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Image Search Results


Fig. 1 Overview of the experiment and the modalities included in the dataset. (a) Equipment utilized in the experiment, including the EGI device for collecting EEG data and the Tobii Pro Glasses 3 eye-tracker for tracking eye movements. (b) The experiment setup. Participants were instructed to sit quietly approximately 67 cm from the screen and sequentially read the highlighted text. (c) The experimental protocol. Participants’ 128-channel EEG signals and eye-tracking data were recorded while reading the highlighted text. (d) The data modalities in the dataset. The dataset comprises raw data such as the original textual stimuli, eye movement data, EEG data, and derivatives such as text embeddings from pre-trained NLP models and pre-processed EEG data.

Journal: Scientific data

Article Title: ChineseEEG: A Chinese Linguistic Corpora EEG Dataset for Semantic Alignment and Neural Decoding.

doi: 10.1038/s41597-024-03398-7

Figure Lengend Snippet: Fig. 1 Overview of the experiment and the modalities included in the dataset. (a) Equipment utilized in the experiment, including the EGI device for collecting EEG data and the Tobii Pro Glasses 3 eye-tracker for tracking eye movements. (b) The experiment setup. Participants were instructed to sit quietly approximately 67 cm from the screen and sequentially read the highlighted text. (c) The experimental protocol. Participants’ 128-channel EEG signals and eye-tracking data were recorded while reading the highlighted text. (d) The data modalities in the dataset. The dataset comprises raw data such as the original textual stimuli, eye movement data, EEG data, and derivatives such as text embeddings from pre-trained NLP models and pre-processed EEG data.

Article Snippet: Experiment setupEquipment Experiment protocol C ha nn el s Time (s)EEG device EGI 128 geodesic sensor net Eye tracker Tobii pro glasses 3 t Raw EEG Pretrained language model Texts Eye-tracking data Raw data Derivatives Text embeddings t t tTemporal alignment Pre-processed EEG t t t Pre-processsing Data modalities a b c d C ha nn el s Fig. 1 Overview of the experiment and the modalities included in the dataset. (a) Equipment utilized in the experiment, including the EGI device for collecting EEG data and the Tobii Pro Glasses 3 eye-tracker for tracking eye movements. (b) The experiment setup.

Techniques:

Fig. 3 File structure of the dataset. (a) Eye-tracking data: Each experimental run is associated with a .rar file that contains eye-tracking data. (b) Electrode information files: These include detailed information of electrodes such as the location, type, and sampling rate, as well as information on any channels marked as bad during pre- processing. (c) EEG data and event-related files: Including EEG data in BrainVision format and event files that record marker information. (d) ICA-related files: Containing independent components in numpy format, records of removed components during pre-processing, and topographic maps of the components. (e) Text materials: Containing original and segmented text. (f) Text embedding files: Each file corresponds to an experimental run and is stored in .npy format. (g) Raw EEG data.

Journal: Scientific data

Article Title: ChineseEEG: A Chinese Linguistic Corpora EEG Dataset for Semantic Alignment and Neural Decoding.

doi: 10.1038/s41597-024-03398-7

Figure Lengend Snippet: Fig. 3 File structure of the dataset. (a) Eye-tracking data: Each experimental run is associated with a .rar file that contains eye-tracking data. (b) Electrode information files: These include detailed information of electrodes such as the location, type, and sampling rate, as well as information on any channels marked as bad during pre- processing. (c) EEG data and event-related files: Including EEG data in BrainVision format and event files that record marker information. (d) ICA-related files: Containing independent components in numpy format, records of removed components during pre-processing, and topographic maps of the components. (e) Text materials: Containing original and segmented text. (f) Text embedding files: Each file corresponds to an experimental run and is stored in .npy format. (g) Raw EEG data.

Article Snippet: Experiment setupEquipment Experiment protocol C ha nn el s Time (s)EEG device EGI 128 geodesic sensor net Eye tracker Tobii pro glasses 3 t Raw EEG Pretrained language model Texts Eye-tracking data Raw data Derivatives Text embeddings t t tTemporal alignment Pre-processed EEG t t t Pre-processsing Data modalities a b c d C ha nn el s Fig. 1 Overview of the experiment and the modalities included in the dataset. (a) Equipment utilized in the experiment, including the EGI device for collecting EEG data and the Tobii Pro Glasses 3 eye-tracker for tracking eye movements. (b) The experiment setup.

Techniques: Sampling, Marker

Customized helmet bolus fabrication procedure. (A) Fabrication of double-shelled thermoplastic mask, (B) melting paraffin, (C) filling with melted paraffin, and (D) completed double-shelled mask bolus.

Journal: Technology in Cancer Research & Treatment

Article Title: Feasibility of Customized Thermoplastic Patient-Specific Helmet Bolus for Scalp Irradiation Using Volumetric-Modulated Arc Therapy Planning

doi: 10.1177/15330338241241898

Figure Lengend Snippet: Customized helmet bolus fabrication procedure. (A) Fabrication of double-shelled thermoplastic mask, (B) melting paraffin, (C) filling with melted paraffin, and (D) completed double-shelled mask bolus.

Article Snippet: The bolus material was a commercial patient immobilization device double-shelled netting thermoplastic (MTAPUD 2.4 Head only, CIVCO, USA), and the holes in the netting were filled with melted paraffin to prevent voids from forming ( ).

Techniques:

CT image acquisition for the simulated radiation treatment planning. (A) CT scanning setup and (B) CT image with thermoplastic mask bolus.

Journal: Technology in Cancer Research & Treatment

Article Title: Feasibility of Customized Thermoplastic Patient-Specific Helmet Bolus for Scalp Irradiation Using Volumetric-Modulated Arc Therapy Planning

doi: 10.1177/15330338241241898

Figure Lengend Snippet: CT image acquisition for the simulated radiation treatment planning. (A) CT scanning setup and (B) CT image with thermoplastic mask bolus.

Article Snippet: The bolus material was a commercial patient immobilization device double-shelled netting thermoplastic (MTAPUD 2.4 Head only, CIVCO, USA), and the holes in the netting were filled with melted paraffin to prevent voids from forming ( ).

Techniques:

Dose-volume histogram of CTV and OAR with/without the thermoplastic helmet bolus from RTP results. CTV, clinical target volume; OAR, organs at risk.

Journal: Technology in Cancer Research & Treatment

Article Title: Feasibility of Customized Thermoplastic Patient-Specific Helmet Bolus for Scalp Irradiation Using Volumetric-Modulated Arc Therapy Planning

doi: 10.1177/15330338241241898

Figure Lengend Snippet: Dose-volume histogram of CTV and OAR with/without the thermoplastic helmet bolus from RTP results. CTV, clinical target volume; OAR, organs at risk.

Article Snippet: The bolus material was a commercial patient immobilization device double-shelled netting thermoplastic (MTAPUD 2.4 Head only, CIVCO, USA), and the holes in the netting were filled with melted paraffin to prevent voids from forming ( ).

Techniques:

Journal: Data in Brief

Article Title: Simultaneous and independent electroencephalography and magnetic resonance imaging: A multimodal neuroimaging dataset

doi: 10.1016/j.dib.2023.109661

Figure Lengend Snippet:

Article Snippet: EEG data were recorded using a GES 400 MR system (Electrical Geodesics Inc. [EGI], Eugene, OR, USA) equipped with a 32-channel MR-compatible Geodesic Sensor Net EEG cap, a Net Amps 400 amplifier placed inside a Field Isolation Containment System for MR use, and a Net Amps clock synchronizer device to sync the acquisition of EEG and fMRI data (an essential step for effective gradient artifact removal , ).

Techniques: Imaging, Functional Assay, Software, Isolation, Preserving