation. The pretest and posttest phases involved administration of daily behavioral assessments (CRS-R) and a single neural assessment (EEG) on the day immediately before and after the stimulation phase, respectively. The follow-up phase involved administration of a single behavioral assessment (GOSE). (For interpretation of the references to colour in this figure legend, the reader is referred to the web version of this article.)
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Study design and experimental procedure . (A). Schematic of assessments and musical-electrical TNS. DOC patients’ consciousness was assessed by two experienced blinded clinicians using the CRS-R. Long-term outcomes were assessed using the GOSE. Patients’ brain activity was assessed by measuring 64-channel <t>EEG</t> during the presentation of continuous rhythmic auditory Chinese speech. The rhythmic musical-electrical TNS involved the simultaneous application of auditory music via earphones and electrical current via <t>electrodes</t> attached to the middle and lower parts of the patient’s face (see green and orange squares). Both acoustic and electrical stimulation were amplitude-modulated at gamma frequency (40 Hz, gamma-stimulation group) or beta frequency (28 Hz, beta-stimulation group), or their intensities were set to zero after a short (30 s) initial stimulation interval (sham-stimulation group). (B). Experimental procedure. Each patient underwent a 15-day long experimental procedure consisting of three 5-day long consecutive phases (pretest, stimulation, and posttest,) and a follow-up assessment approximately-one year after the initial CRS-R assessment. The treatment phase involved daily administration of 40 min of rhythmic musical-electrical TNS or sham stimulation. The pretest and posttest phases involved administration of daily behavioral assessments (CRS-R) and a single neural assessment (EEG) on the day immediately before and after the stimulation phase, respectively. The follow-up phase involved administration of a single behavioral assessment (GOSE). (For interpretation of the references to colour in this figure legend, the reader is referred to the web version of this article.)
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Image Search Results


Grand-average SNR for the oddball responses over Right Occipital-temporal electrodes. The high SNR responses at the base rate (6 Hz) and its harmonics (12 Hz and 18 Hz) are clearly visible, as are the oddball response (1.2 Hz) and its harmonics.

Journal: bioRxiv

Article Title: Investigating Facial Expression Processing during Fast Periodic Visual Stimulation using Highly Variable Stimuli

doi: 10.1101/2025.02.14.638300

Figure Lengend Snippet: Grand-average SNR for the oddball responses over Right Occipital-temporal electrodes. The high SNR responses at the base rate (6 Hz) and its harmonics (12 Hz and 18 Hz) are clearly visible, as are the oddball response (1.2 Hz) and its harmonics.

Article Snippet: We recorded EEG from 64 active scalp electrodes using a BioSemi ActiveTwo system (BioSemi, Amsterdam, Netherlands).

Techniques:

Journal: bioRxiv

Article Title: Investigating Facial Expression Processing during Fast Periodic Visual Stimulation using Highly Variable Stimuli

doi: 10.1101/2025.02.14.638300

Figure Lengend Snippet:

Article Snippet: We recorded EEG from 64 active scalp electrodes using a BioSemi ActiveTwo system (BioSemi, Amsterdam, Netherlands).

Techniques:

Study design and experimental procedure . (A). Schematic of assessments and musical-electrical TNS. DOC patients’ consciousness was assessed by two experienced blinded clinicians using the CRS-R. Long-term outcomes were assessed using the GOSE. Patients’ brain activity was assessed by measuring 64-channel EEG during the presentation of continuous rhythmic auditory Chinese speech. The rhythmic musical-electrical TNS involved the simultaneous application of auditory music via earphones and electrical current via electrodes attached to the middle and lower parts of the patient’s face (see green and orange squares). Both acoustic and electrical stimulation were amplitude-modulated at gamma frequency (40 Hz, gamma-stimulation group) or beta frequency (28 Hz, beta-stimulation group), or their intensities were set to zero after a short (30 s) initial stimulation interval (sham-stimulation group). (B). Experimental procedure. Each patient underwent a 15-day long experimental procedure consisting of three 5-day long consecutive phases (pretest, stimulation, and posttest,) and a follow-up assessment approximately-one year after the initial CRS-R assessment. The treatment phase involved daily administration of 40 min of rhythmic musical-electrical TNS or sham stimulation. The pretest and posttest phases involved administration of daily behavioral assessments (CRS-R) and a single neural assessment (EEG) on the day immediately before and after the stimulation phase, respectively. The follow-up phase involved administration of a single behavioral assessment (GOSE). (For interpretation of the references to colour in this figure legend, the reader is referred to the web version of this article.)

Journal: NeuroImage : Clinical

Article Title: Rhythmic musical-electrical trigeminal nerve stimulation improves impaired consciousness

doi: 10.1016/j.nicl.2022.103170

Figure Lengend Snippet: Study design and experimental procedure . (A). Schematic of assessments and musical-electrical TNS. DOC patients’ consciousness was assessed by two experienced blinded clinicians using the CRS-R. Long-term outcomes were assessed using the GOSE. Patients’ brain activity was assessed by measuring 64-channel EEG during the presentation of continuous rhythmic auditory Chinese speech. The rhythmic musical-electrical TNS involved the simultaneous application of auditory music via earphones and electrical current via electrodes attached to the middle and lower parts of the patient’s face (see green and orange squares). Both acoustic and electrical stimulation were amplitude-modulated at gamma frequency (40 Hz, gamma-stimulation group) or beta frequency (28 Hz, beta-stimulation group), or their intensities were set to zero after a short (30 s) initial stimulation interval (sham-stimulation group). (B). Experimental procedure. Each patient underwent a 15-day long experimental procedure consisting of three 5-day long consecutive phases (pretest, stimulation, and posttest,) and a follow-up assessment approximately-one year after the initial CRS-R assessment. The treatment phase involved daily administration of 40 min of rhythmic musical-electrical TNS or sham stimulation. The pretest and posttest phases involved administration of daily behavioral assessments (CRS-R) and a single neural assessment (EEG) on the day immediately before and after the stimulation phase, respectively. The follow-up phase involved administration of a single behavioral assessment (GOSE). (For interpretation of the references to colour in this figure legend, the reader is referred to the web version of this article.)

Article Snippet: Patients’ brain activity was assessed during the presentation of auditory stimuli (see next section) using 64 active scalp EEG electrodes (BrainCap, Brain Products, Munich, Germany) placed according to a standard 10–20 system.

Techniques: Activity Assay