eeg signal recorded from 128 channels using biosemi active electrodes Search Results


90
BioSemi 128 channel eeg
128 Channel Eeg, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/10__1111_slash_ene__12807-498-2-6?v=BioSemi
Average 90 stars, based on 1 article reviews
128 channel eeg - by Bioz Stars, 2026-07
90/100 stars
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90
BioSemi eeg biosemi
Eeg Biosemi, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/10__1177_slash_03010066110400s102-5215-0-2?v=BioSemi
Average 90 stars, based on 1 article reviews
eeg biosemi - by Bioz Stars, 2026-07
90/100 stars
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90
BioSemi 128 sintered ag/agcl active electrodes activetwo tm system
128 Sintered Ag/Agcl Active Electrodes Activetwo Tm System, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pmc09847217-160-8-16?v=BioSemi
Average 90 stars, based on 1 article reviews
128 sintered ag/agcl active electrodes activetwo tm system - by Bioz Stars, 2026-07
90/100 stars
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90
BioSemi activetwo system
Activetwo System, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pm38087950-70-9-11?v=BioSemi
Average 90 stars, based on 1 article reviews
activetwo system - by Bioz Stars, 2026-07
90/100 stars
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90
BioSemi ad-box two
Ad Box Two, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pmc05836290-184-16-15?v=BioSemi
Average 90 stars, based on 1 article reviews
ad-box two - by Bioz Stars, 2026-07
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90
BioSemi biosemi 128-electrode cap
The mannequin head used for digitization and the five digitizing methods tested. (A) The mannequin head fit with <t>the</t> <t>128-electrode</t> EEG cap used for all of the digitizing recordings. The right and left preauriculars were marked by o-rings and nasion was marked with a reflective marker. The color-coded map of the cap shows the different electrode strips and the order of digitization from (A–D). (B) The ultrasound digitizing system and an operator placing the tip of the wand in the electrode well on the cap. Two of the total five ultrasound emitters on the face and wand, as well as the data acquisition (DAQ) box and the receiver module are also indicated. (C) The structured-light 3D scanner and an operator manually marking the locations of individual electrodes of the scanned model in MATLAB. (D) The infrared 3D scanner and an operator manually marking the locations of individual electrodes of the colored 3D scan in MATLAB. (E) The motion capture digitizing probe with a close-up view of the o-rings placed 7 mm away from the tip. The probe has a similar role to the wand in the ultrasound system. (F) The EEG cap with 35 3D-printed EEG electrode shaped reflective markers, 3 face markers, and 3 fiducial markers used for the motion capture digitization. We placed reflective markers on top of the preauricular o-rings to be able to capture fiducial locations. The electrode map depicts the approximate locations of the digitized electrodes and grounds.
Biosemi 128 Electrode Cap, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pmc06856631-140-9-8?v=BioSemi
Average 90 stars, based on 1 article reviews
biosemi 128-electrode cap - by Bioz Stars, 2026-07
90/100 stars
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90
BioSemi 128 ag/agcl scalp electrode cap
The mannequin head used for digitization and the five digitizing methods tested. (A) The mannequin head fit with <t>the</t> <t>128-electrode</t> EEG cap used for all of the digitizing recordings. The right and left preauriculars were marked by o-rings and nasion was marked with a reflective marker. The color-coded map of the cap shows the different electrode strips and the order of digitization from (A–D). (B) The ultrasound digitizing system and an operator placing the tip of the wand in the electrode well on the cap. Two of the total five ultrasound emitters on the face and wand, as well as the data acquisition (DAQ) box and the receiver module are also indicated. (C) The structured-light 3D scanner and an operator manually marking the locations of individual electrodes of the scanned model in MATLAB. (D) The infrared 3D scanner and an operator manually marking the locations of individual electrodes of the colored 3D scan in MATLAB. (E) The motion capture digitizing probe with a close-up view of the o-rings placed 7 mm away from the tip. The probe has a similar role to the wand in the ultrasound system. (F) The EEG cap with 35 3D-printed EEG electrode shaped reflective markers, 3 face markers, and 3 fiducial markers used for the motion capture digitization. We placed reflective markers on top of the preauricular o-rings to be able to capture fiducial locations. The electrode map depicts the approximate locations of the digitized electrodes and grounds.
128 Ag/Agcl Scalp Electrode Cap, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pmc11520018-146-7-12?v=BioSemi
Average 90 stars, based on 1 article reviews
128 ag/agcl scalp electrode cap - by Bioz Stars, 2026-07
90/100 stars
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90
BioSemi 128-channel biosemi eeg cap layout
The mannequin head used for digitization and the five digitizing methods tested. (A) The mannequin head fit with <t>the</t> <t>128-electrode</t> EEG cap used for all of the digitizing recordings. The right and left preauriculars were marked by o-rings and nasion was marked with a reflective marker. The color-coded map of the cap shows the different electrode strips and the order of digitization from (A–D). (B) The ultrasound digitizing system and an operator placing the tip of the wand in the electrode well on the cap. Two of the total five ultrasound emitters on the face and wand, as well as the data acquisition (DAQ) box and the receiver module are also indicated. (C) The structured-light 3D scanner and an operator manually marking the locations of individual electrodes of the scanned model in MATLAB. (D) The infrared 3D scanner and an operator manually marking the locations of individual electrodes of the colored 3D scan in MATLAB. (E) The motion capture digitizing probe with a close-up view of the o-rings placed 7 mm away from the tip. The probe has a similar role to the wand in the ultrasound system. (F) The EEG cap with 35 3D-printed EEG electrode shaped reflective markers, 3 face markers, and 3 fiducial markers used for the motion capture digitization. We placed reflective markers on top of the preauricular o-rings to be able to capture fiducial locations. The electrode map depicts the approximate locations of the digitized electrodes and grounds.
128 Channel Biosemi Eeg Cap Layout, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pmc11549933-160-1-2?v=BioSemi
Average 90 stars, based on 1 article reviews
128-channel biosemi eeg cap layout - by Bioz Stars, 2026-07
90/100 stars
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86
Brainvision Inc 32 128 channel arrays
The mannequin head used for digitization and the five digitizing methods tested. (A) The mannequin head fit with <t>the</t> <t>128-electrode</t> EEG cap used for all of the digitizing recordings. The right and left preauriculars were marked by o-rings and nasion was marked with a reflective marker. The color-coded map of the cap shows the different electrode strips and the order of digitization from (A–D). (B) The ultrasound digitizing system and an operator placing the tip of the wand in the electrode well on the cap. Two of the total five ultrasound emitters on the face and wand, as well as the data acquisition (DAQ) box and the receiver module are also indicated. (C) The structured-light 3D scanner and an operator manually marking the locations of individual electrodes of the scanned model in MATLAB. (D) The infrared 3D scanner and an operator manually marking the locations of individual electrodes of the colored 3D scan in MATLAB. (E) The motion capture digitizing probe with a close-up view of the o-rings placed 7 mm away from the tip. The probe has a similar role to the wand in the ultrasound system. (F) The EEG cap with 35 3D-printed EEG electrode shaped reflective markers, 3 face markers, and 3 fiducial markers used for the motion capture digitization. We placed reflective markers on top of the preauricular o-rings to be able to capture fiducial locations. The electrode map depicts the approximate locations of the digitized electrodes and grounds.
32 128 Channel Arrays, 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/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pmc10330829-90-5-8?v=Brainvision+Inc
Average 86 stars, based on 1 article reviews
32 128 channel arrays - by Bioz Stars, 2026-07
86/100 stars
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90
BioSemi active scalp electrodes
The mannequin head used for digitization and the five digitizing methods tested. (A) The mannequin head fit with <t>the</t> <t>128-electrode</t> EEG cap used for all of the digitizing recordings. The right and left preauriculars were marked by o-rings and nasion was marked with a reflective marker. The color-coded map of the cap shows the different electrode strips and the order of digitization from (A–D). (B) The ultrasound digitizing system and an operator placing the tip of the wand in the electrode well on the cap. Two of the total five ultrasound emitters on the face and wand, as well as the data acquisition (DAQ) box and the receiver module are also indicated. (C) The structured-light 3D scanner and an operator manually marking the locations of individual electrodes of the scanned model in MATLAB. (D) The infrared 3D scanner and an operator manually marking the locations of individual electrodes of the colored 3D scan in MATLAB. (E) The motion capture digitizing probe with a close-up view of the o-rings placed 7 mm away from the tip. The probe has a similar role to the wand in the ultrasound system. (F) The EEG cap with 35 3D-printed EEG electrode shaped reflective markers, 3 face markers, and 3 fiducial markers used for the motion capture digitization. We placed reflective markers on top of the preauricular o-rings to be able to capture fiducial locations. The electrode map depicts the approximate locations of the digitized electrodes and grounds.
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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pm30832994-167-15-24?v=BioSemi
Average 90 stars, based on 1 article reviews
active scalp electrodes - by Bioz Stars, 2026-07
90/100 stars
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90
BioSemi custom-made 128 + 128 channel dual-layer scalp electrode system activetwo
The mannequin head used for digitization and the five digitizing methods tested. (A) The mannequin head fit with <t>the</t> <t>128-electrode</t> EEG cap used for all of the digitizing recordings. The right and left preauriculars were marked by o-rings and nasion was marked with a reflective marker. The color-coded map of the cap shows the different electrode strips and the order of digitization from (A–D). (B) The ultrasound digitizing system and an operator placing the tip of the wand in the electrode well on the cap. Two of the total five ultrasound emitters on the face and wand, as well as the data acquisition (DAQ) box and the receiver module are also indicated. (C) The structured-light 3D scanner and an operator manually marking the locations of individual electrodes of the scanned model in MATLAB. (D) The infrared 3D scanner and an operator manually marking the locations of individual electrodes of the colored 3D scan in MATLAB. (E) The motion capture digitizing probe with a close-up view of the o-rings placed 7 mm away from the tip. The probe has a similar role to the wand in the ultrasound system. (F) The EEG cap with 35 3D-printed EEG electrode shaped reflective markers, 3 face markers, and 3 fiducial markers used for the motion capture digitization. We placed reflective markers on top of the preauricular o-rings to be able to capture fiducial locations. The electrode map depicts the approximate locations of the digitized electrodes and grounds.
Custom Made 128 + 128 Channel Dual Layer Scalp Electrode System Activetwo, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pmc10574843-116-6-15?v=BioSemi
Average 90 stars, based on 1 article reviews
custom-made 128 + 128 channel dual-layer scalp electrode system activetwo - by Bioz Stars, 2026-07
90/100 stars
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90
BioSemi biosemi active-two amplifier
The mannequin head used for digitization and the five digitizing methods tested. (A) The mannequin head fit with <t>the</t> <t>128-electrode</t> EEG cap used for all of the digitizing recordings. The right and left preauriculars were marked by o-rings and nasion was marked with a reflective marker. The color-coded map of the cap shows the different electrode strips and the order of digitization from (A–D). (B) The ultrasound digitizing system and an operator placing the tip of the wand in the electrode well on the cap. Two of the total five ultrasound emitters on the face and wand, as well as the data acquisition (DAQ) box and the receiver module are also indicated. (C) The structured-light 3D scanner and an operator manually marking the locations of individual electrodes of the scanned model in MATLAB. (D) The infrared 3D scanner and an operator manually marking the locations of individual electrodes of the colored 3D scan in MATLAB. (E) The motion capture digitizing probe with a close-up view of the o-rings placed 7 mm away from the tip. The probe has a similar role to the wand in the ultrasound system. (F) The EEG cap with 35 3D-printed EEG electrode shaped reflective markers, 3 face markers, and 3 fiducial markers used for the motion capture digitization. We placed reflective markers on top of the preauricular o-rings to be able to capture fiducial locations. The electrode map depicts the approximate locations of the digitized electrodes and grounds.
Biosemi Active Two Amplifier, 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
https://www.bioz.com/product/eeg+signal+recorded+from+128+channels+using+biosemi+active+electrodes/pmc03461401-113-15-15?v=BioSemi
Average 90 stars, based on 1 article reviews
biosemi active-two amplifier - by Bioz Stars, 2026-07
90/100 stars
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Image Search Results


The mannequin head used for digitization and the five digitizing methods tested. (A) The mannequin head fit with the 128-electrode EEG cap used for all of the digitizing recordings. The right and left preauriculars were marked by o-rings and nasion was marked with a reflective marker. The color-coded map of the cap shows the different electrode strips and the order of digitization from (A–D). (B) The ultrasound digitizing system and an operator placing the tip of the wand in the electrode well on the cap. Two of the total five ultrasound emitters on the face and wand, as well as the data acquisition (DAQ) box and the receiver module are also indicated. (C) The structured-light 3D scanner and an operator manually marking the locations of individual electrodes of the scanned model in MATLAB. (D) The infrared 3D scanner and an operator manually marking the locations of individual electrodes of the colored 3D scan in MATLAB. (E) The motion capture digitizing probe with a close-up view of the o-rings placed 7 mm away from the tip. The probe has a similar role to the wand in the ultrasound system. (F) The EEG cap with 35 3D-printed EEG electrode shaped reflective markers, 3 face markers, and 3 fiducial markers used for the motion capture digitization. We placed reflective markers on top of the preauricular o-rings to be able to capture fiducial locations. The electrode map depicts the approximate locations of the digitized electrodes and grounds.

Journal: Frontiers in Neuroscience

Article Title: More Reliable EEG Electrode Digitizing Methods Can Reduce Source Estimation Uncertainty, but Current Methods Already Accurately Identify Brodmann Areas

doi: 10.3389/fnins.2019.01159

Figure Lengend Snippet: The mannequin head used for digitization and the five digitizing methods tested. (A) The mannequin head fit with the 128-electrode EEG cap used for all of the digitizing recordings. The right and left preauriculars were marked by o-rings and nasion was marked with a reflective marker. The color-coded map of the cap shows the different electrode strips and the order of digitization from (A–D). (B) The ultrasound digitizing system and an operator placing the tip of the wand in the electrode well on the cap. Two of the total five ultrasound emitters on the face and wand, as well as the data acquisition (DAQ) box and the receiver module are also indicated. (C) The structured-light 3D scanner and an operator manually marking the locations of individual electrodes of the scanned model in MATLAB. (D) The infrared 3D scanner and an operator manually marking the locations of individual electrodes of the colored 3D scan in MATLAB. (E) The motion capture digitizing probe with a close-up view of the o-rings placed 7 mm away from the tip. The probe has a similar role to the wand in the ultrasound system. (F) The EEG cap with 35 3D-printed EEG electrode shaped reflective markers, 3 face markers, and 3 fiducial markers used for the motion capture digitization. We placed reflective markers on top of the preauricular o-rings to be able to capture fiducial locations. The electrode map depicts the approximate locations of the digitized electrodes and grounds.

Article Snippet: Since there is only one template for the Biosemi 128-electrode location on the MNI head model and the locations are fixed, we could not calculate a percentage of assignments; thus, the template's Brodmann area for each IC was either a hit or miss.

Techniques: Marker

Visualization of the digitization reliability. Colored and scaled dots show the electrode location within-method variability for all 128 electrodes for the five digitizing methods. Ultrasound had the greatest variability and was the least reliable. The electrodes at the back of the head also tended to have the greatest variability. The motion capture method had the least variability and was the most reliable. The color bar and scale for the radii of the dots illustrate the magnitude of variability.

Journal: Frontiers in Neuroscience

Article Title: More Reliable EEG Electrode Digitizing Methods Can Reduce Source Estimation Uncertainty, but Current Methods Already Accurately Identify Brodmann Areas

doi: 10.3389/fnins.2019.01159

Figure Lengend Snippet: Visualization of the digitization reliability. Colored and scaled dots show the electrode location within-method variability for all 128 electrodes for the five digitizing methods. Ultrasound had the greatest variability and was the least reliable. The electrodes at the back of the head also tended to have the greatest variability. The motion capture method had the least variability and was the most reliable. The color bar and scale for the radii of the dots illustrate the magnitude of variability.

Article Snippet: Since there is only one template for the Biosemi 128-electrode location on the MNI head model and the locations are fixed, we could not calculate a percentage of assignments; thus, the template's Brodmann area for each IC was either a hit or miss.

Techniques: