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Apprentice Mode
10 Modules / ~100 pages
Wizard Mode
~25 Modules / ~400 pages

Introduction to Human Genomics
( 25 Modules )

Module #1
Introduction to Human Genomics
Overview of the field of human genomics, importance, and applications
Module #2
Genetics Review
Basic principles of genetics, including Mendelian inheritance and molecular biology
Module #3
Human Genome Structure
Organization and features of the human genome, including chromosomes and gene density
Module #4
Genome Sequencing Technologies
Overview of current and emerging sequencing technologies, including Sanger, Illumina, and PacBio
Module #5
Genome Assembly and Annotation
Methods for assembling and annotating genomes, including reference genomes and variant detection
Module #6
Genomic Variation and Mutation
Types and consequences of genomic variation, including SNPs, insertions, deletions, and copy number variation
Module #7
Genotype-Phenotype Correlations
Relationship between genetic variation and phenotypic traits, including Mendelian and complex diseases
Module #8
Genetic Association Studies
Design and analysis of genetic association studies, including case-control and family-based designs
Module #9
Linkage Analysis
Methods for identifying genetic loci associated with disease, including parametric and non-parametric linkage analysis
Module #10
Genome-Wide Association Studies (GWAS)
Design and analysis of GWAS, including significance testing and multiple testing correction
Module #11
Functional Genomics
Experimental and computational approaches to understanding gene function, including gene expression and protein function
Module #12
Epigenomics
Study of epigenetic marks and their role in gene regulation, including DNA methylation and histone modification
Module #13
Gene Regulation and Expression
Mechanisms of gene regulation, including transcriptional and post-transcriptional regulation
Module #14
Genomic Medicine
Applications of genomics in medicine, including genetic testing, diagnosis, and personalized treatment
Module #15
Cancer Genomics
Genomic approaches to understanding cancer, including tumor heterogeneity and targeted therapy
Module #16
Pharmacogenomics
Study of genetic variation and response to drugs, including pharmacokinetics and pharmacodynamics
Module #17
Ethical, Legal, and Social Implications (ELSI)
Ethical considerations in genomics, including privacy, informed consent, and genetic discrimination
Module #18
Genomic Data Analysis
Bioinformatic and computational tools for analyzing genomic data, including scripting languages and pipeline development
Module #19
Integrative Genomics
Integration of genomic data with other omics data, including transcriptomics, proteomics, and metabolomics
Module #20
Single-Cell Genomics
Analysis of genomic data from single cells, including scRNA-seq and scATAC-seq
Module #21
Synthetic Genomics
Design and construction of synthetic genomes, including genome engineering and gene editing
Module #22
Genomic Databases and Resources
Overview of public genomic databases, including Ensembl, GenBank, and UCSC Genome Browser
Module #23
Computational Genomics
Computational methods for analyzing genomic data, including machine learning and artificial intelligence
Module #24
Genomics and Precision Health
Applications of genomics in precision health, including personalized medicine and health disparities
Module #25
Course Wrap-Up & Conclusion
Planning next steps in Introduction to Human Genomics career


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