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Lecture
The Cytoskeleton
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Related lectures (35)
Microtubules: Structure, Function, and Regulation
Explores the structure, function, and regulation of microtubules, including forces involved in dynamics and pronuclear migration.
Cytoskeleton: Actin Filaments and Microtubules
Explores actin filaments, microtubules, monomers, proteins, dimer formation, and protein aggregation in the cytoskeleton.
Cytoskeleton: Cellular Organization and Function
Covers the composition and functions of the cytoskeleton within cells.
Cellular Cytoskeleton Components
Explores cellular cytoskeleton components, including actin filaments and microtubules, and discusses solvent-free molecular dynamics and Monte Carlo simulations.
Intermediate Filaments and Various Functions
Explores the structure and functions of intermediate filaments in cells, emphasizing their mechanical resistance and diverse roles.
Microtubules: Structure and Regulation
Explores the structure and regulation of microtubules, emphasizing dynamic polymers, GTP hydrolysis, nucleation, catastrophe, and accessory proteins.
Cellular Biology: Mitosis and Meiosis Overview
Covers cellular biology, focusing on mitosis, meiosis, and the cell cycle processes.
Molecular Motors: Rotary Mechanisms
Explores the coordination and mechanisms of molecular motors, including rotary motors, ATP-synthase, and polymerization forces.
Polymer Swelling Behavior
Explores the swelling behavior of polymers and its influencing factors, such as crosslinking density and solvent nature.
Actin: Polymerization and Cellular Functions
Explores actin's structure, polymerization, regulation in cells, and role in cellular structures.
Lipids and Sugars
Covers the roles of lipids in cell membranes and the structural complexity of sugars, highlighting their significance in cellular processes.
Membrane Dynamics: Pores and Aggregates
Discusses self-assembly dynamics in oil and lipid systems, focusing on aggregate growth and pore formation in lipid bilayers.
Cell Locomotion Mechanism
MOOC: Newton's mechanics
Delves into the mechanism of biological cell locomotion driven by actin filaments.
Vesicular Transport Mechanism
Explores the Nobel Prize-winning research on cell transport mechanisms and vesicle formation.
A microbiology primer
Covers microbiology basics, including cell structure, morphology, and energy generation in microbial cells.
Cytoskeleton and Tensegrity
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Explores the structure and functions of the cytoskeleton components for cell support and movement.
Proteins and Cell Structures
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Covers proteins' structures, cell functions, cytoskeleton, tissue engineering, and ligands.
Adhesion and Mechanotransduction
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Covers the structure and mechanics of mammalian cells, adhesion, mechanosensation, mechanotransduction, Rho signaling, actin dynamics, specialized actin organizations, integrins, and nuclear mechanotransduction.
Cytoskeleton Imaging: Techniques and Components
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Explores immunofluorescence techniques, protein-based cytoskeleton components, and live cell imaging methods.
Tensegrity: Cellular Mechanics
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Delves into tensegrity in cellular mechanics, highlighting the influence of physical forces on cell structure and function.
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