AbstractWe report statistical time-series analysis tools providing improvements in the rapid, precision extraction of discrete state dynamics from time traces of experimental observations of molecular machines. By building physical knowledge and statistical innovations into analysis tools, we provide techniques for estimating discrete state transitions buried in highly correlated molecular noise. We demonstrate the effectiveness of our approach on simulated and real examples of steplike rotation of the bacterial flagellar motor and the F1-ATPase enzyme. We show that our method can clearly identify molecular steps, periodicities and cascaded processes that are too weak for existing algorithms to detect, and can do so much faster than existin...
ABSTRACT Fluctuations in biochemical processes can provide insights into the underlying kinetics bey...
Molecular motors play important roles within a biological cell, performing functions such as intrace...
Optical microscopes and nanoscale probes (AFM, optical tweezers, etc.) afford researchers tools capa...
We report statistical time-series analysis tools providing improvements in the rapid, precision extr...
AbstractWe report statistical time-series analysis tools providing improvements in the rapid, precis...
AbstractProcessive molecular motors, such as kinesin, myosin, or dynein, convert chemical energy int...
Molecular motors convert chemical or electrical energy into mechanical displacement, either linear o...
Nature has evolved many molecular machines such as kinesin, myosin, and the rotary flagellar motor p...
Nature has evolved many molecular machines such as kinesin, myosin, and the rotary flagellar motor p...
AbstractMolecular motors, such as kinesin, myosin, or dynein, convert chemical energy into mechanica...
Abstract. We present a systematic method of analysis of experiments performed with single motors pro...
AbstractFluctuations in biochemical processes can provide insights into the underlying kinetics beyo...
Molecular motors play important roles within a biological cell, performing functions such as intrace...
We report a free-energy-based algorithm to estimate the step size of processive molecular motors fro...
Single-molecule methods were developed with the objective to obtain kinetic information of biomolecu...
ABSTRACT Fluctuations in biochemical processes can provide insights into the underlying kinetics bey...
Molecular motors play important roles within a biological cell, performing functions such as intrace...
Optical microscopes and nanoscale probes (AFM, optical tweezers, etc.) afford researchers tools capa...
We report statistical time-series analysis tools providing improvements in the rapid, precision extr...
AbstractWe report statistical time-series analysis tools providing improvements in the rapid, precis...
AbstractProcessive molecular motors, such as kinesin, myosin, or dynein, convert chemical energy int...
Molecular motors convert chemical or electrical energy into mechanical displacement, either linear o...
Nature has evolved many molecular machines such as kinesin, myosin, and the rotary flagellar motor p...
Nature has evolved many molecular machines such as kinesin, myosin, and the rotary flagellar motor p...
AbstractMolecular motors, such as kinesin, myosin, or dynein, convert chemical energy into mechanica...
Abstract. We present a systematic method of analysis of experiments performed with single motors pro...
AbstractFluctuations in biochemical processes can provide insights into the underlying kinetics beyo...
Molecular motors play important roles within a biological cell, performing functions such as intrace...
We report a free-energy-based algorithm to estimate the step size of processive molecular motors fro...
Single-molecule methods were developed with the objective to obtain kinetic information of biomolecu...
ABSTRACT Fluctuations in biochemical processes can provide insights into the underlying kinetics bey...
Molecular motors play important roles within a biological cell, performing functions such as intrace...
Optical microscopes and nanoscale probes (AFM, optical tweezers, etc.) afford researchers tools capa...