#Singlecell and spatial genomics offers incredible resolution for understanding complex systems and cellular diversity. In this article we examine some of the latest themes being explored in the field. https://okt.to/dYAkz5 #SpatialTranscriptomics #longreads #microbiome #sequencing #cellatlas
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💬 "There’s so much we can learn from others who are applying single-cell approaches to very different questions. And, thanks to the range of technologies and biological systems being studied at the Earlham Institute, this is an ideal place to bring the diverse single-cell community together.” Exploring the latest themes in #singlecell genomics https://okt.to/2qcp0I #longreadsequencing #microbialcommunities #spatialtranscriptomics
Latest themes in single-cell genomics
earlham.ac.uk
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Unlocking #murine biology with precision: Explore pathways, receptor-ligand pairs, cell-cell interactions, #biomarkers, and beyond with the 10x Genomics #XeniumPrime5K #Mouse Pan Tissue & Pathways Panel. 🐭✨ An ultra-high-plex assay delivering exceptional data quality.
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Delve into the intricate realm of #human biology with 10x Genomics meticulously validated #Xenium #Prime5K #HumanPanTissue & Pathways Panel. Uncover biological pathways, #receptor-ligand pairs, cell-cell interactions, #biomarkers, and more with unparalleled precision and depth. 🧬 Learn more here: https://zurl.co/rA86
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This week, we had one great seminar presented by Bertrand Yeung, Director of Business Development from Curio Bioscience. The seminar was focused on #SpatialOmics. During this one-hour presentation, he introduced their Spatial Mapping. Based on their Slide-tag technology, the Curio Trekker Single-Cell Spatial Mapping Kit offers a new paradigm in single-cell analysis. Curio Trekker delivers true, single-cell spatial mapping without the need for deconvolution or cell segmentation by arranging standard, single-cell genomics data into spatial orientation. We learned a lot in this presentation. Let’s rock the spatial omics. 🚀 #SpatialOmics #fgczgenomics #singlecell
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Up next, we have a thought-provoking presentation by Drs. Robert Green MD, MPH and Ingrid Holm titled "Broadening Diversity in Genomics: The BabySeq Experience." Scheduled for 1:00 PM to 1:15 PM, this session will delve into the vital importance of diversity in genomic research and how the BabySeq project aims to enhance representation within the field. Join us as we explore strategies for fostering inclusivity in genomics and the positive impact of diverse perspectives on research outcomes. #ICoNS2024 #DiversityInGenomics #BabySeq
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Dynabeads magnetic beads: Empowering ancient DNA research and beyond. Discover how their role in the Nobel Prize-winning study of Neanderthal genomics has paved the way for advancements in modern healthcare: https://bit.ly/3uVWH5D #Dynabeads #NobelPrize #GenomicAdvancements #NGS
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Embryo spatial 3D genomics A spatial 3D genomics approach for assessing chromatin conformation in-situ in tissue sections, by integrating microfluidic deterministic barcoding and SPRITE procedures. https://lnkd.in/gRnvR-J2
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NEW: Our own Professor Sunduz Keles, a leading researcher at the intersection of statistics and genomics, has been awarded funding from the Chan Zuckerberg Initiative! Prof. Keles and Prof. Emery Bresnick from the UW School of Medicine and Public Health will lead a project entitled "Multi-Modal Single Cell Data Tensors For Gene-Enhancer Links." The team will work to develolp new methods for understanding the complex relationship between genes and cells. Learn more about this leading-edge work: https://ow.ly/vjKX50SShQZ #BiomedicalInformatics #GenomicsResearch
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In this exclusive whitepaper, learn how it all starts with patient data. In the drive towards precision medicine, explore patient-centric omics mining strategies for target identification. Using state-of-the-art systems biology, find out how transcriptomic, clinical, and morphological data can be integrated to construct verifiable models of diseases like chronic kidney disease. Read the whitepaper here: https://hubs.ly/Q02xxqYX0 #researchneverstops #evotec #drugdiscovery #targetidentification #omics
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Did you know? 🔬 Magnetic beads are the unsung heroes of high-throughput DNA extraction environments! These tiny beads, revolutionize the DNA extraction process by efficiently binding DNA molecules. In high-throughput settings, such as genomics labs or diagnostic facilities, magnetic bead technology streamlines DNA purification, offering rapid and reliable results. Their magnetic properties enable easy separation from complex mixtures, minimizing hands-on time and maximizing workflow efficiency. Thanks to magnetic beads, scientists can accelerate research, unlock genetic insights, and propel discoveries forward in the quest for better health outcomes. It's amazing how something so small can make such a big difference! #MagneticBeads #DNAExtraction #HighThroughput #Genomics #Research #Science
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