The #CELLOIDS project aims at realizing cell-inspired #microrobots that can move inside soft tissues.
Our microrobots will have four features.
@erc.europa.eu
GA:948590
(1/2)👇
Our #celloid microrobots consists of a membrane and a core.
@erc.europa.eu
🇪🇺GA:948590
#microrobotics #research #biorobotics
(1/3)👇
Our #celloid microrobots consists of a membrane and a core.
@erc.europa.eu
🇪🇺GA:948590
#microrobotics #research #biorobotics
(1/3)👇
🇪🇺 Funded by @erc.europa.eu (GA 101213190), it officially started in October 2025 and will end in March 2027.
It aims at further develop celloid micrororobots so that they can penetrate solid tumors.
Stay tuned for more!
🇪🇺 Funded by @erc.europa.eu (GA 101213190), it officially started in October 2025 and will end in March 2027.
It aims at further develop celloid micrororobots so that they can penetrate solid tumors.
Stay tuned for more!
Come find us at our stand ❤️🔬🤖
#scicomm #focuslive2025 #science #research #microrobots
Come find us at our stand ❤️🔬🤖
#scicomm #focuslive2025 #science #research #microrobots
If you’re exploring the #droplettransfermethod for the first time to fabricate your #GUVs, or if you’re curious to learn more about this technique, check out our new article just published on #JoVE!
🔗 www.jove.com/v/68340/usin...
If you’re exploring the #droplettransfermethod for the first time to fabricate your #GUVs, or if you’re curious to learn more about this technique, check out our new article just published on #JoVE!
🔗 www.jove.com/v/68340/usin...
The #CELLOIDS project aims at realizing cell-inspired #microrobots that can move inside soft tissues.
Our microrobots will have four features.
@erc.europa.eu
GA:948590
(1/2)👇
The #CELLOIDS project aims at realizing cell-inspired #microrobots that can move inside soft tissues.
Our microrobots will have four features.
@erc.europa.eu
GA:948590
(1/2)👇