Little Known Facts About cees dekker.
Little Known Facts About cees dekker.
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Rotary movement of DNA rotors on nanopores. Leading row: Uncooked video clip from the Cy5 channel of each and every rotor. Middle row: corresponding one-particle localization benefits of each finishes in the DNA rotors. The position of the present frame is marked as orange and blue dots, as well as trajectory of the 10 frames before The present body is proven as good traces.
1996, very first mesoscopic demand density waves devices; and very first electrical measurements on only one metal nanocluster involving nanoelectrodes
Multicolor imaging with the bacterial nucleoid and mobile division proteins with blue, orange, and close to-infrared fluorescent proteins
A rhythmically pulsing leaf-spring DNA-origami nanoengine that drives a passive follower Mathias Centola
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SMC complexes can move Bodily roadblocks bigger than their ring dimension, indicating a nontopological mechanism for DNA loop extrusion
Numerous connected developments followed, in which our group proven diverse transistor variants for instance one-electron transistors at place temperature and intramolecular nanotube junctions that acted as rectifying diodes, and coupled many transistors into compact evidence-of-basic principle Digital circuits.
Example (one) of bending configurations in 3D simulations of DNA rods on nanopores. A portion of the membrane is demonstrated in gray, the rim on the pore is highlighted in red, plus a 3D rendering from the movement of the DNA rod is shown.
What if, in place of making use of conventional prime-down silicon electronics, transistors might be constructed from the bottom up using solitary natural molecules as being the switching features? This concept, which became The idea of today’s subject of molecular electronics, initial emerged during https://www.ceesdekker.net the seventies.
It had been for the duration of this era that Dekker performed investigate on magnetic spin systems and on noise in superconductors and semiconductors.
Tests pseudotopological and nontopological designs for SMC-driven DNA loop extrusion versus roadblock-traversal experiments
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2008, first observation of protein-coated DNA translocation through nanopores; fixed the origin of your electrophoretic drive on DNA in nanopores; learned a big velocity raise of microtubules in electrical fields; identified an anomalous electro-hydrodynamic orientation of microtubules; and settled the origin of noise in carbon nanotubes in liquid
Supercoiling-dependent DNA binding: quantitative modeling and applications to bulk and one-molecule experiments