NMSBlab (@nmsblab) 's Twitter Profile
NMSBlab

@nmsblab

The main research goal in Krieg's lab is to understand cell mechanical properties for health and disease on the molecular and systems level using C. elegans

ID: 1062006579342569472

linkhttp://livinglight.icfo.eu/ calendar_today12-11-2018 15:37:54

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Ravi Das (@dasravidas) 's Twitter Profile Photo

Fresh from the oven: I am very excited to share our recent paper. Special thanks and congratulations to everyone involved:Luitgard Lin Frede Català-Castro Nawaphat Malaiwong Neus Sanfeliu Cerdán Rabbs Aleksandra Pidde & Michael Krieg NMSBlab ICFO #mechanobiology science.org/doi/10.1126/sc…

NMSBlab (@nmsblab) 's Twitter Profile Photo

If you are at Embl this week for #EESPhaseSeparation, stop by Neus Sanfeliu Cerdán’s poster and learn about what large titin and stomatin homologs have to do with your favorite biological process and neuronal mechanotransduction.

OsmanLab (@osman_lab) 's Twitter Profile Photo

We are hiring! Interested in doing your PhD in mitochondrial biology in Munich, and curious about how cells distinguish intact from mutant mtDNA? Please apply through our graduate school lsm.bio.lmu.de. #PhD #CellBiology #mitochondria

Nature Methods (@naturemethods) 's Twitter Profile Photo

In the PhAST technology, light serves as a synthetic neurotransmitter, by combining a calcium-dependent luciferase on pre-synapses with channelrhodopsin on post-synapses, which is illustrated in C. elegans. NMSBlab nature.com/articles/s4159…

In the PhAST technology, light serves as a synthetic neurotransmitter, by combining a calcium-dependent luciferase on pre-synapses with channelrhodopsin on post-synapses, which is illustrated in C. elegans.
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nature.com/articles/s4159…