Potential applications are increasingly shown in the literature enabled by the advent of scaffolded DNA origami [1]. We employ a data-driven approach, applying machine learning to a curated a database collected from Nucleic Acid Origami literature. We expect to aid the design of well-formed nucleic acid origami through machine learning informed lab protocols and algorithm improved sequence design. This will lead to improved application of nucleic acid origami, with increased yield, scale and complexity. [1] Paul W. K. Rothemund. Folding DNA to create nanoscale shapes and patterns. Nature, 440(7082):297–302, March 2006
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
In this project a suggested idea for an abstraction of simplex DNA was used to simulate DNA behavior...
DNA origami is a robust assembly technique that folds a single-stranded DNA template into a target s...
Nucleic Acid Origami [1] are 2D or 3D nanostructures, comprised of biological or synthetically deriv...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
Nucleic acid nanotechnology exploits the programmable molecular recognition properties of natural an...
| openaire: EC/H2020/101030869/EU//ROBOT Sensing Funding Information: This work was supported by the...
DNA origami is a promising novel biotechnology because DNA is a small, stable, and dense biomaterial...
Abstract — The generation of arbitrary patterns and shapes at very small scales is at the heart of o...
This thesis describes my investigations into the principles underlying self-assembly of DNA origami ...
DNA origami is a robust technique for the production of DNA whereby a long scaffold strand is folded...
Machine learning and computational algorithms used to see patterns within collected data are becomin...
DNA origami is a robust assembly technique that folds a single-stranded DNA template into a target s...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...
VK: Orponen, P.; NC; TRITONIt was suggested1 more than thirty years ago that Watson–Crick base pairi...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
In this project a suggested idea for an abstraction of simplex DNA was used to simulate DNA behavior...
DNA origami is a robust assembly technique that folds a single-stranded DNA template into a target s...
Nucleic Acid Origami [1] are 2D or 3D nanostructures, comprised of biological or synthetically deriv...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
Nucleic acid nanotechnology exploits the programmable molecular recognition properties of natural an...
| openaire: EC/H2020/101030869/EU//ROBOT Sensing Funding Information: This work was supported by the...
DNA origami is a promising novel biotechnology because DNA is a small, stable, and dense biomaterial...
Abstract — The generation of arbitrary patterns and shapes at very small scales is at the heart of o...
This thesis describes my investigations into the principles underlying self-assembly of DNA origami ...
DNA origami is a robust technique for the production of DNA whereby a long scaffold strand is folded...
Machine learning and computational algorithms used to see patterns within collected data are becomin...
DNA origami is a robust assembly technique that folds a single-stranded DNA template into a target s...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...
VK: Orponen, P.; NC; TRITONIt was suggested1 more than thirty years ago that Watson–Crick base pairi...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
In this project a suggested idea for an abstraction of simplex DNA was used to simulate DNA behavior...
DNA origami is a robust assembly technique that folds a single-stranded DNA template into a target s...