Contact Oleg, search articles and posts on X, monitor coverage, and track replies from one place.
Learn more about Muck RackOleg V. Gradov is the Senior Researcher at the Semenov Institute of Chemical Physics (Russian Academy of Sciences, Moscow), working in the Department of Chemical and Biological Processes Dynamics (CHEMBIO). He is the author of 200 journal papers. His recent grants include: “Development of the novel physical methods for complex biomedical diagnostics based on position-sensitive mapping with the angular resolution at the tissue and cellular levels using analytical labs-on-a-chip” (RFBR 16-32-0091…
Gradov, Oleg V., and Margaret A. Gradova. "Can graphene bilayers be the membrane mimetic materials?" Ion channels" in graphene-based nanostructures." arXiv preprint arXiv:1807.10139 (2018).
Gradov, O. V. (2018). Multi-angle goniometric computer-assisted lab-on-a-chip reading system stage for vacuum-gas chambers based on analytical scanning electron microscopy platform (goniometric clem chambers). Comput. nanotech, (4):9–16.
Gradov, O. V. and Gradova, M. A. (2019). Chapter 03: “MS-patch-clamp” or the possibility of mass spectrometry hybridization with patch-clamp setups for single cell metabolomics and channelomics". In: Top 10 Contributions on Biochemistry: 2nd Edition, Berlin.
Gradov, O. V., Krukowskikh, V. V., Nasirov, P. A., and Jablokov, A. G. (2018). Multi-axis goniometric 3d-visualization of vector diagrams of optical characteristics of dispersed and biological structures on a chip using different laser scanning regimes and trajectories. Photonics Russia, 4(72):448–458. DOI: 10.22184/1993-7296.2018.72.4.448.458
Gradov, Oleg V., and Arthur G. Jablokov. "Multiparametric qualimetric microsurgical scanning chip-lancet model: theoretical metrological and biomedical considerations." arXiv preprint arXiv:1807.10642 (2018).
Gradov, O. V., et al. "A simple device for microinjections, manipulations and measurements using an electromorphological chip under microinterferometric control of the interface and membrane processes at the thickness range of 5-1000 nm at different angles." arXiv preprint arXiv:1807.10137 (2018).
The Net Advance of Physics: MICROSCOPY : MICROSCOPY: Type: ELECTRON: Methods of electron microscopy of biological and abiogenic structures in artificial gas atmospheres by O. V. Gradov and M. A. Gradova [Surface Engineering and Applied Electrochemistry 52, 117 (2018)] URL: http://web.mit.edu/redingtn/www/netadv/Xmicroscop.html
The Net Advance of Physics: MICROSCOPY : MICROSCOPY: Type: CRYO-ELECTRON: Cryoelectron Microscopy as a Functional Instrument for Systems Biology, Structural Analysis & Experimental Manipulations with Living Cells by Oleg V. Gradov and Margaret A. Gradova [Problems of Cryobiology and Cryomedicine 24, 193 (2014)] URL: http://web.mit.edu/redingtn/www/netadv/Xmicroscop.html