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Related lectures (32)
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Principle of X-ray Detection: Scintillation
Explains the principle of x-ray detection using scintillation crystals and discusses the characteristics of materials like CdWO4 and NaI:Tl.
Photon Detectors: CCD vs CMOS
Compares CCD and CMOS photon detectors, highlighting their differences in operation and performance.
Diagnostic X-ray Imaging
Covers the history, technology, processes, and global challenges of diagnostic X-ray imaging in healthcare.
Lab-based Measuring Systems: Other Systems
Explores lab-based measuring systems in biomechanics, including ultrasound, magnetic sensors, X-ray imaging, and HTC Vive.
Synchrotron: Quantum Physics and X-ray Technology
Explores the history of quantum physics, the challenges in constructing x-ray sources, and the use of synchrotron radiation.
Electron Microscopy: EDS and ESEM
Explores EDS and ESEM principles, x-ray detection, ionization efficiency, Moseley's law, and ESEM sample environments.
X-ray Tomography Practical: Introduction
Covers practical aspects of X-ray tomography, including photon interaction and sample intensity measurement.
Principle of x-ray detection II: Photomultiplier Tubes
Explores the use of Photomultiplier Tubes for noiseless amplification and improving spatial resolution.
Basis of contrast for x-ray imaging
Explains linear attenuation coefficient, photon absorption, scattering, and typical attenuation coefficients for materials.
Large-area sensors: Devices and Applications
Explores the principles and applications of large-area sensors, including flat panel imagers and X-ray imaging.