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physics.bio-ph2019
Current enhancement in solid-state nanopores depends on three-dimensional DNA structure
Vivian Wang, Niklas Ermann, Ulrich F. Keyser
The translocation of double-stranded DNA through a solid-state nanopore may either decrease or increase the ionic current depending on the ionic concentration of the surrounding so…
physics.bio-ph2019
Bayesian inference for nanopore data analysis
Niklas Ermann, Kaikai Chen, Ulrich F. Keyser
Nanopore sensors detect the substructure of individual molecules from modulations in an ion current as molecules pass through them. In this work, we present the classification of f…
physics.bio-ph2018
Promoting single-file DNA translocations through nanopores using electroosmotic flow
Niklas Ermann, Nikita Hanikel, Vivian Wang +2
Double-stranded DNA translocates through sufficiently large nanopores either in a linear, single-file fashion or in a folded hairpin conformation when captured somewhere along its…