eeg amplifier Search Results


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brain products gmbh eeg amplifier
Eeg Amplifier, supplied by brain products gmbh, 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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Nihon Kohden corporation neurofax 2100 digital eeg system
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Mitsar Co Ltd mitsar-eeg 202 electroencephalograph
Mitsar Eeg 202 Electroencephalograph, supplied by Mitsar Co Ltd, 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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brain products gmbh two 32-channel, nonmagnetic, battery-operated electroencephalographic amplifiers (brainamp mr)
Two 32 Channel, Nonmagnetic, Battery Operated Electroencephalographic Amplifiers (Brainamp Mr), supplied by brain products gmbh, 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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brain products gmbh multi-channel eeg amplifiers brainamp hardware
Multi Channel Eeg Amplifiers Brainamp Hardware, supplied by brain products gmbh, 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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Mitsar Co Ltd mitsar-20 eeg amplifier instrument
Mitsar 20 Eeg Amplifier Instrument, supplied by Mitsar Co Ltd, 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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brain products gmbh actichamp eeg amplifier
Actichamp Eeg Amplifier, supplied by brain products gmbh, 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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Nexstim Ltd 60-channel tms-compatible eeg amplifier
60 Channel Tms Compatible Eeg Amplifier, supplied by Nexstim Ltd, 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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Imaging Solutions GmbH 64 channel eeg amplifier
64 Channel Eeg Amplifier, supplied by Imaging Solutions GmbH, 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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Biotrial Inc eeg acquisition system (amplifier and dedicated laptop)
Eeg Acquisition System (Amplifier And Dedicated Laptop), supplied by Biotrial Inc, 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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brain products gmbh 16 channel eeg amplifier v-amp dc
16 Channel Eeg Amplifier V Amp Dc, supplied by brain products gmbh, 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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BioSemi eeg amplifier
Identification of scalp predominant topography in the mechanosensory condition for the three groups in the study. (i) Grand mean for control (N), patients with migraine without aura (PM), and patients with migraine with aura (PMA) reported in red (positive)/blue(negative) voltage diagram, and relative topography averaged over 60 ms. Each diagram shows the voltage over the 128 channels (electrodes) used to register the scalp <t>electroencephalogram.</t> The electrodes were subdivided into four regions, indicated with A, B, C and D, each conveying 32 channels. (ii) Scalp distribution of <t>the</t> <t>Biosemi</t> 128-channel on the cap. A: central-occipital area, B: right centro-occipital area, C: Fronto-central area, D: left centro-occipital area. (iii) Microstates segmentation of the Grand Mean for the three groups in the study, N, PM, and PMA. The segments are projected on the global field power (GFP) of the relative GM, and they are reported color-coded and numbered in order of appearance. (iv) Microstates map topographies as defined by the segmentation process. A total of 18 maps describe the mechanosensory process across 1.2 s of post-stimulus onset for the three groups. The common maps across the groups are highlighted with dashed squares color-coded with the relative segment. The defined microstates are coherently found in the original topography as shown in (i) . Similar topographies are highlighted with dashed squares also color-coded with the relative microstates
Eeg 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/result/eeg amplifier/product/BioSemi
Average 90 stars, based on 1 article reviews
eeg amplifier - by Bioz Stars, 2026-06
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Image Search Results


Identification of scalp predominant topography in the mechanosensory condition for the three groups in the study. (i) Grand mean for control (N), patients with migraine without aura (PM), and patients with migraine with aura (PMA) reported in red (positive)/blue(negative) voltage diagram, and relative topography averaged over 60 ms. Each diagram shows the voltage over the 128 channels (electrodes) used to register the scalp electroencephalogram. The electrodes were subdivided into four regions, indicated with A, B, C and D, each conveying 32 channels. (ii) Scalp distribution of the Biosemi 128-channel on the cap. A: central-occipital area, B: right centro-occipital area, C: Fronto-central area, D: left centro-occipital area. (iii) Microstates segmentation of the Grand Mean for the three groups in the study, N, PM, and PMA. The segments are projected on the global field power (GFP) of the relative GM, and they are reported color-coded and numbered in order of appearance. (iv) Microstates map topographies as defined by the segmentation process. A total of 18 maps describe the mechanosensory process across 1.2 s of post-stimulus onset for the three groups. The common maps across the groups are highlighted with dashed squares color-coded with the relative segment. The defined microstates are coherently found in the original topography as shown in (i) . Similar topographies are highlighted with dashed squares also color-coded with the relative microstates

Journal: Brain Topography

Article Title: Migraine Type-Dependent Patterns of Brain Activation After Facial and Intranasal Trigeminal Stimulation

doi: 10.1007/s10548-022-00924-x

Figure Lengend Snippet: Identification of scalp predominant topography in the mechanosensory condition for the three groups in the study. (i) Grand mean for control (N), patients with migraine without aura (PM), and patients with migraine with aura (PMA) reported in red (positive)/blue(negative) voltage diagram, and relative topography averaged over 60 ms. Each diagram shows the voltage over the 128 channels (electrodes) used to register the scalp electroencephalogram. The electrodes were subdivided into four regions, indicated with A, B, C and D, each conveying 32 channels. (ii) Scalp distribution of the Biosemi 128-channel on the cap. A: central-occipital area, B: right centro-occipital area, C: Fronto-central area, D: left centro-occipital area. (iii) Microstates segmentation of the Grand Mean for the three groups in the study, N, PM, and PMA. The segments are projected on the global field power (GFP) of the relative GM, and they are reported color-coded and numbered in order of appearance. (iv) Microstates map topographies as defined by the segmentation process. A total of 18 maps describe the mechanosensory process across 1.2 s of post-stimulus onset for the three groups. The common maps across the groups are highlighted with dashed squares color-coded with the relative segment. The defined microstates are coherently found in the original topography as shown in (i) . Similar topographies are highlighted with dashed squares also color-coded with the relative microstates

Article Snippet: Electrodes were mounted on a standard 10/10 System head cap (BioSemi cap) and connected to the EEG amplifier (BioSemi Active Two AD-box).

Techniques:

Identification of scalp predominant topography in the chemosensory condition for the three groups in the study. (i) Grand mean for control (N), patients with migraine without aura (PM), and patients with migraine with aura (PMA) reported in red (positive)/blue(negative) voltage diagram, and relative topography averaged over 60 ms. Each diagram shows the voltage over the 128 channels (electrodes) used to register the scalp electroencephalogram. The electrodes were subdivided into four regions, each conveying 32 channels. (ii) Scalp distribution of the Biosemi 128-channel on the cap. A: central-occipital area, B: right centro-occipital area, C: Fronto-central area, D: left centro-occipital area. (iii) Microstates segmentation of the Grand Mean for the three groups in the study, N, PM, and PMA. The segments are projected on the global field power (GFP) of the relative GM, and they are reported color-coded and numbered in order of appearance. (iv) Microstates map topographies as defined by the segmentation process. A total of 18 maps describes the chemosensory process across 1.2 s of post-stimulus onset for the three groups. The microstates, originally named with numbers in crescent order, were renamed with alphabetic letters from a to t, to avoid confusion with the maps identified in the mechanosensory segmentation. The common maps across the groups are highlighted with dashed squares color-coded with the relative segment. The defined microstates are coherently found in the original topography as shown in (i) . Similar topographies are highlighted with dashed squares also color-coded with the relative microstates

Journal: Brain Topography

Article Title: Migraine Type-Dependent Patterns of Brain Activation After Facial and Intranasal Trigeminal Stimulation

doi: 10.1007/s10548-022-00924-x

Figure Lengend Snippet: Identification of scalp predominant topography in the chemosensory condition for the three groups in the study. (i) Grand mean for control (N), patients with migraine without aura (PM), and patients with migraine with aura (PMA) reported in red (positive)/blue(negative) voltage diagram, and relative topography averaged over 60 ms. Each diagram shows the voltage over the 128 channels (electrodes) used to register the scalp electroencephalogram. The electrodes were subdivided into four regions, each conveying 32 channels. (ii) Scalp distribution of the Biosemi 128-channel on the cap. A: central-occipital area, B: right centro-occipital area, C: Fronto-central area, D: left centro-occipital area. (iii) Microstates segmentation of the Grand Mean for the three groups in the study, N, PM, and PMA. The segments are projected on the global field power (GFP) of the relative GM, and they are reported color-coded and numbered in order of appearance. (iv) Microstates map topographies as defined by the segmentation process. A total of 18 maps describes the chemosensory process across 1.2 s of post-stimulus onset for the three groups. The microstates, originally named with numbers in crescent order, were renamed with alphabetic letters from a to t, to avoid confusion with the maps identified in the mechanosensory segmentation. The common maps across the groups are highlighted with dashed squares color-coded with the relative segment. The defined microstates are coherently found in the original topography as shown in (i) . Similar topographies are highlighted with dashed squares also color-coded with the relative microstates

Article Snippet: Electrodes were mounted on a standard 10/10 System head cap (BioSemi cap) and connected to the EEG amplifier (BioSemi Active Two AD-box).

Techniques: