The future of drug discovery isn't just about AI; it's about how AI empowers human experts. ๐ฅผ
Join @_rebecca_paul and @maxjaderberg from @IsomorphicLabs, as they share their insights with @fryrsquared on leveraging AI agents to explore vast molecular spaces.
See their discussion โ
A new study suggests proteins in blood can predict dementia 15 years before diagnosis - Dr Amanda Heslegrave (@ajh1269, UK DRI at UCL) comments on the research in @Independentโฌ๏ธ
https://t.co/vBgJ5ZpMJx
@LabGandhi is recruiting a postdoctoral scientist interested in spatial transcriptomics to understand mechanisms of Parkinsonโs and dementia in human brain tissue and organoids. Apply to join Team Wood ASAP collaboration @TheCrick@PD_BrainMap@UCLIoN
https://t.co/JXTwI5PAGW
Day 2 at @ASAP_Research#CRNLondon2023 meeting ended with @GurvirVirdi presenting his poster after a brilliant data blitz talk. His iPSC protocol and lines are worth looking for. Come talk to us about data sharing, we are Team Wood! Open for Collab!
Uncovering the causes of disease is one of the greatest challenges in genetics. ๐งฌ
To help advance this, we created AlphaMissense: an AI model classifying missense variants - or genetic changes affecting proteins.
Here's how it can help scientists. ๐งต https://t.co/ka19HXINjI
Very excited to share our latest work published in @NatMachIntell. We used ipsc-derived neurons, high-throughout imaging, and machine learning approaches to predict Parkinsonโs disease subtypes.
https://t.co/g4R6L6adgo
Our work on iPSC cell villages. An approach combining cellular genomics, data science, and stem cell research that allows massive scaling of iPSC studies. This system enables labs to 'easily' run large-scale human genetics studies using iPSC models.
https://t.co/UlxEua3Llo
KAIST ๋์ธ์ง๊ณผํ๊ณผ ์ ์๊ต์ ์ฑ์ฉ!
์์ธํ ์ฌํญ์ ํฌ์คํฐ ๋ด QR์ฝ๋๋ฅผ ์ฐธ๊ณ ํ์ฌ ์ฃผ์๊ธฐ ๋ฐ๋๋๋ค!
Job Opening for Faculty Positions of KAIST Department of brain & cognitive sciences.
For more information, please refer to the QR code in the poster!
#์นด์ด์คํธ#KAIST#๋์ธ์ง๊ณผํ๊ณผ
How do you image the large and the small at the same time? We developed new ๐ฌ technology to image centimeter-scale specimens - including whole mouse brains ๐ง - with diffraction-limited resolution and without sectioning. #mesoscale#imaging
https://t.co/Kl7ZURNpdM
๐งต (1/n)
@RickiePatani, GilesHardingham, and I wrote a review on astrocytes in neuroinflammation & neurodegeneration for @NatRevNeurol
lots still unknown, but it's clear combinatorial in vitro, in vivo, and cross-species approaches are needed moving forward
https://t.co/6ZhOkOtpac
Immersive View gives users a virtual, close-up look at indoor spaces in 3D! Learn how it uses neural radiance fields to seamlessly fuse photos to produce realistic, multidimensional reconstructions of your favorite businesses and public spaces โ https://t.co/hTndc084bD