New paper alert! 🎉
Our findings 👇 on the relationship between performance fatigability and deep sleep oscillations are now out in the Journal of Sleep Research https://t.co/weRHubKmCP
Thankful to have worked on this with such a great team 👇
More of my PhD work coming soon!
🚀 Excited to share our 3rd recent study on #MotorFatigability! What a strike! 🧠💪 This one dives into the finger-specific effects of #age on finger tapping speed and motor fatigability, revealing how aging impacts fine #MotorControl ➡️ https://t.co/UPTn268PJ5
🚨New publication alert! Our latest study explores how reduced self-inhibition in the sensorimotor cortex contributes to motor #fatigability. 🧠💪 These findings could shed light on new approaches to improving movement and #MotorControl! Check it out here: https://t.co/wpZrklVjVg
🚀✨ Congratulations to Dr. @IngridOdermatt on successfully completing her PhD!🧠🎓🍾 Special thanks to the thesis committee: Dr. @TameLuigi, Prof. Patrick Freund, Dr. @sanne_kikkert, Prof. Nicole Wenderoth, and to the chair of the examination Prof. Olivier Lambercy 🙌
🚀✨ Congratulations to Dr. Manuel Carro Dominguez @Manu_C_D on successfully completing his PhD!🧠🎓🍾
Special thanks to the thesis committee: Prof. @lauradata, Dr. @lustenca, Dr. @Sarah__Meissner, Prof. Nicole Wenderoth, and to the chair of the examination Prof. @BohacekLab. 🙌
Our spin off #myflow is on air! 🎙️🚨
Aleksandra from https://t.co/Oq7r7hB3Zv and @BachingerMarc discuss the possibilities of #myflow, its current applications, and the future potential of our pupil-based biofeedback! 🤩🚀 Check it out ▶️ and let us know what's your favorite part?
Did you know we can volitionally control🧠the brain’s ↕️arousal system 🔵#LocusCoeruleus via 💭mental strategies learned using 👁️pupil-based biofeedback?
Check our latest article published in @NatureHumBehav 🫵➡️https://t.co/7ZG6vIdoO3
@NatureNV@NeuroscienceNew@ScienceNews
In the future, stress- and anxiety-related disorders could be treated using a VR headset. Researchers demonstrate that the arousal centres in the brainstem can be influenced when we receive feedback about pupil size. @Sarah__Meissner@NCMLabETH https://t.co/52j6uN4oDC