| No. |
Name |
Talk Title |
| 1 |
Muhammad Ahmed |
Exploring human dermal fibroblast heterogeneity and plasticity across the papillary and reticular dermis |
| 2 |
Jefferson Allan |
Implementing Long-read Single-Cell IsoSeq: a Core Facility's Perspective |
| 3 |
Punn Augsornworawat |
Investigating Pancreatic Islet Resident Macrophages through Single-cell Multiomics Sequencing |
| 4 |
Beilei Bian |
Building a spatial atlas of normal human tissue ageing from GTEx histology using GHISTNorm |
| 5 |
Leslie Calapre |
B-cell-associated extracellular vesicle-derived gene expression signature predicts clinical outcomes following immune checkpoint inhibition. |
| 6 |
Ankita Chatterjee |
Single-Nucleus Sequencing Reveals the Oncogenic Rewiring ofBallooned Hepatocytes in MASLD |
| 7 |
Ponpan M. Choopong |
Development of an Integrative Multiplexed Barcoded Antigen and Single-Cell Multi-Omics Profiling Platform to Investigate Antigen-Specific Systemic Immune Responses to Dengue Virus Infection and Vaccination Dengue Immune Single cell Omics (DISCO) |
| 8 |
Nigel Chou |
Guidestar: a spike-in approach to validate RNA detection accuracy in imaging-based spatial transcriptomics |
| 9 |
Vivian Chua |
IGFBP2 is Elevated in BAP1-deficient UM and is Associated with Better Survival under Nutrient Stress |
| 10 |
Rowena Couto |
Multi-Tissue RNA-Seq Analysis of Dose-Dependent Effects of an Investigational Compound in Mice |
| 11 |
Jennifer Currenti |
Molecular pixelation uncovers a population of effector memory CD8+ T cells associated with immunotherapy response |
| 12 |
Maria Nathália de Menezes |
Integration of scRNA-seq and spatial transcriptomics to characterize the tumor microenvironment in ovarian serous carcinoma and triplenegative breast cancer |
| 13 |
Yidi Deng |
Building the First Comprehensive Human Inner-Ear Cell Atlas Across Development, Health and Disease |
| 14 |
Ruslan Deviatiiarov |
Specific gene regulatory networks for in silico knockout simulation in amniotes |
| 15 |
Naoto Fukasawa |
Elucidation of cell subsets contributing to the development of pouch inflammation in patients of ulcerative colitis after total colectomy |
| 16 |
Saurabh Gupta |
Integrative multi-omics and clinical data analysis to predict outcomes and treatment response in hepatocellular carcinoma |
| 17 |
Jian He |
HSPA1B leading to poor prognosis of Triple-negative breast cancer via promoting Tfh cell infiltration |
| 18 |
Saya Hisano |
Multi-modal integration of genome, transcriptome, epigenome in resting and stimulated CD4⁺ T cells reveals dynamic landscape of immune-mediated disease genetics. |
| 19 |
Rui Hou |
Single-nucleus RNA sequencing reveals extensive subclonal heterogeneity across mesothelioma subtypes |
| 20 |
Samia Iftikhar |
Whole exome sequencing expands the genetic spectrum of syndromic intellectual disability families |
| 21 |
Rojashree Jayakumar |
PhenoEval: Multi-stage assessment of transcriptomics-guided drug candidates |
| 22 |
Soyoung Jeong |
Mapping immune landscapes of inflammatory skin diseases through single-cell multi-omic analysis |
| 23 |
Yuhui Jeong |
Agentic AI enables segmentation-free inference of cell types from spatial transcriptomics data |
| 24 |
Damita Jevapatarakul |
Distinct Intraocular Immune Landscapes Across Anterior Uveitis Subtypes Revealed by Single-Cell RNA Sequencing |
| 25 |
Christine Joh |
An Integrated Single-Cell Atlas of Patient Heterogeneityand Tissue Remodeling in IBD |
| 26 |
Soryung Jung |
A Longitudinal Single-Cell Spatial Atlas of Trastuzumab Deruxtecan Response and Resistance in Gastric Cancer |
| 27 |
Ulrich Kadolsky |
Beyond global thresholds: per-cell polarisation scoring improves cell recovery when demultiplexing single-cell RNA-Seq data |
| 28 |
Danamma Kalavikatte |
Long-read profiling reveals distinct 5mC and 5hmC landscapes in hepatocellular carcinoma nuclei |
| 29 |
Hirofumi Kariyayama |
Development of Cell IO database, integrating literature-based knowledge of cellular functions and single-cell transcriptome datasets |
| 30 |
Hyeon-Min Kim |
Reproducible and shareable bioinformatics pipelines from natural-languageprompts |
| 31 |
Na-Yeon Kim |
A Multimodal Perturbation Atlas Identifies Novel Negative Regulators of Anoikis Resistance in Gastric Organoids |
| 32 |
Sohei Kitazawa |
Bridging Spatial Transcriptomics and Histopathology: Glioblastoma as a Model for Spatially Resolved Tissue Analysis |
| 33 |
Tamas Korcsmaros |
Mapping Organoid Identity with the Human Gut Cell Atlas: The Power of Reference-Guided Label Transfer |
| 34 |
Truong Thang Le |
Spatial Heterogeneity of Hypoxic and Inflammatory Niches Across Cancer Types |
| 35 |
Brian Lee |
Decoding gene regulatory networks during Treg differentiation in the thymus |
| 36 |
Eugenie Lee |
ROIscope: Multi-objective selection of informative regions for spatial profiling |
| 37 |
Juyoung Lee |
A single-cell atlas of immune aging reveals age-dependent genetic regulation |
| 38 |
Xiaoqi Liang |
Benchmark-informed representation learning in single-cell omics |
| 39 |
Ting Wei Lim |
Fast, memory-efficient estimation of transcription factor activity from single-cell chromatin accessibility |
| 40 |
Peiwen Liu |
connectomeDB2025: A high-quality manually curated ligand–receptor database for cell–cell communication prediction |
| 41 |
Lawrence Macalalad |
Stellate Cell Interactions Reveal Glycan-Associated Molecules as Key Hubs in Pancreatic Cancer Progression and Liver Metastasis |
| 42 |
Sakura Eri Maezono |
metabConnectomeDB: A Systematically Verified Resource for Metabolite-Mediated Cell-Cell Communication |
| 43 |
Zhichao Miao |
An integrated single-cell atlas of the human lung across the lifespan |
| 44 |
Jonathan Moody |
A single-cell atlas of transcribed cis-regulatory elements links complex trait heritability to regulatory programs, cell states, and genes |
| 45 |
Jiwoo Moon |
ABCT: a cell type annotation tool for spatial single-cell data based on anchor cells of marker genes |
| 46 |
Nathalie Nataren |
Spatial transcriptomic profiling of the melanoma tumour microenvironment in immune checkpoint inhibitor response |
| 47 |
Hao Nguyen |
A matched multi-platform spatial atlas of luminal breastcancer progression from in situ to invasive lesions |
| 48 |
Christopher O'Keeffe |
Benchmarking sc-RNAseq Chemistries and Capture Technologies |
| 49 |
Ajay Padvi |
Neuronal cell death pathway prediction as a tool to decipher neurodegeneration using single cell RNA-seq datasets |
| 50 |
Abegail Pancho |
Automated Detection Of Leukemia From Peripheral Bloodsmear Images Using Deep Learning |
| 51 |
Sharvari Pandit |
Metabolic Characterisation and Functional Effects of Colorectal Cancer-Associated Escherichia coli on Intestinal Epithelial Cells: Modulation by Butyrate |
| 52 |
Supranee Phanthanawiboon |
Single-Cell Transcriptomic Profiling of Peripheral Blood Mononuclear Cells Reveals Severity-Dependent Immune Remodeling in Systemic Sclerosis |
| 53 |
Waritsara Phongkhajeewan |
Cell State Determines Islet Communication Across Health and Disease |
| 54 |
Mirana Ramialison |
4D time-series spatial transcriptomics dynamics at single-cell resolution |
| 55 |
Ras Azira Ramli |
Spatial single-cell mapping reveals site-specific T-cell access and immune-exclusion niches in metastatic breast cancer |
| 56 |
Shreya Rao |
Propagating Annotation Uncertainty Through Downstream Spatial Transcriptomics Analysis |
| 57 |
Fernando Rossello |
End-to-end 3D multi-slice spatial transcriptomics analysis with VR-Omics/CELLestial |
| 58 |
Saira Saleem |
Variations Of Stage-Specific Patient-Derived Colon Cancer Cell Models |
| 59 |
Go Sato |
Context-dependent genetic regulation of human skin illuminates dermatological disease mechanisms |
| 60 |
Yi Xiang See |
A Pilot Single-Cell Transcriptomic Study of iPSC-Derived RPE Cells from a Singaporean AMD Cohort |
| 61 |
Ashley Soet |
Polyclonality and the tumour microenvironment of hepatocellular carcinoma |
| 62 |
Jaykishan Solanki |
Deciphering the Convergent Single-Cell Blueprint of Viral Hepatocarcinogenesis: Integration of Co-Expression Centrality and miRNA mRNA Regulatory Networks |
| 63 |
Pongsakorn Sukonthamarn |
Characterising the diversity of HLA class I and their interaction with T cell receptor repertoires across Indonesian populations |
| 64 |
Shohei Suzuki |
Intestinal Epithelial MHC II Induces Encephalitogenic CD4+ T Cells and Initiates Central Nerves System Autoimmunity |
| 65 |
Le Min Tan |
Establishing a Robust and Scalable Experimental Workflow for Large-Scale and High-Throughput Single-Cell Profiling of PBMCs |
| 66 |
Sik Loo Tan |
Pseudotime Trajectory Inference Of Single Cells Using SCGNN and Pseudotime Fine-Tune MST |
| 67 |
Jessica Tang |
Molecular characterisation of human inner ear: an atlas of foetal and adult inner ear |
| 68 |
Alexey Terskikh |
Global chromatin organisation in single cells predict function and ageing. |
| 69 |
Zhang Tian |
Constructing a sympathetic neuronal network in human kidney organoids |
| 70 |
James Timmons |
Multi-nucleated cell segmentation: Merscope analysis of human muscle aging |
| 71 |
Elijah Willie |
PACE, Proximity-Associated Changes in Expression |
| 72 |
Yulin Wu |
WaveFactor enables factor inference for spatial transcriptomics with multi-scale spatial awareness and prior information integration |
| 73 |
Qian Yang |
A Publishing Home for Cell Atlas Data, Reanalysis, Models, and Methods -- Data Express in Life Digitalization (DeLD) |
| 74 |
Jiwon Yu |
Single-cell spatial transcriptomics reveals microenvironmental remodeling associated with resistance to nivolumab plus ipilimumab in rectal cancer |
| 75 |
Lijia Yu |
A biologically informed quality assessment agent for protein-based multiplex imaging |
| 76 |
Chen Zhan |
A Reusable Bayesian Generative Model of the Human Cell Atlas Enables Population-Scale Validation of Cell Composition and Gene Expression |
| 77 |
Aaron Zhang |
Multimodal Pseudo-Ground Truth for Deep Learning-Based Whole-Cell Segmentation on H&E images with Spatial Mapping for Transcriptome |
| 78 |
Arthur Zhang |
Bioinformatics workflows for processing and analysing large-scale singlecell transcriptomics of PBMCs |
| 79 |
Huiwen Zheng |
A multimodal atlas of senescence reveals age-dependent mechanisms in basal cell carcinoma development |