Jiri Hofbrucker

@deepjdog.bsky.social

Empowering neuroscientists with fiber-based microscopic systems for imaging at any brain depth CTO at DeepEn, @deepen-imaging.bsky.social ( https://deepen-imaging.com/ )

You ever get the feeling you may have slightly, massively overengineered something? Still need to add the electronics, but these should turn into some handy little Arduino-powered training rigs.

Mini Matrix enables high-density 3D recordings in small animals, providing access to large neuronal populations for acute or chronic studies. 32–128 channels for rec & stim Automated, low-risk implantation Modular, customizable configurations Optogenetics-compatible

Bild

🚀 Excited to announce that I'm looking for people (PhD/Postdoc) to join my Cognitive Modelling group @uniosnabrueck.bsky.social. If you want to join a genuinely curious, welcoming and inclusive community of Coxis, apply here: tinyurl.com/coxijobs Please RT - deadline is Jan 4‼️

192 FB 8/IKW Research Associate (m/f/d), Institute of Cognitive Science: Uni Osnabrück

uni-osnabrueck.de

Lilian Weber@lilweb.bsky.social · 11mo ago

In other news, I am now a ✨ COXI ✨ (cognitive scientist in Osnabrück, Germany) www.uni-osnabrueck.de/en/campus-li... I'll be looking for PhD students & postdocs later this year, so watch this space if combining cognitive modelling, EEG & tFUS to study flexible cognition sounds exciting to you 🚀

I'm excited to join #SfN2025 next week. Stop by booth #3027 to connect and learn more about structural and functional imaging in-vivo anywhere in the brain! I’d love to hear about your research and ideas! Looking forward to meeting you there.

Bild

This new miBrain model from MIT has it all: 🧠 Neurons, microglia, oligodendroglia, astrocytes, pericytes, & brain microvascular endothelial cells ⚙️ Key features & functions of the human brain 👩‍👦 Specificity to individual donors 🧬 Customizability via gene editing 📈 Scalability for large projects

Image from the MIT Picower article, "MIT invents human brain model with six major cell types to enable personalized disease research, drug discovery" with the following caption: “Cyan staining shows each of the six major cell types [pericytes, astrocytes, endothelial cells, neurons, oligodendrocytes, and microglia] integrated in a miBrain culture.” The original image appeared in Figure 1 of the PNAS article, “Engineered 3D immuno-glial-neurovascular human miBrain model” (10.1073/pnas.2511596122) by Stanton et al.

Excited to share we’ve been awarded the ERC StG 🎉 for our project ProSocial, studying neural mechanisms of prosocial behavior in health & disease. Huge thanks to my group for their amazing work & to great colleagues for their support! Positions opening soon—reach out if interested!

European Research Council (ERC)@erc.europa.eu · 11mo ago

📣 The ERC Starting Grant call results are out! Find out which early-career researchers will receive funding this year, what they will be investigating, where they will be based... plus lots of other #ERCStG facts & figures for 2025! ➡️ buff.ly/IsafuFh #FrontierResearch 🇪🇺#EUfunded #HorizonEurope

Are you the kind of neuroscientist who scripts analysis or can’t resist tinkering with hardware? At DeepEn we’re building a fluorescence microscope to image deep in the brain through a single optical fiber. Join us to hack the future of neuroimaging: #ScienceJob www.linkedin.com/jobs/view/42...

DeepEn hiring Neuroscience Imaging Scientist (Microscopy + Applications) in Jena, Thuringia, Germany | LinkedIn

Posted 8:01:32 PM. DeepEn develops minimally invasive microendoscopes for neuroscience applications. We transform a…See this and similar jobs on LinkedIn.

linkedin.com

⏰ Reminder: The early bird registration and abstract submission for our 5th Day of Intravital Microscopy close on September 5! Don’t miss your chance to join us in Tübingen on 18–19 Sept. Secure your spot today! 👉 bit.ly/3IOlJtJ

5th Day of Intravital Microscopy - German BioImaging

Intravital microscopy (IVM) enables the observation and precise quantification of cellular processes within native tissue microenvironments, with resolutions unmatched by other techniques. This powerf...

bit.ly