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cs.AI, q-bio.NC updates on arXiv.org
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Language Ranker: A Lightweight Ranking framework for LLM Decoding
arXiv:2510.21883v1 Announce Type: cross Abstract: Conventional research on large language models (LLMs) has primarily focused on refining output distributions, while paying less attention to the decoding process that transforms these distributions into final responses. Recent advances, such as scaling the computation of inference time with reward models, have underscored the importance of decoding, but these methods often suffer from high computational costs and limited applicability. In this p
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(Multiomics OR Omics) AND (Lung OR gastric OR Hepatocellular)
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Systematic benchmarking of high-throughput subcellular spatial transcriptomics platforms across human tumors
Nat Commun. 2025 Oct 17;16(1):9232. doi: 10.1038/s41467-025-64292-3.ABSTRACTRecent advancements in spatial transcriptomics technologies have significantly enhanced resolution and throughput, underscoring an urgent need for systematic benchmarking. Here, we generate serial tissue sections from colon adenocarcinoma, hepatocellular carcinoma, and ovarian cancer samples for systematic evaluation. Using these uniformly processed samples, we generate spatial transcriptomics data across four high-throu
Systematic benchmarking of high-throughput subcellular spatial transcriptomics platforms across human tumors
Nat Commun. 2025 Oct 17;16(1):9232. doi: 10.1038/s41467-025-64292-3.
ABSTRACT
Recent advancements in spatial transcriptomics technologies have significantly enhanced resolution and throughput, underscoring an urgent need for systematic benchmarking. Here, we generate serial tissue sections from colon adenocarcinoma, hepatocellular carcinoma, and ovarian cancer samples for systematic evaluation. Using these uniformly processed samples, we generate spatial transcriptomics data across four high-throughput platforms with subcellular resolution: Stereo-seq v1.3, Visium HD FFPE, CosMx 6K, and Xenium 5K. To establish ground truth datasets, we profile proteins on tissue sections adjacent to all platforms using CODEX and perform single-cell RNA sequencing on the same samples. Leveraging manual nuclear segmentation and detailed annotations, we systematically assess each platform's performance across capture sensitivity, specificity, diffusion control, cell segmentation, cell annotation, spatial clustering, and concordance with adjacent CODEX. The uniformly generated and processed multi-omics dataset could advance computational method development and biological discoveries. The dataset is accessible via SPATCH, a user-friendly web server for visualization and download.
PMID:41107232 | PMC:PMC12534522 | DOI:10.1038/s41467-025-64292-3