Pinned TweetSilvan@silvanhuerkey·25 MayVery happy to share my first paper: Gap junctions desynchronize a neural circuit to stabilize insect flight @Nature @uni_mainz @HumboldtUni nature.com/articles/s4158…Translate English52610513.4K10
Silvan@silvanhuerkey·26 May@koen_vervaeke @Nature @uni_mainz @HumboldtUni Thank you! Your Neuron 2010 paper gave us great input! 🙏Translate English00051
koenv@koen_vervaeke·25 May@silvanhuerkey @Nature @uni_mainz @HumboldtUni Congratulations!Translate English101124
Silvan@silvanhuerkey·25 MayVery happy to share my first paper: Gap junctions desynchronize a neural circuit to stabilize insect flight @Nature @uni_mainz @HumboldtUni nature.com/articles/s4158…Translate English52610513.4K10
Silvan@silvanhuerkey·26 May@LabHaas @Nature @uni_mainz @HumboldtUni Thank you, much appreciated!Translate English10058
HaasLab@LabHaas·26 May@silvanhuerkey @Nature @uni_mainz @HumboldtUni Thorough and thoughtful, very nice work!Translate English10179
Silvan@silvanhuerkey·25 May@DanielSobrido @Nature @uni_mainz @HumboldtUni Thank you Daniel! 😁Translate English001151
Daniel Sobrido-Cameán@DanielSobrido·25 May@silvanhuerkey @Nature @uni_mainz @HumboldtUni Wow!! Congratulations!!!Translate English101176
Silvan@silvanhuerkey·25 May@MadS100tist @gsxej @Nature @uni_mainz @HumboldtUni Thank you!🔥Translate English001156
Silvan retweetedUniversität Mainz@uni_mainz·25 MayForschung von #UniMainz und @HumboldtUni deckt neue Funktion elektrischer Synapsen auf und entschlüsselt damit neuronalen Schaltkreis zur Steuerung der Flügelschlagfrequenz von #Insekten presse.uni-mainz.de/neue-rollen-fu… #Neurobiologie #DrosophilaMelanogasterTranslate Deutsch026855
Silvan@silvanhuerkey·3 ŞubMy first preprint: Insect asynchronous flight requires neural circuit de-synchronization by electrical synapses biorxiv.org/content/10.110…Translate English1010