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Felix Quirmbach

@fquirmbach.bsky.social
73 followers 104 following 2 posts

PhD Student (Cognitive Neuroscience) @TU Dresden in Jakub Limanowski's Lab. Studying the adaptation of own-body models via Neuroimaging & VR.

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Reposted by Felix Quirmbach
TNM-Lab @tnm-lab.bsky.social · 09/09/2026
📢 Wir suchen Verstärkung! Neue Promotionsstelle (3 Jahre, 65 %, E13) in unserer Arbeitsgruppe zu affektiven & Angststörungen, Erwartungen und Lernen. 🧠 fMRT & EEG 🤝 SFB/TRR 393 + DFG-Projekt Angststörungen 📅 Bewerbung bis 27.09.2026 stellenangebote.uni-marburg.de/jobposting/4... Gerne teilen!
stellenangebote.uni-marburg.de
Qualifizierungsstelle mit dem Ziel der Promotion
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Reposted by Felix Quirmbach
Philipp Kanske @kanske.bsky.social · 19/08/2026
Interessiert an einer Promotions- oder PostDoc-Stelle in clinical social neuroscience? Wir sind ein kooperatives, internationales Team👇 an der @tudresden.bsky.social und suchen Verstärkung für Lehre und Forschung im @trr393.bsky.social Danke für's Teilen! www.verw.tu-dresden.de/StellAus/ste...
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Reposted by Felix Quirmbach
Jakub Limanowski @jlimanowski.bsky.social · 03/08/2026
📢 New paper! Led by @fquirmbach.bsky.social we combined a VR delayed-movement paradigm with pupillometry & eye-hand tracking - under standard/nonstandard visual hand movement feedback - to reveal oculomotor correlates of action planning under uncertainty: onlinelibrary.wiley.com/doi/10.1111/...
onlinelibrary.wiley.com
<em>Psychophysiology</em> | SPR Journal | Wiley Online Library
Our study provides novel insights into the planning and execution of coordinated eye-hand movements by showing that oculomotor responses reflect predictive processes related to motor planning under e...
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Reposted by Felix Quirmbach
Jakub Limanowski @jlimanowski.bsky.social · 30/07/2026
😀New lab paper by @fannipeters.bsky.social, with a (somewhat) new angle on comparing perceptual sensitivity to visuomotor kinematic asynchronies a.k.a. visual feedback delays - vs mere positional mismatches: link.springer.com/article/10.3...
link.springer.com
Detection of mismatching visual kinematics during visuomotor incongruence: A comparison of spatially matched delays versus offsets along identical trajectories - Psychonomic Bulletin & Review
Introducing delays to visual movement feedback or displacing it in space is a common experimental manipulation to study the neurocomputational basis of self–other distinction. While both manipulations...
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Reposted by Felix Quirmbach
Jakub Limanowski @jlimanowski.bsky.social · 08/02/2026
Preprint alert 🚨 Led by @fquirmbach.bsky.social We examined pupillary responses when people had to gaze-track visual finger movement feedback that was congruent or inverted - and when they were preparing for this in a preceding delay phase: www.biorxiv.org/content/10.6...
biorxiv.org
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Reposted by Felix Quirmbach
Helen Blank @helenblank.bsky.social · 06/06/2024
JOB ALERT: Are you interested in how communication priors shape speech and pain perception during treatment? We offer 2 PhD positions in Hamburg. predcommlab.eu/join-the-lab/ Join us and apply! as part of the SFB/TRR289: treatment-expectation.de
predcommlab.eu
Join the lab – Prediction in Communication Lab
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Felix Quirmbach @fquirmbach.bsky.social · 05/06/2024
In our current study, we combined eye tracking and virtual reality to examine how to generate "unusual" visuomotor predictions, and how this affects mental effort & performance in a delayed hand-eye movement task. You can find the pre-reg here, first results should follow soon! osf.io/6km9y
Task design for our study: Participant’s real hand movements (hidden from view) were measured via data glove and fed to a virtual hand model presented on screen. From a half-opened starting position, participants executed one of two hand movements (open/close) after a variable delay. During the delay phase, participants saw a visual cue providing them with information about the upcoming movement: Cue shape predicted the movement type in half of the trials, while leaving it uncued in the other half. Cue colour indicated the to-be-expected visuomotor mapping; i.e. whether the virtual hand would move congruently with the real hand or incongruently. After a GO-signal, the virtual hand appeared on screen and subjects executed the indicated hand movement. During execution, they had to follow the virtual hand movement (tip of the virtual middle finger) with their gaze. In 25% of the trials, the cue color predictions were invalid, so that visuomotor expectations were violated.Image of a participant performing the task. They have a data glove on their left hand (hidden from view), performing a movement while observing the virtual hand model on a screen in front of them. An eye tracker records their eye movements; their right hand rests on a response box to answer if the predictions were correct.
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