Head of the Neural Circuit Bioengineering group @ King's College London & The Francis Crick Institute. PI @ UK DRI
Developed over the last 7 years by our team @TheCrick & @KingsIoPPN,
VISIBLE is customisable, modular, and pushing boundaries in tissue engineering, neuroscience & cancer biology. Sounds interesting? Get in touch
📄 doi.org/10.1101/2025...
#VISIBLE #Organoids #Bioprinting #LabAutomation
Developed over the last 7 years by our team @TheCrick & @KingsIoPPN,
VISIBLE is customisable, modular, and pushing boundaries in tissue engineering, neuroscience & cancer biology. Sounds interesting? Get in touch
📄 doi.org/10.1101/2025...
#VISIBLE #Organoids #Bioprinting #LabAutomation
Why it matters:
✅ Imaging-driven decisions
✅ Precision cell manipulation
✅ Real-time experimental feedback
✅ Adaptable to many workflows
VISIBLE turns dynamic cultures from unpredictable to programmable 🔁
Why it matters:
✅ Imaging-driven decisions
✅ Precision cell manipulation
✅ Real-time experimental feedback
✅ Adaptable to many workflows
VISIBLE turns dynamic cultures from unpredictable to programmable 🔁
What can it do?
📍 Target organoids by shape, markers, or calcium activity
🧠 Sample neurospheres based on functional maturity
🖨️ Bioprint cell-laden hydrogels with pause/scan/resume
💥 Automate scratch assays
🧬 Implant barcoded PDXOs for in vivo tracing
What can it do?
📍 Target organoids by shape, markers, or calcium activity
🧠 Sample neurospheres based on functional maturity
🖨️ Bioprint cell-laden hydrogels with pause/scan/resume
💥 Automate scratch assays
🧬 Implant barcoded PDXOs for in vivo tracing
VISIBLE combines:
🔬 Live fluorescence imaging
🤖 Robotic manipulation
🖨️ Interactive 3D bioprinting
🌡️ Enclosed incubation
All in one modular, feedback-controlled platform — no plate transfer, full real-time control.
VISIBLE combines:
🔬 Live fluorescence imaging
🤖 Robotic manipulation
🖨️ Interactive 3D bioprinting
🌡️ Enclosed incubation
All in one modular, feedback-controlled platform — no plate transfer, full real-time control.