slide-seq array (Spatial Transcriptomics Inc)
90
Structured Review
Spatial Transcriptomics Inc
slide-seq array
Slide Seq Array, supplied by Spatial Transcriptomics Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/array-seq+slide/slide+seq+array/pm40181168-69-17-0
Average 90 stars, based on 1 article reviews
Slide Seq Array, supplied by Spatial Transcriptomics Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/array-seq+slide/slide+seq+array/pm40181168-69-17-0
Average 90 stars, based on 1 article reviews
slide-seq array - by Bioz Stars,
2026-09
90/100 stars
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Fat:Article Title: Repurposing large-format microarrays for scalable spatial transcriptomics. Article Snippet: Spatiomolecular analyses are key to study tissue functions and malfunctions.. However, we lack profiling tools for spatial transcriptomics that are easy to adopt, low cost and scalable in terms of sample size and number.. Here, we describe a method, Array-seq, to repurpose classical oligonucleotide microarrays for spatial transcriptomics profiling. Article Title: Scalable spatial transcriptomics through computational array reconstruction. Article Snippet: Spatial transcriptomics enables gene expression mapping within tissues but is often limited by imaging constraints.. We present an imaging-free approach that reconstructs spatial barcode locations using molecular diffusion and dimensionality reduction.. Validated against ground truth imaging, our method achieves high fidelity and scales to centimeter-sized tissues. Marker:Article Title: Repurposing large-format microarrays for scalable spatial transcriptomics. Article Snippet: Spatiomolecular analyses are key to study tissue functions and malfunctions.. However, we lack profiling tools for spatial transcriptomics that are easy to adopt, low cost and scalable in terms of sample size and number.. Here, we describe a method, Array-seq, to repurpose classical oligonucleotide microarrays for spatial transcriptomics profiling. Article Title: Scalable spatial transcriptomics through computational array reconstruction. Article Snippet: Spatial transcriptomics enables gene expression mapping within tissues but is often limited by imaging constraints.. We present an imaging-free approach that reconstructs spatial barcode locations using molecular diffusion and dimensionality reduction.. Validated against ground truth imaging, our method achieves high fidelity and scales to centimeter-sized tissues. Gene Expression:Article Title: Repurposing large-format microarrays for scalable spatial transcriptomics. Article Snippet: Spatiomolecular analyses are key to study tissue functions and malfunctions.. However, we lack profiling tools for spatial transcriptomics that are easy to adopt, low cost and scalable in terms of sample size and number.. Here, we describe a method, Array-seq, to repurpose classical oligonucleotide microarrays for spatial transcriptomics profiling. Article Title: Scalable spatial transcriptomics through computational array reconstruction. Article Snippet: Spatial transcriptomics enables gene expression mapping within tissues but is often limited by imaging constraints.. We present an imaging-free approach that reconstructs spatial barcode locations using molecular diffusion and dimensionality reduction.. Validated against ground truth imaging, our method achieves high fidelity and scales to centimeter-sized tissues. Staining:Article Title: Repurposing large-format microarrays for scalable spatial transcriptomics. Article Snippet: Spatiomolecular analyses are key to study tissue functions and malfunctions.. However, we lack profiling tools for spatial transcriptomics that are easy to adopt, low cost and scalable in terms of sample size and number.. Here, we describe a method, Array-seq, to repurpose classical oligonucleotide microarrays for spatial transcriptomics profiling. Article Title: Scalable spatial transcriptomics through computational array reconstruction. Article Snippet: Spatial transcriptomics enables gene expression mapping within tissues but is often limited by imaging constraints.. We present an imaging-free approach that reconstructs spatial barcode locations using molecular diffusion and dimensionality reduction.. Validated against ground truth imaging, our method achieves high fidelity and scales to centimeter-sized tissues. Imaging:Article Title: Repurposing large-format microarrays for scalable spatial transcriptomics. Article Snippet: Spatiomolecular analyses are key to study tissue functions and malfunctions.. However, we lack profiling tools for spatial transcriptomics that are easy to adopt, low cost and scalable in terms of sample size and number.. Here, we describe a method, Array-seq, to repurpose classical oligonucleotide microarrays for spatial transcriptomics profiling. Article Title: Scalable spatial transcriptomics through computational array reconstruction. Article Snippet: Spatial transcriptomics enables gene expression mapping within tissues but is often limited by imaging constraints.. We present an imaging-free approach that reconstructs spatial barcode locations using molecular diffusion and dimensionality reduction.. Validated against ground truth imaging, our method achieves high fidelity and scales to centimeter-sized tissues. |
