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Computer Science
Artificial Intelligence
OpenAI
Divide and Conquer, Sorting and Searching, and Randomized Algorithms
Introduction to Graphic Illustration
The Science of Gastronomy
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Master techniques for establishing and characterizing 3D cancer cell models, including spheroid and organoid generation, high-throughput imaging, and applications in drug screening and immuno-oncology research.
Discover how super-resolution microscopy breaks through light's diffraction limit, enabling visualization of the nano-world from subcellular structures to single molecules, with insights into various imaging techniques and advanced camera technologies.
Explore groundbreaking nanomedicine strategies for lung carcinoma treatment, focusing on macrophage activation and dendritic cell responses through innovative calcium channel and CD47 inhibitor delivery methods.
Discover how quantum physics phenomena revolutionize scientific imaging through advanced sCMOS camera technology, exploring applications in microscopy, spectroscopy, and breakthrough research methodologies.
Gain insights into women's vaginal health, including common infections, diagnostic approaches, and treatment strategies. Learn to identify symptoms, understand molecular diagnostics, and improve patient care outcomes.
Master the fundamentals of high-content screening (HCS) for drug development, from basic principles to advanced multiplexing techniques. Learn experimental design, cell painting applications, and how to utilize service providers effectively.
Discover how computational methods identify and analyze cancer neoantigens from aberrant RNA splicing, focusing on DNA mutations and de novo RNA aberrations for advancing immuno-oncology treatments.
Discover how NIH's Nutrition for Precision Health program uses AI, microbiome research, and diverse participant data to develop personalized dietary recommendations and predict individual responses to different foods.
Discover advanced techniques for optimizing protein engineering workflows, from gene synthesis to protein expression, with emphasis on enhanced antibody yields and improved codon usage strategies.
Explore genomic analysis of cancer cells, focusing on Copy Number Variants (CNVs) as biomarkers and their detection through OncoScan CNV assays for understanding tumor development and progression.
Discover how to effectively identify and interpret clinically significant mutations in NGS cancer testing, focusing on practical approaches to overcome data interpretation challenges in precision medicine.
Explore the mechanisms of neoantigen generation and immune system recognition in cancer immunotherapy, covering antigen presentation, immune activation, and emerging therapeutic strategies.
Explore signal transduction pathways, focusing on MAPK pathways in fungi. Gain insights into signal specificity, shared components, and implications for disease research.
Explore innovative Human-on-a-Chip systems for drug discovery, focusing on their application in therapeutic index determination and systemic toxicity assessment in pre-clinical stages.
Explore bile acid composition in FGF19-expressing liver-humanized mouse models and its application in CYP3A4-mediated drug-drug interaction studies. Gain insights into translational in vitro models for improved preclinical data interpretation.
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