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Related lectures (32)
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Super Resolution Microscopy: STED Method
Explores the principles and applications of Super Resolution Microscopy using the STED method for achieving high-resolution imaging.
Micro-laser materials processing: Light-Materials Interaction
Explores light-materials interaction in micro-laser processing, covering fluorescein, tissue ablation, scattering, and multiphoton absorption.
Flow Cytometry: Applications and Techniques
Explores the applications and techniques of flow cytometry, including cell characterization and sorting methods.
Optical filters: Understanding Fluorescence Microscopy
Explores optical filters in microscopy, including fluorescence principles, dye properties, and filter calibration.
Microscopy: Fluorescence & Resolution
Explores fluorescence imaging, resolution criteria, and super-resolved microscopy principles, including Nobel Prize achievements.
Introduction to Flow Cytometry
Covers the principles, components, applications, and new technologies of flow cytometry, including cancer immunity and immunology.
Fluorescence Microscopy: Illumination and Sources
Explores fluorescence microscopy principles, illumination techniques, and various light sources used in microscopy.
Cytoskeleton Imaging: Techniques and Components
Explores immunofluorescence techniques, protein-based cytoskeleton components, and live cell imaging methods.
DNA separation: Methods and Techniques
Explores DNA separation methods, including gel and capillary electrophoresis, nanochannel sizing, and protein binding site observation.
DNA Sequencing: Techniques and Applications
Explores the evolution of DNA sequencing techniques, from shotgun sequencing to real-time PCR, emphasizing the importance of direct RNA sequencing and the challenges of repetitive DNA sequences.