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Introductory Human Physiology
Mechanics of Materials I: Fundamentals of Stress & Strain and Axial Loading
Philosophy, Science and Religion: Religion and Science
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Explore multi-omics variational autoencoding for integrating complex biological datasets. Learn about MOVE pipeline, data preprocessing, model optimization, and approaches for determining associations between omics variables and categorical labels.
Explore germline variation and CRISPR screens in this comprehensive primer. Gain insights into complex trait genetics, human genetic variation, and cutting-edge DNA sequencing methods.
Dive into protein design using deep learning with David Baker. Explore cutting-edge techniques and insights at the intersection of AI and biomedical research.
Explore how cells divide labor through communication and spatial cues, focusing on intestinal enterocytes and fibroblasts. Gain insights into tissue organization and gene expression patterns.
Explore AI's ability to detect hidden patterns in X-ray images and its implications for radiologists. Delve into fairness considerations in chest X-ray diagnosis models and their potential impacts on clinical practice.
Explore cutting-edge research and patient partnerships in rare diseases. Gain insights from experts on mitochondrial disorders, gene therapies, and collaborative initiatives to accelerate progress in this critical field.
Dive into stochasticity in transcription, exploring single-cell data, dynamic regulatory elements, and transcriptional bursting in autoimmune diseases. Gain insights into modeling techniques and gene regulatory programs.
Explore machine learning applications in predicting sudden cardiac death using ECG waveforms. Gain insights into innovative approaches combining AI and biomedical research for critical healthcare advancements.
Explore groundbreaking gene editing technologies: base editing and prime editing. Discover their therapeutic applications and advancements in precision DNA modification without double-strand breaks.
Explore proteostasis adaptation for aging-related diseases. Discover kinetic stabilizers, lysosomal flux enhancers, and autophagy activators as potential treatments for amyloidosis and neurodegenerative disorders.
Delve into post-transcriptional RNA modifications, focusing on m6A methylation and demethylation. Explore their impact on biological regulation, mammalian development, and plant growth, with insights into new chemical sequencing methods.
Dive into cross-cohort analysis using cloud genomics, exploring trusted research environments, methodologies, and tools for efficient genetic data processing and interpretation.
Explore computational approaches for designing functional proteins, including surface pattern analysis and de novo topology exploration, with applications in vaccine design, T-cell therapies, and biosensors.
Explore cutting-edge approaches in 3D genome organization research, including in silico genetic screening and graph representation learning for analyzing multiscale chromatin structure.
Explore single-cell spatiotemporal modeling with dynamo framework and Stereo-seq technology. Uncover insights into cellular states, transitions, and spatial dynamics in developmental biology and neuroscience.
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