Lectures: Audio and Slides

Audio recordings of each lecture, and associated slides, are presented below. The slides can be accessed on the "Lecture Slides" tab below the player for each audio track.


Intro 1: Computational Side of Computational Biology. Statistics; Perl, Mathematica

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Intro 1: Computational Side of Computational Biology. Statistics; Perl, Mathematica (cont)

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Intro 2: Biological Side of Computational Biology. Comparative Genomics, Models & Applications

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Intro 2: Biological Side of Computational Biology. Comparative Genomics, Models & Applications (cont)

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DNA 1: Genome Sequencing, Polymorphisms, Populations, Statistics, Pharmacogenomics; Databases

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DNA 1: Genome Sequencing, Polymorphisms, Populations, Statistics, Pharmacogenomics; Databases (cont)

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DNA 2: Dynamic Programming, Blast, Multi-alignment, HiddenMarkovModels

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DNA 2: Dynamic Programming, Blast, Multi-alignment, HiddenMarkovModels (cont)

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RNA 1: Microarrays, Library Sequencing and Quantitation Concepts

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RNA 1: Microarrays, Library Sequencing and Quantitation Concepts (cont)

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RNA 2: Clustering by Gene or Condition and Other Regulon Data Sources Nucleic Acid Motifs; The Nature of Biological "proofs"

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RNA 2: Clustering by Gene or Condition and Other Regulon Data Sources Nucleic Acid Motifs; The Nature of Biological "proofs" (cont)

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Protein 1: 3D Structural Genomics, Homology, Catalytic and Regulatory Dynamics, Function & Drug Design

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Protein 1: 3D Structural Genomics, Homology, Catalytic and Regulatory Dynamics, Function & Drug Design (cont)

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Protein 2: Mass Spectrometry, Post-synthetic Modifications, Quantitation of Proteins, Metabolites, & Interactions (cont)

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Protein 2: Mass Spectrometry, Post-synthetic Modifications, Quantitation of Proteins, Metabolites, & Interactions (cont)

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Networks 1: Systems Biology, Metabolic Kinetic & Flux Balance Optimization Methods

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Networks 1: Systems Biology, Metabolic Kinetic & Flux Balance Optimization Methods (cont)

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Networks 2: Molecular Computing, Self-assembly, Genetic Algorithms, Neural Networks

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Networks 3: The Future of Computational Biology: Cellular, Developmental, Social, Ecological & Commercial Models

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Networks 3: The Future of Computational Biology: Cellular, Developmental, Social, Ecological & Commercial Models (cont)

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