🔬🚀 Updated #VLab4Mic preprint. Rebuilt the clathrin models from full-length triskelions, dome+flat lattice toy simulations share a common motif. Wanna see how it looks across microscopy methods? (Thank you for the advice Stephane Vassilopoulos)
biorxiv.org/content/10.64898…
🔬🚀 Preprint update for #VLab4Mic - our super-resolution experiments virtual simulation system. Now installs as a one-click desktop app: no Python, no setup, thanks to the magic of the Jacquemet's lab #LabConstrictor packaging engine
biorxiv.org/content/10.64898…
How do you know if a microscopy experiment can actually resolve a biological structure?
Introducing VLab4Mic, a platform that predicts structural resolvability before you go to the microscope
Led by @JDamianMtzR and @Bruno_MSaraiva at @HenriquesLabbiorxiv.org/content/10.64898…
This closes a loop we opened with #NanoJSQUIRREL (@SuperResoluSian et al., 2018), which mapped where super-resolution images go wrong relative to a reference. #VLab4Mic comes at it from the other end: predicting what's resolvable from known atomic structure before you even image
Huge thank you to the labs of @christlet, Dylan Owen and Mark Bates, and to @T_Shakespeare, who helped us make it happen. #VLab4Mic also heavily uses data from RCSB PDB, Jonas Ries & Justin Taraska's labs
How do you know if a microscopy experiment can actually resolve a biological structure?
Introducing VLab4Mic, a platform that predicts structural resolvability before you go to the microscope
Led by @JDamianMtzR and @Bruno_MSaraiva at @HenriquesLabbiorxiv.org/content/10.64898…