In the past decades, numerous single-molecule techniques have been developed to investigate individual bio-molecules and cellular machines. While a lot is known about the structure, localization, and interaction partners of such molecules, much less is known about their mechanical properties. To investigate the weak, non-covalent interactions that give rise to the mechanics of and between proteins, an instrument capable of resolving sub-nanometer displacements and piconewton forces is necessary. One of the most prominent biophysical tool with such capabilities is an optical tweezers. Optical tweezers is a non-invasive all-optical technique in which typically a dielectric microsphere is held by a tightly focused laser beam. This microsphere ...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
In the past three decades, the ability to optically manipulate biomolecules has spurred a new era of...
We have constructed an optical tweezer using two lasers (830 nm and 1064 nm) combined with micropipe...
In the past decades, numerous single-molecule techniques have been developed to investigate individu...
In the past decades, numerous single-molecule techniques have been developed to investigate individu...
Optical tweezers are not new to biological applications but building a tweezers which is versatile,...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Over the past two decades, single-molecule techniques have evolved into robust tools to study many f...
AbstractSingle molecule force spectroscopy methods, such as optical and magnetic tweezers and atomic...
Over the past two decades, single-molecule techniques have evolved into robust tools to study many f...
Over the past two decades, single-molecule techniques have evolved into robust tools to study many f...
Over the past two decades, single-molecule techniques have evolved into robust tools to study many f...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
In the past three decades, the ability to optically manipulate biomolecules has spurred a new era of...
We have constructed an optical tweezer using two lasers (830 nm and 1064 nm) combined with micropipe...
In the past decades, numerous single-molecule techniques have been developed to investigate individu...
In the past decades, numerous single-molecule techniques have been developed to investigate individu...
Optical tweezers are not new to biological applications but building a tweezers which is versatile,...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Over the past two decades, single-molecule techniques have evolved into robust tools to study many f...
AbstractSingle molecule force spectroscopy methods, such as optical and magnetic tweezers and atomic...
Over the past two decades, single-molecule techniques have evolved into robust tools to study many f...
Over the past two decades, single-molecule techniques have evolved into robust tools to study many f...
Over the past two decades, single-molecule techniques have evolved into robust tools to study many f...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
In the past three decades, the ability to optically manipulate biomolecules has spurred a new era of...
We have constructed an optical tweezer using two lasers (830 nm and 1064 nm) combined with micropipe...