NIRS fNIRS OHBM 2024 EEG fMRI 

OHBM 2024 - Organization for Human Brain Mapping EEG fMRI NIRS

OHBM 2024 Organization for Human Brain Mapping EEG fMRI NIRS
OHBM 2024 EEG fMRI NIRS fNIRS BCI EEG ERP
Organization for Human Brain Mapping




Multitask mental using gamma band power features OHBM 2024 EEG NIRS

Multitask mental using gamma band power features OHBM 2024 EEG NIRS

Korkmaz OE, Korkmaz SG & Aydemir O (2024) Detection of multitask mental workload using gamma band power features. Neural Computing & Applications. https://doi.org/10.1007/s00521-024-09627-9

OHBM 2024 NIRS EEG Brain network hypersensitivity underlies pain crises in sickle cell disease

OHBM 2024 NIRS EEG Brain network hypersensitivity underlies pain crises in sickle cell disease

Joo P, Kim M, Kish B, Nair VV, Tong Y, Liu Z, O'Brien ARW, Harte SE, Harris RE, Lee U & Wang Y (2024) Brain network hypersensitivity underlies pain crises in sickle cell disease. Scientific Reports (Nature Publishing Group) 14(1). https://doi.org/10.1038/s41598-024-57473-5

EEG resting state alpha and vulnerability to auditory hallucinations OHBM 2024 EEG NIRS fMRI NIRS fNIRS

EEG resting state alpha and vulnerability to auditory hallucinations OHBM 2024 EEG NIRS fMRI NIRS fNIRS

Honcamp H, Duggirala SX, Rodiño Climent J, Astudillo A, Trujillo-Barreto NJ, Schwartze M, Linden DEJ, van Amelsvoort TAMJ, El-Deredy W & Kotz SA (2024) EEG resting state alpha dynamics predict an individual’s vulnerability to auditory hallucinations. Cognitive Neurodynamics. https://doi.org/10.1007/s11571-024-10093-1

OHBM 2024 EEG NIRS fMRI NIRS fNIRS Attention to cardiac sensations enhances the heartbeat-evoked potential during exhalation

OHBM 2024 EEG NIRS fMRI NIRS fNIRS Attention to cardiac sensations enhances the heartbeat-evoked potential during exhalation

Zaccaro A, della Penna F, Mussini E, Parrotta E, Perrucci MG, Costantini M & Ferri F (2024) Attention to cardiac sensations enhances the heartbeat evoked potential during exhalation. IScience, 27(4), 109586–109586. https://doi.org/10.1016/j.isci.2024.109586

Effects of cardioafferent traffic and stress on automatic responses OHBM 2024 EEG NIRS fMRI NIRS fNIRS

Effects of cardioafferent traffic and stress on automatic responses OHBM 2024 EEG NIRS fMRI NIRS fNIRS

von Haugwitz L, Wascher E & Larra MF (2024) Triggered by your heart: Effects of cardioafferent traffic and stress on automatic responses in a Simon task. Psychophysiology. https://doi.org/10.1111/psyp.14572

OHBM 2024 EEG NIRS fMRI NIRS fNIRS Reliable electrocortical dynamics of target-directed pass-kicks

OHBM 2024 EEG NIRS fMRI NIRS fNIRS Reliable electrocortical dynamics of target-directed pass-kicks

Piskin D, Büchel D, Lehmann T & Baumeister J (2024) Reliable electrocortical dynamics of target-directed pass-kicks. Cognitive Neurodynamics. https://doi.org/10.1007/s11571-024-10094-0

Neurophysiological Correlates of Trust and Distrust and Isolated HEXACO Dimensions OHBM 2024 EEG NIRS fMRI NIRS fNIRS

Neurophysiological Correlates of Trust and Distrust and Isolated HEXACO Dimensions OHBM 2024 EEG NIRS fMRI NIRS fNIRS

Külzer D, Kalt S & Walla P (2024) The Connection between Neurophysiological Correlates of Trust and Distrust and Isolated HEXACO Dimensions. Life, 14(3), 362–362. https://doi.org/10.3390/life14030362

OHBM 2024 EEG NIRS fMRI NIRS fNIRS Hyperscanning Setup with 10 Xons

OHBM 2024 EEG NIRS fMRI NIRS fNIRS Hyperscanning Setup with 10 Xons

Hyperscanning Setup with 10 X.onsUsing LSL and an Auditory Oddball ParadigmA BLOG POST BY DR. ALEX KREILINGER
 
OHBM 2024 NIRS fNIRS Artinis

OHBM 2024 NIRS fNIRS Artinis

Mobile EEG-fNIRS – LiveAmp with actiCAP electrodes and Artinis BriteIn this article, you will find resources specific to the combination of the LiveAmp with actiCAP slim electrodes and Artinis Brite fNIRS.
 
OHBM 2024 NIRS fNIRS Cortivision

OHBM 2024 NIRS fNIRS Cortivision

Mobile EEG-fNIRS – LiveAmp with actiCAP electrodes and Cortivision PhotonIn this article, you will find resources specific to the combination of the LiveAmp with actiCAP slim electrodes with the Photon fNIRS from Cortivision.
 
OHBM 2024 NIRS fNIRS NIRx

OHBM 2024 NIRS fNIRS NIRx

Mobile EEG-fNIRS – LiveAmp with actiCAP electrodes and NIRx NIRSport2In this article, you will find resources specific to the combination of the LiveAmp with actiCAP and NIRSport2 from NIRx Medizintechnik GmbH.
 
OHBM 2024 NIRS fNIRS NIRScout NIRx

OHBM 2024 NIRS fNIRS NIRScout NIRx

Stationary EEG-fNIRS – actiCHamp Plus with actiCAP electrodes and NIRx NIRScoutIn this article, you will find resources specific to the combination of the actiCHamp Plus with actiCAP electrodes with the NIRScout fNIRS from NIRx
 
OHBM 2024 NIRS fNIRS High Density NIRS fNIRS

OHBM 2024 NIRS fNIRS High Density NIRS fNIRS

With the latest Aurora upgrade, we have enabled enhanced High Density (HD) recording with NIRSport2. The best part? It works with the existing NIRSport2 systems, and the Aurora upgrade is free. All you need to do is arrange the optodes in a dense array and use the new Aurora features.

OHBM 2024 Mobile EEG and immersive VR to increase ecological validity in emotion research

OHBM 2024 Mobile EEG and immersive VR to increase ecological validity in emotion research

Emotions are an important part of our lives, and understanding how they emerge holds great relevance not only for basic neuroscience but also for clinical psychology.

OHBM 2024 NIRS fNIRS Play Games

OHBM 2024 NIRS fNIRS Play Games

Hemispheric Lateralization in Older Adults Who Habitually Play Darts: A Cross-Sectional Study Using Functional Near-Infrared Spectroscopy

                
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EEG microstates - OHBM2019

Very good to know of new research on EEG microStates


Janir Ramos da Cruz1,2, Ophélie Favrod1 , Maya Roinishvili3,4, Eka Chkonia4,5, Andreas Brand1 , Christine Mohr6, Patrícia Figueiredo2, Michael Herzog1 1 École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland, 2Instituto Superior Técnico, Universidade de Lisboa, Lisboa, Portugal, 3Beritashvili Centre of Experimental Biomedicine, Tbilisi, Georgia, 4Free University of Tbilisi, Tbilisi, Georgia, 5Tbilisi State Medical University, Tbilisi, Georgia, 6University of Lausanne, Lausanne, Switzerland 

Rodolfo Abreu1 , João Jorge2, Alberto Leal3, Patrícia Figueiredo1 1 ISR-Lisboa/LARSyS and Dept. Bioengineering, Instituto Superior Técnico – Universidade de Lisboa, Lisboa, Portugal, 2Laboratory for Functional and Metabolic Imaging, École Polytechnique Fédérale de Lausanne, Lausanne, Switzerland, 3Department of Neurophysiology, Centro Hospitalar Psiquiátrico de Lisboa, Lisboa, Portugal 

Jing Xu1 , Shuqin Zhou2, Guangyuan Zou2, Jiayi Liu2, Zihui Su3, Qihong Zou2, Jia-Hong Gao2 1 Shanghai International Studies University, Shanghai, China, 2Peking University, Beijing, China, 3Oxford University, Oxford, United Kingdom

Martin Lamoš1 , Martina Bočková1 , Petr Klimeš2, Alena Damborská1 , Josef Halámek2, Pavel Jurák2, Ivan Rektor1 1 CEITEC MU, Brno, Czech Republic, 2Academy of Sciences of the Czech Republic, Brno, Czech Republic

Filippo Zappasodi1 , Mauro Gianni Perrucci1 , Aristide Saggino2, Pierpaolo Croce1 , Pasqua Mercuri2, Roberta Romanelli2, Roberto Colom3, Sjoerd Ebisch1 1 Department of Neuroscience, Imaging and Clinical Sciences, G. d’Annunzio University Chieti-Pescara, Chieti, Italy, 2School of Medicine and Health Sciences, G. d’Annunzio University Chieti-Pescara, Chieti, Italy, 3Universidad Autónoma de Madrid, Madrid, Spain

Sara Spadone1 , Pierpaolo Croce2, Filippo Zappasodi3, Paolo Capotosto1 1 Dept. of Neuroscience, Imaging and Clinical Sciences, University G. d’Annunzio, Chieti, Italy, 2Department of Neuroscience, Imaging and Clinical Sciences, G. d’Annunzio University ChietiPescara, Chieti, CH, 3Department of Neuroscience, Imaging and Clinical Sciences, G. d’Annunzio University Chieti-Pescara, Pescara, CH  

Jiayi Liu1,2, Jing Xu3, Guangyuan Zou1,2, Shuqin Zhou1,4, Qihong Zou1 , Jiahong Gao1,2,5,6 1 Center for MRI Research, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing, China, 2Beijing City Key Lab for Medical Physics and Engineering, Institution of Heavy Ion Physics, School of Physics, Peking University, Beijing, China, 3Laboratory of Applied Brain and Cognitive Sciences, Shanghai International Studies University, Shanghai, China, 4Department of Biomedical Engineering, College of Engineering, Peking University, Beijing, China, 5McGovern Institute for Brain Research, Peking University, Beijing, China, 6Shenzhen Institute of Neuroscience, Beijing, China

Obada AL Zoubi1,2, Ahmad Mayeli1 , Aki Tsuchiyagaito1 , Masaya Misaki1 , Vadim Zotev1 , T1000 Investigators1 , Hazem Refai2, Martin Paulus1 , Jerzy Bodurka1 1 Laureate Institute for Brain Research, Tulsa, OK, United States, 2The University of Oklahoma, Tulsa, OK, United States  

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Autor: Jackson
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