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Related lectures (31)
Genetic Mechanisms: Prader Willi Syndrome
Explores the genetic mechanisms of Prader Willi syndrome and DNA analysis techniques.
Exploring Genes and Genomes
Explores genes, genomes, proteins, and DNA sequencing techniques.
Genetic Dosage and Chromosome Abnormalities
Explores genetic dosage, X chromosome inactivation, and chromosome abnormalities, illustrated by real-life examples and genetic concepts.
Genetic Expression and Chromosome Dosage
Explores genetic expression, chromosome characteristics, X chromosome inactivation, and DNA methylation impact.
Chromosomal Dosage and Genetic Disorders
Explores chromosomal dosage, genetic disorders, inheritance patterns, and X chromosome inactivation.
Exploring Genes and Genomes
Explores protein structure, DNA analysis, gene sequencing, and the Human Genome Project.
PCR and Restriction Cloning
Covers genetic engineering, FRET sensors, PCR cloning, and DNA constructs for practical applications.
Electrophoresis: Amino Acids and Protein Analysis
Explores amino acids, protein analysis, pH gradient setup, and electroblotting techniques for DNA and proteins.
Cellular Biology: Mitosis and Meiosis Overview
Covers cellular biology, focusing on mitosis, meiosis, and the cell cycle processes.
Chromosome Variation
Explores variations in chromosome numbers and structure, including deletions, duplications, inversions, and translocations.
Antigen Receptor Generation: Somatic Recombination and Diversity
Explores the generation of B and T cell receptors through somatic recombination.
Genetic Dosage and Chromosome 21
Explores genetic dosage, Chromosome 21, X-inactivation, and X-linked inheritance.
Meiosis: Chromosome Division and Genetic Shuffling
Explores meiosis, focusing on chromosome division, genetic shuffling, and consequences of errors.
Genetic Distance Calculation
Explores genetic distance calculation, sequence alignment, and the impact of friction.
DNA and Its Engineering: Fundamentals and Applications
Provides an overview of DNA structure, replication, transcription, and its engineering applications in molecular biology.
DNA Methylation and X Chromosome Inactivation
Explains DNA methylation, X chromosome inactivation, and mutation implications.
Production of Viral Vectors
Explores the production of viral vectors for gene therapy applications, emphasizing AAV vectors and the process of large-scale production and purification.
DNA Structure and Function
Explores DNA structure, histone interactions, polymerase function, nucleosome organization, chromatin compaction, cell cycle phases, FISH analysis, and telomere structure.
DNA separation: Methods and Techniques
Explores DNA separation methods, including gel and capillary electrophoresis, nanochannel sizing, and protein binding site observation.
Genetic Disorders: Chromosomal Aberrations
Explores sex determination, chromosomal aberrations, and genetic diseases, including deletions, duplications, and non-disjunction during meiosis.
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