#hyperscanning — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #hyperscanning, aggregated by home.social.
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DATE: July 17, 2026 at 08:00PM
SOURCE: PSYPOST.ORG** Research quality varies widely from fantastic to small exploratory studies. Please check research methods when conclusions are very important to you. **
-------------------------------------------------TITLE: Neuroscientists find a teamwork paradox: highly synchronized brains perform worse at complex tasks
A recent study published in the journal NeuroImage suggests that when people collaborate on a video game, their brain activity aligns, but this synchronization does not necessarily result in better performance. The findings indicate that the way human brains link up during teamwork is highly complex. This provides evidence that shared brain patterns might not directly cause successful collaboration.
When people interact, their brain waves often start to match up in real time. This phenomenon is known as inter-brain synchrony. To study this, scientists use a technique called hyperscanning, which allows them to record the brain activity of multiple people at the exact same time. Previous research provides evidence that this mental alignment happens during cooperative tasks, like playing games or solving puzzles.
Two specific areas of the brain are highly active during social interactions. The prefrontal cortex handles complex cognitive functions, such as planning, decision-making, and understanding what other people are thinking. The right temporoparietal junction acts as a central hub for social skills, specifically helping individuals take another person’s perspective.
A team of scientists from Nanyang Technological University in Singapore, including S.H. Jessica Tan, S.P. Jessie Leuk, and Wei-Peng Teo, designed a project to explore the causal relationship between brain alignment and teamwork. The authors wanted to know if brain synchrony directly causes better cooperation, or if it is just a byproduct of interacting.
To test this, the research team used a technique called transcranial magnetic stimulation. This method uses brief magnetic fields to temporarily speed up or slow down neural activity in targeted brain regions. By altering activity in the right temporoparietal junction, the researchers hoped to see if changes in this social brain area would affect how well two people collaborated.
The researchers recruited 33 pairs of same-gender strangers for the experiment. Each pair participated in three separate sessions involving a classic puzzle video game, Tetris. During each session, the participants played the game both individually and collaboratively for seven minutes.
In the individual version of the game, each person controlled their own falling blocks. In the collaborative version, the pair shared a single game screen. One person was strictly responsible for moving the blocks left and right, and the other person was responsible for rotating the blocks.
The participants were not allowed to speak to each other during the cooperative game. This rule forced them to anticipate their partner’s next move and rely on turn-taking. By restricting verbal communication, the scientists could observe non-verbal teamwork in action.
To measure brain activity, the scientists used a technology called functional near-infrared spectroscopy. This non-invasive method uses sensors placed on the head to shine near-infrared light through the skull. By measuring how that light is absorbed, the sensors can track changes in blood flow to different parts of the brain. The researchers placed these sensors over the participants’ prefrontal cortex and right temporoparietal junction.
During two of the three sessions, one randomly selected person in each pair received a brief, safe burst of magnetic brain stimulation before the game started. One session used an uninterrupted stimulation pattern known to temporarily slow down brain activity in the right temporoparietal junction. Another session used a pulsing pattern designed to temporarily boost activity in that same area. The third session served as a baseline, meaning no stimulation was applied.
The brain scans revealed that the participants experienced much stronger brain synchrony when they played Tetris together compared to when they played alone or rested. This synchronization was notably stronger in the prefrontal cortex than in the right temporoparietal junction.
Modulating the right temporoparietal junction with magnetic stimulation did not change how well the participants played together. The stimulation also did not change the level of brain synchrony between the partners. The scientists noted that altering the brain activity of just one person might not be enough to disrupt a shared interaction, as the other person’s brain might naturally adapt to maintain the social connection.
The data also revealed a surprising pattern regarding game performance. The researchers measured success by looking at the number of block rows completed, as well as the number of combination moves made. Combination moves occur when multiple rows are eliminated at exactly the same time.
The authors found a negative relationship between brain synchrony in the prefrontal cortex and the number of combination moves the pair achieved. Essentially, pairs who exhibited higher levels of mental alignment actually performed worse at setting up complex, high-scoring moves. This suggests that high neural alignment does not always guarantee a successful outcome in strategic tasks.
The participants also filled out questionnaires about their partners before and after the games. The responses showed that participants consistently rated their partners as more likable after collaborating. This positive social feeling occurred regardless of how poorly they performed or whether they received brain stimulation.
Several factors limit how these findings can be applied to real-world interactions. The study required participants to play Tetris across three different sessions, which likely allowed them to learn the game and adapt to their partner’s style over time. This learning effect could influence how their brains synced up during later sessions.
The equipment used for the study also relied on a limited number of sensors, tracking only specific parts of the brain. Future research could benefit from using more advanced scanning techniques that observe the entire brain at once. This would help map out exactly how different neural networks respond to social interaction and magnetic stimulation.
It is also possible that the observed brain synchrony was partially caused by both participants watching the exact same falling blocks on a screen. When two people look at identical visual inputs, their brains can process the information in similar ways, which can mimic the appearance of a deeper social connection.
To separate genuine social synchrony from shared visual processing, scientists suggest adding a control condition in future studies. For instance, participants could watch a recording of a game without actually playing together. This would help verify if the brain alignment is truly based on teamwork.
The negative relationship between brain synchrony and game performance highlights the need to reevaluate how we understand mental alignment. Higher brain synchrony is often assumed to mean better teamwork and information sharing. This new evidence suggests that the function of inter-brain synchrony is highly nuanced.
Higher levels of synchronization tend to emerge during teamwork, but they might reflect the cognitive effort required to figure out a partner’s strategy rather than successful execution. More studies are needed to unpack the exact reasons why brain waves align and how this biological process affects human relationships.
The study, “Inter-brain synchrony during collaborative gaming: an investigation using theta-burst stimulation at the right temporal-parietal junction,” was authored by S.H. Jessica Tan, S.P. Jessie Leuk, and Wei-Peng Teo.
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Private, vetted email list for mental health professionals: https://www.clinicians-exchange.org
Unofficial Psychology Today Xitter to toot feed at Psych Today Unofficial Bot @PTUnofficialBot
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#psychology #counseling #socialwork #psychotherapy @psychotherapist @psychotherapists @psychology @socialpsych @socialwork @psychiatry #mentalhealth #psychiatry #healthcare #depression #psychotherapist #InterbrainSynchrony #TeamworkParadox #NeuroscienceFindings #Hyperscanning #RightTPJ #PrefrontalCortex #CollaborativeGaming #TetrisStudy #BrainStimulation #NeuroImageResearch
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DATE: July 17, 2026 at 08:00PM
SOURCE: PSYPOST.ORG** Research quality varies widely from fantastic to small exploratory studies. Please check research methods when conclusions are very important to you. **
-------------------------------------------------TITLE: Neuroscientists find a teamwork paradox: highly synchronized brains perform worse at complex tasks
A recent study published in the journal NeuroImage suggests that when people collaborate on a video game, their brain activity aligns, but this synchronization does not necessarily result in better performance. The findings indicate that the way human brains link up during teamwork is highly complex. This provides evidence that shared brain patterns might not directly cause successful collaboration.
When people interact, their brain waves often start to match up in real time. This phenomenon is known as inter-brain synchrony. To study this, scientists use a technique called hyperscanning, which allows them to record the brain activity of multiple people at the exact same time. Previous research provides evidence that this mental alignment happens during cooperative tasks, like playing games or solving puzzles.
Two specific areas of the brain are highly active during social interactions. The prefrontal cortex handles complex cognitive functions, such as planning, decision-making, and understanding what other people are thinking. The right temporoparietal junction acts as a central hub for social skills, specifically helping individuals take another person’s perspective.
A team of scientists from Nanyang Technological University in Singapore, including S.H. Jessica Tan, S.P. Jessie Leuk, and Wei-Peng Teo, designed a project to explore the causal relationship between brain alignment and teamwork. The authors wanted to know if brain synchrony directly causes better cooperation, or if it is just a byproduct of interacting.
To test this, the research team used a technique called transcranial magnetic stimulation. This method uses brief magnetic fields to temporarily speed up or slow down neural activity in targeted brain regions. By altering activity in the right temporoparietal junction, the researchers hoped to see if changes in this social brain area would affect how well two people collaborated.
The researchers recruited 33 pairs of same-gender strangers for the experiment. Each pair participated in three separate sessions involving a classic puzzle video game, Tetris. During each session, the participants played the game both individually and collaboratively for seven minutes.
In the individual version of the game, each person controlled their own falling blocks. In the collaborative version, the pair shared a single game screen. One person was strictly responsible for moving the blocks left and right, and the other person was responsible for rotating the blocks.
The participants were not allowed to speak to each other during the cooperative game. This rule forced them to anticipate their partner’s next move and rely on turn-taking. By restricting verbal communication, the scientists could observe non-verbal teamwork in action.
To measure brain activity, the scientists used a technology called functional near-infrared spectroscopy. This non-invasive method uses sensors placed on the head to shine near-infrared light through the skull. By measuring how that light is absorbed, the sensors can track changes in blood flow to different parts of the brain. The researchers placed these sensors over the participants’ prefrontal cortex and right temporoparietal junction.
During two of the three sessions, one randomly selected person in each pair received a brief, safe burst of magnetic brain stimulation before the game started. One session used an uninterrupted stimulation pattern known to temporarily slow down brain activity in the right temporoparietal junction. Another session used a pulsing pattern designed to temporarily boost activity in that same area. The third session served as a baseline, meaning no stimulation was applied.
The brain scans revealed that the participants experienced much stronger brain synchrony when they played Tetris together compared to when they played alone or rested. This synchronization was notably stronger in the prefrontal cortex than in the right temporoparietal junction.
Modulating the right temporoparietal junction with magnetic stimulation did not change how well the participants played together. The stimulation also did not change the level of brain synchrony between the partners. The scientists noted that altering the brain activity of just one person might not be enough to disrupt a shared interaction, as the other person’s brain might naturally adapt to maintain the social connection.
The data also revealed a surprising pattern regarding game performance. The researchers measured success by looking at the number of block rows completed, as well as the number of combination moves made. Combination moves occur when multiple rows are eliminated at exactly the same time.
The authors found a negative relationship between brain synchrony in the prefrontal cortex and the number of combination moves the pair achieved. Essentially, pairs who exhibited higher levels of mental alignment actually performed worse at setting up complex, high-scoring moves. This suggests that high neural alignment does not always guarantee a successful outcome in strategic tasks.
The participants also filled out questionnaires about their partners before and after the games. The responses showed that participants consistently rated their partners as more likable after collaborating. This positive social feeling occurred regardless of how poorly they performed or whether they received brain stimulation.
Several factors limit how these findings can be applied to real-world interactions. The study required participants to play Tetris across three different sessions, which likely allowed them to learn the game and adapt to their partner’s style over time. This learning effect could influence how their brains synced up during later sessions.
The equipment used for the study also relied on a limited number of sensors, tracking only specific parts of the brain. Future research could benefit from using more advanced scanning techniques that observe the entire brain at once. This would help map out exactly how different neural networks respond to social interaction and magnetic stimulation.
It is also possible that the observed brain synchrony was partially caused by both participants watching the exact same falling blocks on a screen. When two people look at identical visual inputs, their brains can process the information in similar ways, which can mimic the appearance of a deeper social connection.
To separate genuine social synchrony from shared visual processing, scientists suggest adding a control condition in future studies. For instance, participants could watch a recording of a game without actually playing together. This would help verify if the brain alignment is truly based on teamwork.
The negative relationship between brain synchrony and game performance highlights the need to reevaluate how we understand mental alignment. Higher brain synchrony is often assumed to mean better teamwork and information sharing. This new evidence suggests that the function of inter-brain synchrony is highly nuanced.
Higher levels of synchronization tend to emerge during teamwork, but they might reflect the cognitive effort required to figure out a partner’s strategy rather than successful execution. More studies are needed to unpack the exact reasons why brain waves align and how this biological process affects human relationships.
The study, “Inter-brain synchrony during collaborative gaming: an investigation using theta-burst stimulation at the right temporal-parietal junction,” was authored by S.H. Jessica Tan, S.P. Jessie Leuk, and Wei-Peng Teo.
-------------------------------------------------
Private, vetted email list for mental health professionals: https://www.clinicians-exchange.org
Unofficial Psychology Today Xitter to toot feed at Psych Today Unofficial Bot @PTUnofficialBot
-------------------------------------------------
#psychology #counseling #socialwork #psychotherapy @psychotherapist @psychotherapists @psychology @socialpsych @socialwork @psychiatry #mentalhealth #psychiatry #healthcare #depression #psychotherapist #InterbrainSynchrony #TeamworkParadox #NeuroscienceFindings #Hyperscanning #RightTPJ #PrefrontalCortex #CollaborativeGaming #TetrisStudy #BrainStimulation #NeuroImageResearch
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30 brains. One experiment. Meet Brite Ultra — the world's only mass #fNIRS #hyperscanning system by Artinis & @NIRx Medical Technologies — live at booth #39-40 today.
Lightweight, wireless, and built to synchronize up to 30 participants at once.Visit booth #44 for:
🔹 APEX EEG + Brite fNIRS
🔹 SAGA EEG + NIRSport2 demos!You have to see this for yourself! #🧠 #OHBM2026 #BriteUltra #Neuroscience
https://www.artinis-nirx.com/ohbm-2026-bordeaux -
30 brains. One experiment. Meet Brite Ultra — the world's only mass #fNIRS #hyperscanning system by Artinis & @NIRx Medical Technologies — live at booth #39-40 today.
Lightweight, wireless, and built to synchronize up to 30 participants at once.Visit booth #44 for:
🔹 APEX EEG + Brite fNIRS
🔹 SAGA EEG + NIRSport2 demos!You have to see this for yourself! #🧠 #OHBM2026 #BriteUltra #Neuroscience
https://www.artinis-nirx.com/ohbm-2026-bordeaux -
Using #fNIRS #hyperscanning, Li et al. (2025) show that when individuals from different backgrounds engage in real-world problem solving, inter-brain synchronization (IBS) increases in the dorsolateral prefrontal cortex (DLPFC), a region linked to executive function.
Their findings offer a valuable lens on cross-functional teams, innovation processes, and how we design collaborative environments.🔗 Read more: https://zurl.co/52Bex
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Using #fNIRS #hyperscanning, Li et al. (2025) show that when individuals from different backgrounds engage in real-world problem solving, inter-brain synchronization (IBS) increases in the dorsolateral prefrontal cortex (DLPFC), a region linked to executive function.
Their findings offer a valuable lens on cross-functional teams, innovation processes, and how we design collaborative environments.🔗 Read more: https://zurl.co/52Bex
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Curious to learn how to study real interactions in large groups but missed our Hyperscanning Summer School?
In this session, David Zijderveld walks us through:
🟡 What makes Brite Ultra the hyperscanning fNIRS device
🔵 How it enables seamless large-group measurements
🟡 What this means for the future of social neuroscience🔗 Catch up anytime and see large-scale hyperscanning in action:
#Hyperscanning #fNIRS #BriteUltra #Artinis #Neuroscience #SocialInteraction
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Curious to learn how to study real interactions in large groups but missed our Hyperscanning Summer School?
In this session, David Zijderveld walks us through:
🟡 What makes Brite Ultra the hyperscanning fNIRS device
🔵 How it enables seamless large-group measurements
🟡 What this means for the future of social neuroscience🔗 Catch up anytime and see large-scale hyperscanning in action:
#Hyperscanning #fNIRS #BriteUltra #Artinis #Neuroscience #SocialInteraction
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In this recent article, St. Clair et al. (2025) use #fNIRS hyperscanning to examine neural coherence between children aged 4 to 6 and their mothers during joint tasks. One of the strengths of this paper is the care taken in handling the data. By refining the analysis approach for developmental hyperscanning, the observed synchrony reflects real interaction effects rather than noise.
🔗 https://zurl.co/TkoPK -
In this recent article, St. Clair et al. (2025) use #fNIRS hyperscanning to examine neural coherence between children aged 4 to 6 and their mothers during joint tasks. One of the strengths of this paper is the care taken in handling the data. By refining the analysis approach for developmental hyperscanning, the observed synchrony reflects real interaction effects rather than noise.
🔗 https://zurl.co/TkoPK -
We will be part of the Social Dynamics Workshop 2025, taking place on November 20–21 at @Universiteit Utrecht, the Netherlands🇳🇱
Join us for a live demonstration of the Brite Ultra —the world’s only mass #fNIRS hyperscanning system— and discover how large-scale, real-time brain monitoring can advance research in social interaction & group dynamics.
www.artinis.com/events/social-dynamics-workshop-2025 -
Scientists analyzed 15,000 games of rock, paper, scissors and found the trick to winning
https://web.brid.gy/r/https://www.upworthy.com/rock-paper-scissors
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The opening and first keynote talks from the #Hyperscanning Summer School are now available on our #YouTube playlist!
▶️ Watch here: https://www.youtube.com/playlist?list=PLOaHM4SlyLXBEGHFKWUdpmwjypo8Vb_awToday, Dr. Pascal Vrticka continues with his second keynote on analyzing hyperscanning datasets. Missed his first talk? Catch up now and get ready for part two! 🧠 🧠
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The Neural Symphony of Social Connection: How Our Brains Harmonize in Human Interaction
#SocialNeuroscience #BrainConnections #HumanInteraction #Empathy #NeuralNetworks #Hyperscanning #MirrorSystem #SocialCognition #EmotionalContagion #BrainScience #SocialBehavior #NeuroscienceExplained
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Thank you very much to NIRx for inviting me to lead two webinars on #fNIRS #hyperscanning (25.01. & 01.02.2024): https://nirx.net/webinars. Register now!
For a quick overview of the topic, check out in my website "fNIRS hyperscanning - an introduction": https://pvrticka.com/fnirs-hyperscanning-an-introduction/.
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Thank you very much to NIRx for inviting me to lead two webinars on #fNIRS #hyperscanning (25.01. & 01.02.2024): https://nirx.net/webinars. Register now!
For a quick overview of the topic, check out in my website "fNIRS hyperscanning - an introduction": https://pvrticka.com/fnirs-hyperscanning-an-introduction/.
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The 2nd Alliance Yufe YUFE4Postdocs call is now open - deadline 20/12/23.
Topics: Citizens Wellbeing & European Identity.
Get in touch if you have a research idea using #fNIRS #hyperscanning and wish to join my @SoNeAtLab .
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The 2nd Alliance Yufe YUFE4Postdocs call is now open - deadline 20/12/23.
Topics: Citizens Wellbeing & European Identity.
Get in touch if you have a research idea using #fNIRS #hyperscanning and wish to join my @SoNeAtLab .
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Many thanks to fNIRS UK 2023 (https://fnirs.uk/) for the chance to present our #fNIRS #hyperscanning & #attachment work at the #UniversityofEssex (#Colchester, #UK) today.
With @trinhnguyen @SoNeAtLab and many more!
Any questions or comments, please let me know!
More info: https://pvrticka.com/.
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Many thanks to fNIRS UK 2023 (https://fnirs.uk/) for the chance to present our #fNIRS #hyperscanning & #attachment work at the #UniversityofEssex (#Colchester, #UK) today.
With @trinhnguyen @SoNeAtLab and many more!
Any questions or comments, please let me know!
More info: https://pvrticka.com/.
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Very happy to have two opportunities to present our
@SoNeAtLab's (#University of #Essex, #Colchester, #UK) work on #interpersonal #neural #synchrony using #fNIRS #hyperscanning in #parent-#child #dyads and #romantic #couples during fNIRS UK 2023 next week.Thank you 🙏🏻.
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Very happy to have two opportunities to present our
@SoNeAtLab's (#University of #Essex, #Colchester, #UK) work on #interpersonal #neural #synchrony using #fNIRS #hyperscanning in #parent-#child #dyads and #romantic #couples during fNIRS UK 2023 next week.Thank you 🙏🏻.
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Very happy to have been invited to the 10th International Summer School in #Biomedical #Engineering on "#Neuroimaging beyond the individual - Monitoring interacting #human #brains" at the Max Planck Institute for Human #Cognitive and #Brain #Sciences in #Leipzig.
I'll be talking about #fNIRS #hyperscanning - see also here: https://pvrticka.com/fnirs-hyperscanning-an-introduction/.
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Very happy to have been invited to the 10th International Summer School in #Biomedical #Engineering on "#Neuroimaging beyond the individual - Monitoring interacting #human #brains" at the Max Planck Institute for Human #Cognitive and #Brain #Sciences in #Leipzig.
I'll be talking about #fNIRS #hyperscanning - see also here: https://pvrticka.com/fnirs-hyperscanning-an-introduction/.
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Apply by 31/07 👇🏻
#PhD #Studentship: How #Children Get “In Sync” with their #Caregivers and How Optimal #Synchrony Benefits Child #Development, #Health and #Wellbeing
Main #research #method: #fNIRS #hyperscanning.
With @PVrticka at the Department of #Psychology, #University of #Essex (#Colchester, #UK).
UK home students only.
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🚨#Preprint alert🚨
Just in time for #WAIMH2023!
Visualizing the Invisible Tie: Linking #Parent-#Child #Neural #Synchrony to #Parents’ and #Children’s #Attachment Representations
We (https://mastodon.online/@SoNeAtLab) measured interpersonal #neural #synchrony with #fNIRS #hyperscanning and attachment representations in 140 #parent-#child dyads.
We are looking forward to the review process & obtaining #feedback from the community.
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🚨#Preprint alert🚨
Just in time for #WAIMH2023!
Visualizing the Invisible Tie: Linking #Parent-#Child #Neural #Synchrony to #Parents’ and #Children’s #Attachment Representations
We (https://mastodon.online/@SoNeAtLab) measured interpersonal #neural #synchrony with #fNIRS #hyperscanning and attachment representations in 140 #parent-#child dyads.
We are looking forward to the review process & obtaining #feedback from the community.
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Kind reminder about the open #PhD #Studentship in my @SoNeAtLab (University of #Essex, #Colchester, #UK) using #fNIRS #hyperscanning:
Please be advised that this PhD Studentship is only available for #UK home students (more information here: https://commonslibrary.parliament.uk/eligibility-for-home-fee-status-and-student-support-in-england/).
Application deadline is 31 July 2023. The position starts from October 2023.
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Kind reminder about the open #PhD #Studentship in my @SoNeAtLab (University of #Essex, #Colchester, #UK) using #fNIRS #hyperscanning:
Please be advised that this PhD Studentship is only available for #UK home students (more information here: https://commonslibrary.parliament.uk/eligibility-for-home-fee-status-and-student-support-in-england/).
Application deadline is 31 July 2023. The position starts from October 2023.
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I am #hiring a #PhD to work with #fNIRS #hyperscanning in my
@SoNeAtLab at the #University of #Essex in #Colchester (#UK) in collaboration with ESNEFT and NHS from October 2023. Apply by 31/07 👇🏻. -
I am #hiring a #PhD to work with #fNIRS #hyperscanning in my
@SoNeAtLab at the #University of #Essex in #Colchester (#UK) in collaboration with ESNEFT and NHS from October 2023. Apply by 31/07 👇🏻. -
I have a fully funded 3-year #PhD #studentship for a #UK #home #student in my @SoNeAtLab at the #Department of #Psychology, #University of #Essex in #Colchester:
Project title: How #Children Get “In Sync” with their #Caregivers and How Optimal #Synchrony Benefits #Child #Development, #Health and #wellbeing.
Main method: #fNIRS #hyperscanning.
Please get in touch in case of questions. Thank you.
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I have a fully funded 3-year #PhD #studentship for a #UK #home #student in my @SoNeAtLab at the #Department of #Psychology, #University of #Essex in #Colchester:
Project title: How #Children Get “In Sync” with their #Caregivers and How Optimal #Synchrony Benefits #Child #Development, #Health and #wellbeing.
Main method: #fNIRS #hyperscanning.
Please get in touch in case of questions. Thank you.
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I have a fully funded 3-year UK Home #PhD #studentship at my @SoNeAtLab at the Department of #Psychology, #University of #Essex in #Colchester #UK starting from October 2023.
Application deadline: 31 July 2023.
The PhD will mostly work with #fNIRS #hyperscanning in #parent-#child #dyads, in collaboration with #ESNEFT & The Synapse Centre for Neurodevelopment (https://www.synapsecentre.co.uk/).
Please get in touch for informal inquiries: https://pvrticka.com/contact/.
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I have a fully funded 3-year UK Home #PhD #studentship at my @SoNeAtLab at the Department of #Psychology, #University of #Essex in #Colchester #UK starting from October 2023.
Application deadline: 31 July 2023.
The PhD will mostly work with #fNIRS #hyperscanning in #parent-#child #dyads, in collaboration with #ESNEFT & The Synapse Centre for Neurodevelopment (https://www.synapsecentre.co.uk/).
Please get in touch for informal inquiries: https://pvrticka.com/contact/.
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The SoNeAt Lab (PI: @PVrticka) is really excited to help with hosting the 1st #fNIRS #Hyperscanning #Workshop & #Synchrony #Conference at the #Department of #Psychology at the #University of #Essex (#Colchester, #UK) supported by The Society for Emotion and Attachment Studies (SEAS) and @artinis_n on May 25 & 26:
https://pvrticka.com/synchrony-conference-workshop-2023/.
We wish all in-person attendees safe travels ✈️🚘🚆!
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Don't miss sending us your #abstract or to register as a listener only for our #conference on "#Interpersonal #Synchrony and Its Relevance for #Attachment & #Caregiving" (#University of #Essex, #Colchester, #UK; May 26).
We also host a one-day in-person #fNIRS #hyperscanning #Workshop with @Artinis_MS on May 25.
More info in the flyer (with QR code).
Please help us spread the word by boosting this toot. Thank you.
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Don't miss sending us your #abstract or to register as a listener only for our #conference on "#Interpersonal #Synchrony and Its Relevance for #Attachment & #Caregiving" (#University of #Essex, #Colchester, #UK; May 26).
We also host a one-day in-person #fNIRS #hyperscanning #Workshop with @Artinis_MS on May 25.
More info in the flyer (with QR code).
Please help us spread the word by boosting this toot. Thank you.
-
Please spread the word:
We are organising a 2-day #Conference #Workshop on "#Interpersonal #Synchrony and Its Relevance for #Attachment & #caregiving at the #University of #Essex (#Colchester, #UK) on May 25-26.
The Workshop will focus on #fNIRS #hyperscanning with support from #Artinis Medical Systems.
The Conference will feature 3 #keynotes (@trinhnguyen, Giacomo Novembre, Jens Pruessner) with lots of space for #ECR #talks & #posters.
More info here: https://pvrticka.com/synchrony-conference-workshop-2023/
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Please spread the word:
We are organising a 2-day #Conference #Workshop on "#Interpersonal #Synchrony and Its Relevance for #Attachment & #caregiving at the #University of #Essex (#Colchester, #UK) on May 25-26.
The Workshop will focus on #fNIRS #hyperscanning with support from #Artinis Medical Systems.
The Conference will feature 3 #keynotes (@trinhnguyen, Giacomo Novembre, Jens Pruessner) with lots of space for #ECR #talks & #posters.
More info here: https://pvrticka.com/synchrony-conference-workshop-2023/
-
We are organising a 2-day #Conference #Workshop on "Interpersonal #Synchrony and Its Relevance for #Attachment & #Caregiving" at the Department of #Psychology, #University of #Essex (#Colchester, #UK) on May 25-26.
More information: https://pvrticka.com/synchrony-conference-workshop-2023/
Workshop - May 25: Focus on #fNIRS #Hyperscanning (theory & practice).
Conference - May 26: 3 Keynote speakers plus #ECR sessions for oral & poster presentations.
Questions: [email protected]
Application Deadline: March 15, 2023
-
We are organising a 2-day #Conference #Workshop on "Interpersonal #Synchrony and Its Relevance for #Attachment & #Caregiving" at the Department of #Psychology, #University of #Essex (#Colchester, #UK) on May 25-26.
More information: https://pvrticka.com/synchrony-conference-workshop-2023/
Workshop - May 25: Focus on #fNIRS #Hyperscanning (theory & practice).
Conference - May 26: 3 Keynote speakers plus #ECR sessions for oral & poster presentations.
Questions: [email protected]
Application Deadline: March 15, 2023
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@LeonDLotter @neuroscience @neuro @cognition @fmri @phdstudents @academicchatter
Very nice new & large #metaanalysis on #neuroimaging studies (#fMRI & #fNIRS) investigating #interpersonal #neural #synchrony (INS) in adults. Great work - congrats!
Especially great to see that there is (partial - #TPJ/#STG) overlap with our own #fNIRS #hyperscanning data looking at INS during #parent-#child interaction as part of our #CARE studies (https://pvrticka.com/attachment/care-studies/).
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@LeonDLotter @neuroscience @neuro @cognition @fmri @phdstudents @academicchatter
Very nice new & large #metaanalysis on #neuroimaging studies (#fMRI & #fNIRS) investigating #interpersonal #neural #synchrony (INS) in adults. Great work - congrats!
Especially great to see that there is (partial - #TPJ/#STG) overlap with our own #fNIRS #hyperscanning data looking at INS during #parent-#child interaction as part of our #CARE studies (https://pvrticka.com/attachment/care-studies/).
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#Neuroscience: In social situations we don’t always act in line with our thoughts. We don’t stare at strangers even if we find them interesting. #Brain activity can tell us more about what is really going on on a person’s mind. Find out with #EEG, #EyeTracking and #hyperscanning
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#Neuroscience: In social situations we don’t always act in line with our thoughts. We don’t stare at strangers even if we find them interesting. #Brain activity can tell us more about what is really going on on a person’s mind. Find out with #EEG, #EyeTracking and #hyperscanning
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#introduction #TwitterMigration
Hello Fediverse. We are the #Social #Neuroscience of Human #Attachment - #SoNeAt - #Lab led by PI @PVrticka at the #University of #Essex in #Colchester (#UK).
We investigate the #brain basis of human #relationships, #caregiving and #attachment using #MRI, #fMRI and #fNIRS #hyperscanning in #mums, #dads & #kids.
It would be nice to connect with other #academics, #researchers, #teachers, #practitioners, #journalists etc. on here 😀 .
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#introduction #TwitterMigration
Hello Fediverse. We are the #Social #Neuroscience of Human #Attachment - #SoNeAt - #Lab led by PI @PVrticka at the #University of #Essex in #Colchester (#UK).
We investigate the #brain basis of human #relationships, #caregiving and #attachment using #MRI, #fMRI and #fNIRS #hyperscanning in #mums, #dads & #kids.
It would be nice to connect with other #academics, #researchers, #teachers, #practitioners, #journalists etc. on here 😀 .
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#introduction #TwitterMigration
My name is Pascal. I am a social neuroscientist and #Lecturer in #Psychology at the University of #Essex (#Colchester, #UK).
My #Social #Neuroscience of #Human Attachment (#SoNeAt) Lab (https://mastodon.online/@SoNeAtLab) studies the #brain basis of human #relationships, #caregiving & #attachment using #MRI, #fMRI & #fNIRS #hyperscanning in #mums, #dads & #kids.
It would be nice to connect with other #academics, #researchers, #teachers, #practitioners, #journalists...
-
#introduction #TwitterMigration
My name is Pascal. I am a social neuroscientist and #Lecturer in #Psychology at the University of #Essex (#Colchester, #UK).
My #Social #Neuroscience of #Human Attachment (#SoNeAt) Lab (https://mastodon.online/@SoNeAtLab) studies the #brain basis of human #relationships, #caregiving & #attachment using #MRI, #fMRI & #fNIRS #hyperscanning in #mums, #dads & #kids.
It would be nice to connect with other #academics, #researchers, #teachers, #practitioners, #journalists...