3D printed porous tantalum loaded with quercetin-curcumin-piperine PLGA nanoparticles for bone defect repair. [PDF]
Yu S +6 more
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Histopathological modifications and biochemical defense responses of muskmelon (Cucumis Melo L.) to root-knot nematode (Meloidogyne incognita). [PDF]
Basavaraj V +4 more
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Ultrastructural Examination of the Fungus-To-Fungus Interactions of <i>Lecanicillium uredinophilum</i> and <i>Phakopsora pachyrhizi</i>. [PDF]
Mwelasi PP +5 more
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Coherent Driving of a Quantum System with Modulated Free-Space Electrons
Kolb M +5 more
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Mites of Honey Bees as Seen by Scanning Electron Microscope (SEM)
Delfinado-Baker, Mercedes D. +1 more
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SEM Nano: An Electron Wave Optical Simulation for the Scanning Electron Microscope
Microscopy and Microanalysis, 2022The simulation program “SEM Nano” is introduced to explain and visualize probe formation in field-emission scanning electron microscopes (SEMs). The program offers an easy and intuitive graphical user interface (GUI) to provide input in terms of understandable SEM parameters and visualization of the output.
Surya Kamal, Richard K. Hailstone
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SEM (Scanning Electron Microscope) Studies of Aortic Structure
Journal of Vascular Research, 1973Scanning electron microscopy reveals the following features of the microstructure of the rabbit aorta: endothelial folds, including luminal and interior structure, connecting ‘bridges’ between the folds and concentric layers of membranes in the cross-section.
G M, Chisolm, J L, Gainer, G E, Stoner
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Smart flexible microrobots for scanning electron microscope (SEM) applications
SPIE Proceedings, 2000In the scanning electron microscope (SEM), specially designed microrobots can act as a flexible assembly facility for hybrid microsystems, as probing devices for in-situ tests on IC structures or just as a helpful teleoperated tool for the SEM operator when examining samples.
Schmoeckel, Ferdinand, Fatikow, Sergej
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Primary atrophic rhinitis: a scanning electron microscopic (SEM) study
The Journal of Laryngology & Otology, 1980The surface features of atrophic rhinitis are shown and it is suggested that these explain the majority of symptoms. It seems clear that any lesion preventing the formation or maturation of large numbers of motile cilia, or the production of mucus capable of forming confluent sheets suitable for continuous propulsion, may cause atrophic rhinitis.
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