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Search Results to Ekaterina Galanzha

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One or more keywords matched the following properties of Galanzha, Ekaterina

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overview My career has been focusing on the health-oriented research in fields of cancer, single circulating cell analysis and lymphology. However, I also pioneered bioengineering approaches (e.g., photoswitchable flow cytometry in vivo) and novel contrast agents (e.g., bioinspired and natural magnetic nanoparticles as photoacoustic contrast agents). My educational background in medicine and interdisciplinary expertise in experimental medicine, single cell analysis, optical imaging, photoacoustics, biomedical applications of lasers and nanoparticles makes it possible for me to find creative and, sometimes, non-traditional solutions of challenging biomedical and technical problems. I am proficient in the advanced using of modern technologies for development of novel directions, tests and assays to improve diagnosis and therapy of human diseases.

One or more keywords matched the following items that are connected to Galanzha, Ekaterina

Item TypeName
Academic Article In vivo multispectral photoacoustic and photothermal flow cytometry with multicolor dyes: a potential for real-time assessment of circulation, dye-cell interaction, and blood volume.
Academic Article Quantum dots as multimodal photoacoustic and photothermal contrast agents.
Academic Article In vivo plant flow cytometry: a first proof-of-concept.
Academic Article In vivo photoacoustic flow cytometry for monitoring of circulating single cancer cells and contrast agents.
Academic Article Golden carbon nanotubes as multimodal photoacoustic and photothermal high-contrast molecular agents.
Academic Article Photoacoustic flow cytometry: principle and application for real-time detection of circulating single nanoparticles, pathogens, and contrast dyes in vivo.
Academic Article Advanced contrast nanoagents for photoacoustic molecular imaging, cytometry, blood test and photothermal theranostics.
Concept Contrast Media
Academic Article Photoacoustic and photothermal cytometry using photoswitchable proteins and nanoparticles with ultrasharp resonances.
Academic Article Spaser as a biological probe.
Academic Article Bioinspired magnetic nanoparticles as multimodal photoacoustic, photothermal and photomechanical contrast agents.
Grant Integrated Photothermal Nanoprobes
Grant Multifunctional nanotubes for in vivo detecting/purging circulating cancer cells
Grant Photoswitchable nanoprobes for in vivo flow cytometry

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