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The physical realization of artificial neurons is a critical challenge for energy‐efficient neuromorphic computing. This review presents a comprehensive analysis of the evolution of artificial neuron implementations from conventional CMOS to emerging post‐CMOS technologies.
Kannan Udaya Mohanan +4 more
wiley +1 more source
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Magnetic separation in biotechnology
Biotechnology Advances, 1984New developments in magnetic labelling techniques for cells and microspheres have extended the useful range of magnetic separation, particularly high gradient magnetic separation, into biotechnical areas. The basic magnetic principles involved are reviewed and representative samples of labelling techniques and results drawn from the past three years ...
E H, Dunlop, W A, Feiler, M J, Mattione
exaly +3 more sources
Magnetic separations in biotechnology
Biotechnology Advances, 2013Magnetic separations are probably one of the most versatile separation processes in biotechnology as they are able to purify cells, viruses, proteins and nucleic acids directly from crude samples. The fast and gentle process in combination with its easy scale-up and automation provide unique advantages over other separation techniques.
L, Borlido +3 more
openaire +2 more sources
Magnetic separation of nanoparticles
IEEE Transactions on Magnetics, 1998Magnetic particles in the nanometer size range can be captured by sufficiently large magnetic forces in competition with thermal diffusion. This paper reports on the results of applying two types of magnetic separation, matrix and continuous, to particles in the nanometer size range.
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Nature, 1989
Originally developed for immunoassays, magnetic beads in combination with streptavidin-biotin technology have demonstrated their power for separating DNA and RNA.
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Originally developed for immunoassays, magnetic beads in combination with streptavidin-biotin technology have demonstrated their power for separating DNA and RNA.
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[Separation of magnetic bacteria by using a magnetic separator].
Sheng wu gong cheng xue bao = Chinese journal of biotechnology, 2011A magnetic separator was used to separate magnetic bacteria based on their magnetotactic characteristics. Acidithiobacillus ferrooxidans, a bacterium that could synthesize intra-cellular nanometer magnetic particles, was investigated as an example. Strong magnetic and weak magnetic cells were separated and collected.
Xinxing, Liu +4 more
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Magnetic materials and magnetic separation of dyes from aqueous solutions: a review
Environmental Chemistry Letters, 2021Arunachalam Thirunavukkarasu +2 more
exaly

