Magnetic tweezers (MT) are a powerful tool for the study of DNA-enzyme interactions. Both the magnet-based manipulation and the camera-based detection used in MT are well suited for multiplexed measurements. Here, we systematically address challenges related to scaling of multiplexed magnetic tweezers (MMT) towards high levels of parallelization where large numbers of molecules (say 103) are addressed in the same amount of time required by a single-molecule measurement. We apply offline analysis of recorded images and show that this approach provides a scalable solution for parallel tracking of the xyz-positions of many beads simultaneously. We employ a large field-of-view imaging system to address many DNA-bead tethers in parallel. We mode...
AbstractMagnetic tweezers are a powerful tool to manipulate single DNA or RNA molecules and to study...
Abstract Background In the past two decades, methods have been developed to measure the mechanical p...
DNA is a complex biopolymer, support for the genetic information of most living organisms on Earth. ...
Magnetic tweezers (MT) are a powerful tool for the study of DNA-enzyme interactions. Both the magnet...
<div><p>Magnetic tweezers (MT) are a powerful tool for the study of DNA-enzyme interactions. Both th...
Magnetic tweezers (MT) are a powerful tool for the study of DNA-enzyme interactions. Both the magnet...
Magnetic tweezers (MT) are a powerful tool for the study of DNA-enzyme interactions. Both the magnet...
Single-molecule force-spectroscopy methods such as magnetic and optical tweezers have emerged as pow...
The double helical nature of DNA links many cellular processes such as DNA replication, transcriptio...
Recent advances in high-throughput single-molecule magnetic tweezers have paved the way for obtainin...
We report the development of a magnetic tweezers that can be used to micromanipulate single DNA mole...
The double helical nature of DNA links many cellular processes such as DNA replication, transcriptio...
We report the development of a magnetic tweezers that can be used to micromanipulate single DNA mole...
Recent advances in high-throughput single-molecule magnetic tweezers have paved the way for obtainin...
This work focuses on two single-molecule techniques: Magnetic Tweezers and Tethered Particle Motion ...
AbstractMagnetic tweezers are a powerful tool to manipulate single DNA or RNA molecules and to study...
Abstract Background In the past two decades, methods have been developed to measure the mechanical p...
DNA is a complex biopolymer, support for the genetic information of most living organisms on Earth. ...
Magnetic tweezers (MT) are a powerful tool for the study of DNA-enzyme interactions. Both the magnet...
<div><p>Magnetic tweezers (MT) are a powerful tool for the study of DNA-enzyme interactions. Both th...
Magnetic tweezers (MT) are a powerful tool for the study of DNA-enzyme interactions. Both the magnet...
Magnetic tweezers (MT) are a powerful tool for the study of DNA-enzyme interactions. Both the magnet...
Single-molecule force-spectroscopy methods such as magnetic and optical tweezers have emerged as pow...
The double helical nature of DNA links many cellular processes such as DNA replication, transcriptio...
Recent advances in high-throughput single-molecule magnetic tweezers have paved the way for obtainin...
We report the development of a magnetic tweezers that can be used to micromanipulate single DNA mole...
The double helical nature of DNA links many cellular processes such as DNA replication, transcriptio...
We report the development of a magnetic tweezers that can be used to micromanipulate single DNA mole...
Recent advances in high-throughput single-molecule magnetic tweezers have paved the way for obtainin...
This work focuses on two single-molecule techniques: Magnetic Tweezers and Tethered Particle Motion ...
AbstractMagnetic tweezers are a powerful tool to manipulate single DNA or RNA molecules and to study...
Abstract Background In the past two decades, methods have been developed to measure the mechanical p...
DNA is a complex biopolymer, support for the genetic information of most living organisms on Earth. ...