Category: Bioinformatics
- Alex Zhavoronkov ()
Jour 52 de #ScienceAIBench ! 🧬 Aujourd’hui, nous nous intĂ©ressons Ă l’une des cibles les plus critiques et les plus Ă©tudiĂ©es en pharmacologie : les rĂ©cepteurs opioĂŻdes. La recherche d’analgĂ©siques plus sĂ»rs est l’un des dĂ©fis les plus urgents de la dĂ©couverte moderne de mĂ©dicaments. La famille des rĂ©cepteurs opioĂŻdes comprend trois sous-types principaux : […]
- Andrii Buvailo, Ph.D ()
Tout le monde semble construire des agents en ce moment. Dans ce qui ressemble Ă une vĂ©ritable « ruĂ©e vers l’or », les piles technologiques sont reconstruites autour d’eux, les assistants IA open source gagnent rapidement en popularitĂ©, et les grandes entreprises investissent des milliards dans des systèmes autonomes tout en rĂ©duisant leurs effectifs. La […]
- Alex Zhavoronkov ()
Je suis ravi de vous prĂ©senter PandaClaw, la dernière Ă©volution de notre moteur PandaOmics et une Ă©tape majeure vers la superintelligence pharmaceutique. PandaClaw est bien plus qu’un simple outil ; c’est votre scientifique des donnĂ©es autonome. En s’appuyant sur une architecture d’agents LLM de pointe, il comble le fossĂ© entre les donnĂ©es brutes et les […]
- The simulation of an entire human body… ()
The simulation of an entire human body…
- Could we simulate an entire human body and treat it as a real one in order to administer drugs and prove they are effective for him or her? ()
Could we simulate an entire human body and treat it as a real one in order to administer drugs and prove they are effective for him or her? Now, the real question: is it possible? Short term: not completely. Long term: probably to a large extent. Today, we can already simulate: Individual organs (heart, liver, […]
- https://insilico.com/ ()
https://insilico.com/
- Est-ce qu’on pourrait simuler un corps entier et le considérer comme un vrai corps pour lui administrer des médicaments, afin de prouver qu’ils sont efficaces pour lui ou elle ? ()
Est-ce qu’on pourrait simuler un corps entier et le considĂ©rer comme un vrai corps pour lui administrer des mĂ©dicaments, afin de prouver qu’ils sont efficaces pour lui ou elle ? Maintenant, la vraie question : est-ce possible ? Court terme : pas complètement.Long terme : probablement en grande partie. Aujourd’hui, on peut dĂ©jĂ simuler : […]
- Bioinformatics Uncovers Regenerative Therapy for Spinal Cord Injury ()
For the first time, a drug shows effectiveness in adult human brain cells — an achievement long thought impossible. Human brain cells are notoriously difficult to culture in the lab, but UC San Diego researchers successfully grew human brain cells, shown here, in order to test a new treatment approach for spinal cord injury. Photo […]
- How to rewind minds evolutions using artificial intelligence with DeepMind? ()
How to rewind minds evolutions using artificial intelligence with DeepMind? Is it possible or ?
- The Biggest Brain Maps Ever Created Are Pushing the Frontiers of Neuroscience ()
Our quest to understand the brain’s connections is a bit like aliens trying to understand Earthlings from outer space. Imagine having to track down every single person and their conversations across different continents, reconstruct noisy snippets into coherent messages, and from that data, infer the zeitgeist of the human race. That, essentially, is what neuroscientists […]
- Maybe DeepMind will help to repair or fix cryonics patients one day in the far future ()
Maybe DeepMind will help to repair or fix cryonics patients one day in the far future
- DeepMind offers AI tool to predict shape of all human proteins ()
Artificial intelligence has solved one of the greatest puzzles in biology, by predicting the shape of every protein expressed in the human body. The research was carried out by London AI company DeepMind, which used its AlphaFold algorithm to build the most complete and accurate database yet of the human proteome, which underpins human health […]
- https://cneuro-web01.s.uw.edu/ ()
The University of Washington’s Computational Neuroscience Center – Decoding Intelligence The CNC is a hub for research in mathematical and computational neuroscience, connecting researchers at the University of Washington across campus and to the extended neuroscience community in the Pacific Northwest. Research topics span the full spectrum of scales, mechanisms, and functions of the brain […]
- Layton, the Canada 150 Research Chair in Mathematical Biology and Medicine, built the first computational model that simulates the muscle contractions that move urine from the kidney to the bladder. ()
Layton, the Canada 150 Research Chair in Mathematical Biology and Medicine, built the first computational model that simulates the muscle contractions that move urine from the kidney to the bladder. https://www.sciencedaily.com/releases/2019/10/191007081721.htm