Maxim Cazorla
@max_cazorla
Feeds from the lab, @Neurotechcenter, La Timone medical campus, Marseille. We talk about Axon plasticity, Brain-on-a-chip, Neurotechnologies, and Brain rewiring
ID: 1310875450072346630
https://www.brainwirelab.fr/ 29-09-2020 09:34:07
238 Tweet
106 Followers
105 Following
Bridging human cell technologies and #microfluidic devices to better understand the diseased brain. Another great NeurotechCenter_INT talk by Dr Ivàn Fernandez Bessone from INP Marseille. #BrainonChip #Alzheimer #StemCells
Functional neurological restoration of amputated peripheral nerve using biohybrid regenerative bioelectronics science.org/doi/10.1126/sc… Amy Rochford Alejandro Carnicer Lombarte Amy Jin @KawanMalak Vincenzo Curto Alexandra Rutz Damiano G. Barone Engineering Dept
We offer a 2-year postdoc position at the Institut Fresnel ! Join our interdisciplinary team and explore the use of gold nanoparticles 🟡 to generate chemical reactions at small scales, followed by advanced optical microscopy techniques🔬. Apply now! @INSIS_CNRS #plasmonics
Wonderful NeurotechCenter_INT talk today by Dr Gael Barthet, from Wyss Center. 3D imaging of human and animal nervous systems sure is a delight for the eyes 😍 #neurotechnology #imaging #personalizedmedicine
The call on the European Commission to phase out use of animals in science does not recognize that modern medicine builds on animal studies. Banning animal studies would put an end to medical research in Europe. #Pledge4Science European Brain Council Kavli Neuroscience May-Britt Moser European Research Council (ERC)
Hajar Mousavi, PhD candidate at @BELdepartment MINES Saint-Étienne presented her wonderful thesis work about Organic #bioelectronics for #brainimplants. A huge piece of work, very promising results and a large area covered, we wish you all the best for your thesis defense Hajar!
Excited to share our work Nature Communications done in Antoine derksen lab Columbia University where we challenge textbook knowledge of how the basal ganglia is organized. We show that D1 bridging collaterals to the GPe define a new ‘Go’ pathway that promotes motor action (1/n) doi.org/10.1038/s41467…