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geomx  (Complete Genomics Inc)


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    Structured Review

    Complete Genomics Inc geomx
    Geomx, supplied by Complete Genomics Inc, used in various techniques. Bioz Stars score: 99/100, based on 466 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/slide+seq+spatial+transcriptomics+experiment/Stereo-seq+Transcriptomics+Set+for+FFPE/pmc11744978-17-13-17
    Average 99 stars, based on 466 article reviews
    geomx - by Bioz Stars, 2026-10
    99/100 stars

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    Related Articles

    Transcriptomics:

    Article Title: A spatial code governs olfactory receptor choice and aligns sensory maps in the nose and brain
    Article Snippet: MERSCOPE Cell Boundary Staining Kit , Vizgen , Cat# 10400118. .. Stereo-seq Transcriptomics T kit v1.3 , STOmics , Cat# 211KT13114-CG. .. Stereo-seq 16 Barcode Library Preparation Kit , STOmics , Cat # 111KL160-CG.

    Expressing:

    Article Title: Functional and Genetic Analyses Unveil the Implication of hoxa4a in Zebrafish Craniofacial Development
    Article Snippet: .. Analysis of hoxa4a expression patterns during early zebrafish embryogenesis was conducted using the Spatial Transcript Omics Database (STOmics DB) [20], incorporating both single-cell RNA sequencing (scRNA-seq) and spatial transcriptomic (stereo-seq) datasets. ..

    Single Cell:

    Article Title: Functional and Genetic Analyses Unveil the Implication of hoxa4a in Zebrafish Craniofacial Development
    Article Snippet: .. Analysis of hoxa4a expression patterns during early zebrafish embryogenesis was conducted using the Spatial Transcript Omics Database (STOmics DB) [20], incorporating both single-cell RNA sequencing (scRNA-seq) and spatial transcriptomic (stereo-seq) datasets. ..

    RNA Sequencing:

    Article Title: Functional and Genetic Analyses Unveil the Implication of hoxa4a in Zebrafish Craniofacial Development
    Article Snippet: .. Analysis of hoxa4a expression patterns during early zebrafish embryogenesis was conducted using the Spatial Transcript Omics Database (STOmics DB) [20], incorporating both single-cell RNA sequencing (scRNA-seq) and spatial transcriptomic (stereo-seq) datasets. ..

    other:

    Article Title: Artificial Intelligence in Transcriptomics: From Human-in-the-Loop to Agentic AI.
    Article Snippet: Abbreviations: Serial Analysis of Gene Expression (SAGE); Expressed Sequence Tag (EST); In Situ Hybridization (ISH); Gene Expression Omnibus (GEO); Database for Gene Expression Evolution (Bgee); Sequence Read Archive (SRA); SPAtial transcriptomics annotation at Single-CEll Resolution (SPASCER); Panglao Database (PanglaoDB); Cancer Genome Anatomy Project (CGAP) uses SAGE; Human Cell Landscape (HCL); Genomic Data Commons (GDC) Data Portal; The Cancer Genome Atlas (TCGA); CellMiner Cross-DataBase (CDB); Chinese Glioma Genome Atlas (CGGA); IVY Glioblastoma Atlas Project (GAP); Open Pediatric Brain Tumor Atlas (OpenPBTA); Open Pediatric Cancer (OpenPedCan) Project; Single-Cell Pediatric Cancer Atlas (ScPCA); The Spinal Cord Injury (SCI) Myeloid Cell Atlas; Spatio-Temporal Cell Atlas of Brain (STAB2); Human Tumor Atlas Network (HTAN); Spatial Omics Resource of Cancer (SORC) Database; Comprehensive Repository of Spatial Transcriptomics (CROST); Spatial Transcript Omics DataBase (STOmics DB); Human Brain Transcriptome (HBT); National Institutes of Health (NIH) Blueprint Non-Human Primate (NHP) Atlas; Mouse Genome Informatics Gene Expression Database (MGI GXD); Adult Genotype–Tissue Expression (GTEx) Project; Brain Transcriptome (BrainTx) Database; Brain Initiative Cell Census Network (BICCN); Integrative Library of Integrated Network-Based Cellular Signatures (iLINCS); Database of Genotypes and Phenotypes (dbGaP); Alzheimer’s Disease (AD) Knowledge Portal; Aging, Dementia and Traumatic Brain Injury (TBI) Study; Common Metabolic Diseases Genome Atlas (CMDGA); Therapeutically Applicable Research to Generate Effective Treatments (TARGET); Single-Cell and Spatial RNA-Seq Database for Alzheimer’s Disease (ssREAD).

    Article Title: RegFormer: a single-cell foundation model powered by gene regulatory hierarchies.
    Article Snippet: We acknowledge the Stomics Cloud platform (https://cloud.stomics.tech/) for providing GPU computational resources.

    Sequencing:

    Article Title: Adult regenerative defects arise from discordant scaling of signal dependent growth and patterning
    Article Snippet: .. All subsequent steps, including cryosectioning, Stereo-seq library preparation, sequencing, and raw data processing, were performed at the BGI facility (Riga, Latvia) in collaboration with BGI, supported by a STOmics Grant awarded to E. Tanaka. ..



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    AIR-SPACE enables the mapping of adaptive immune receptor (AIR) clonotypes and <t>transcriptomics</t> in situ. ( A ) Schematic of the experimental design and methodology, including the generation of long-read (LR) and short-read (SR). ( B ) Spatial mapping of cell types across the LN sections at different time points postinfection. (Scale bar, 500 μm.) ( C ) Spatial mapping of AIR clonotypes across the LN sections, with immunoglobulin (IG) clones shown in blue and T cell receptor (TCR) clones shown in red; outlined with germinal center (GC) regions in LNs from D10PI to D21PI. ( D ) Multiplexed RNA FISH staining for T cell marker Trbc2 (green), B cell marker Ms4a1 (red), and DAPI (blue) across all samples on sister sections. (Scale bar 500 μm.)
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    Image Search Results


    AIR-SPACE enables the mapping of adaptive immune receptor (AIR) clonotypes and transcriptomics in situ. ( A ) Schematic of the experimental design and methodology, including the generation of long-read (LR) and short-read (SR). ( B ) Spatial mapping of cell types across the LN sections at different time points postinfection. (Scale bar, 500 μm.) ( C ) Spatial mapping of AIR clonotypes across the LN sections, with immunoglobulin (IG) clones shown in blue and T cell receptor (TCR) clones shown in red; outlined with germinal center (GC) regions in LNs from D10PI to D21PI. ( D ) Multiplexed RNA FISH staining for T cell marker Trbc2 (green), B cell marker Ms4a1 (red), and DAPI (blue) across all samples on sister sections. (Scale bar 500 μm.)

    Journal: Proceedings of the National Academy of Sciences of the United States of America

    Article Title: A temporal and spatial atlas of adaptive immune responses in the lymph node following viral infection

    doi: 10.1073/pnas.2504742123

    Figure Lengend Snippet: AIR-SPACE enables the mapping of adaptive immune receptor (AIR) clonotypes and transcriptomics in situ. ( A ) Schematic of the experimental design and methodology, including the generation of long-read (LR) and short-read (SR). ( B ) Spatial mapping of cell types across the LN sections at different time points postinfection. (Scale bar, 500 μm.) ( C ) Spatial mapping of AIR clonotypes across the LN sections, with immunoglobulin (IG) clones shown in blue and T cell receptor (TCR) clones shown in red; outlined with germinal center (GC) regions in LNs from D10PI to D21PI. ( D ) Multiplexed RNA FISH staining for T cell marker Trbc2 (green), B cell marker Ms4a1 (red), and DAPI (blue) across all samples on sister sections. (Scale bar 500 μm.)

    Article Snippet: Slide-seq spatial transcriptomics experiment was performed using the Curio Seeker Kit (Curio Bioscience) according to manufacturer instructions.

    Techniques: In Situ, Clone Assay, Staining, Marker