I'm sharing with you why long reads have propelled genetic sequencing and precision medicine into a new direction. Remember when we relied purely on Excel to organize and analyze sequencing data (some companies still do this)? And now we sprinkle in AI, making long-read sequencing analysis even more efficient. Here is more of what you need to know 🔊 https://lnkd.in/dgWRbjqF #longreadsequencing #genetics #geneticists
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NEXT GENERATION SEQUENCING (NGS) leveraged Artificial Intelligence (AI) to enable us to read the HUMAN GENOME. This made computers an integral part of genetic science and greatly reduced the time required for sequencing. Learn more about the CODE of LIFE @humanlifeexpectancychannel. #genetics, #artificialintelligence #DNAAnalysis #Genotyping
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🌟 AI Will Uncover the Mysteries of Genetic Immortality! 🤖 Michio Kaku predicts that artificial intelligence will revolutionize our understanding of genetic immortality. With AI's advanced algorithms and increased access to gene sequences, we may soon identify the genes responsible for aging. This breakthrough could guide us towards achieving eternal youth. 🔍 How will AI shape the future of genetic research? 🌱 Could we really achieve immortality through genetic engineering? See here - https://lnkd.in/gncU-BQV Video Credit - Lex Fridman #AI #GeneticImmortality #MichioKaku #EternalYouth #FutureTech #Innovation #BioTech #TechPredictions #Genetics #ArtificialIntelligence #Longevity #ImmortalityResearch #AIandGenetics #AIFuture #TechnologyRevolution
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FDNA will be at the American Society of Human Genetics (ASHG) 2024 meeting in Denver, CO, November 5-9! Come learn how you can expedite and simplify the diagnostic process, including AI tools for patient intake. #ASHG24 #Genetics #AI #FDNA #Face2Gene
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CSHL scientists introduce SQUID, a new computational tool designed to enhance the interpretability of AI models used in genomic analysis. SQUID offers improved consistency, reduced noise, and more accurate predictions about genetic mutations. #SQUID #AI #Genomics #DeepLearning #Bioinformatics #ComputationalBiology #Genetics #Research #this_post_was_generated_with_ai_assistance #responsibleai https://lnkd.in/ef9MSDt3
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Is #DNA all you need? Patrick Hsu and his team recently reported Evo, a genomic foundation model that learns across the fundamental languages of #biology: #DNA, #RNA, and #proteins. Evo is capable of both prediction tasks and generative design, from molecular to whole genome scale: https://lnkd.in/gxntKc6c #genomics #AI
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Whole Genome and Exome Sequencing in Rare Diseases leaves many questions still on the table for many in the field of genomics. Ali M Tabish tackles some of these questions. Questions such as: ❓👨⚕️There has been a massive shift from a 10% diagnostic rate with traditional methods to a significantly higher rate using WGS and ES, how does this improve diagnostic rates? ❓💊In what ways can artificial intelligence (AI) enhance the interpretation and reporting of genetic results in the study of rare diseases? ❓📊 What role does phenotype information play in the genetic analysis of rare diseases using WGS and ES, and how can incomplete phenotypic data impact the diagnostic process? An interesting article: https://lnkd.in/d4UGRXq5 #WGS #exomesequencing #AI #genetics #diagnostics
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Genetic engineering, once the stuff of science fiction, is now becoming a reality. With advancements in technology and the ability to manipulate DNA with extreme precision, the possibilities for genetic engineering are endless. But what does the future hold for this rapidly evolving field? One of the most exciting prospects for genetic engineering is the potential to eliminate genetic diseases. #Engineering #Genetics #Science
https://betshy.com/?p=25687&no_cache=1716894064
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#crispr #gene_editing Concise and informative video on crispr mediated gene editing process
Genome editing using CRISPR/Cas9 is a rapidly expanding field of scientific research being used in labs all over the world to enhance our understanding of how living biological systems work, how to improve treatments for genetic diseases, and how to develop energy solutions for a better future. Scroll to the comments for more info. #CRISPR #Genetics #CoolScienceVideo University of California, Berkeley
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ImpMap: Reducing large-scale imputation time from hours to seconds. 🧬 Understanding human genetics is crucial for revealing disease causes and improving clinical trial success rates. ImpMap, our innovative AI solution, addresses the challenge of integrating genetic data with gaps, as it: 💡 Simplifies genetic imputation 💡 Enhances accuracy in analysis 💡 Enables thorough exploration of drug targets 💡 Scales for large datasets and complex genetic data Register for our upcoming webinar to learn how ImpMap can accelerate your research: https://lnkd.in/edBdMtcd #GeneticResearch #DrugDiscovery #ImpMap
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A type of genetic element is called a retrotransposon. ⁉ 💠 Retrotransposons are sometimes called “jumping genes,” pieces of DNA that can move around the genome. To move, retrotransposons are transcribed into RNA, and then that RNA is reverse-transcribed into DNA and inserted in a new genomic location. Retrotransposons are very common in the genomes of humans and other animals. However, our cells try to stop retrotransposons from “jumping” to other genomic locations because they can be harmful if they land in the wrong place. An important noncoding RNA called a piwi-RNA targets the DNA and RNA of retrotransposons to stop them from moving.
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Genomics and Biomarkers Leader
7moDavid Yizhar. I full agree that we need to PacBio and Nanopore sequencing