Researchers have developed the revolutionary “CRISPR-Switch”, which enables unprecedented control of the CRISPR technique in both space and time.
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An AI-based technology rapidly diagnoses rare disorders in critically ill children with high accuracy.
A tool, based on machine learning methods, that evaluates the potential contribution of all possible mutations in a gene in a given type of tumour to the development and progression of cancer.
European Commission put forward a set of measures to increase the availability of data in the EU, building on previous initiatives to boost the free flow of non-personal data in the Digital Single Market. A key factor is to ensure securing citizens' healthcare data while fostering European cooperation
Scientists have created a deep learning method, RoseTTAFold, to provide access to highly accurate protein structure prediction.
Scientists have figured out how to modify CRISPR’s basic architecture to extend its reach beyond the genome and into what’s known as the epigenome.
Deep-learning methods have the potential to offer substantially better results, generating superior representations for characterizing the human brain.
The supplier sector will showcase its expertise and innovative high-tech solutions for the medical technology industry.
Using machine learning, a team of Western computer scientists and biologists have identified an underlying genomic signature for 29 different COVID-19 DNA sequences.
“AI is the biggest technological breakthrough of our lifetime. It will boost the entire healthcare ecosystem and will eventually re-invent the way we deliver medicine entirely.”
Study using wearable trackers links insufficient sleep to increased rate of biological aging and cardiovascular disease risk.
Using AI, researchers have succeeded in making the mass analysis of proteins from any organism significantly faster than before and almost error-free.
The project “BioSensing” from Fraunhofer ISC aims to overcome the limits of modern biosensors with the help of quantum technology.
Engineers have combined CRISPR with electronic transistors made from graphene to create a new hand-held device that can detect specific genetic mutations in a matter of minutes.
Researchers use the analogy of raindrops on the sidewalk to explain their new method to identify genetic variations that cause severe pediatric diseases.
Scientists plan to edit their genomes to correct rare genetic mutations and slow or halt progression of their diseases.