Optical tweezers allow for noninvasive manipulation of subcellular compartments to study their physical interactions and attachments. By measuring (delay of) displacements, (semi)quantitative force measurements within a living cell can be performed. In this chapter, we provide practical tips for setting up such experiments paying special attention to the technical considerations for integrating optical tweezers into a confocal microscope. Next, we describe experimental approaches we have taken to trap intracellular structures in plant cells.</p
Since the time of their introduction, optical tweezers (OTs) have grown to be a powerful tool in the...
AbstractThe contact-free, non-invasive manipulation provided by optical trapping enables us not only...
In interphase plant cells, the actin cytoskeleton is essential for intracellular transport and organ...
Optical tweezers allow for noninvasive manipulation of subcellular compartments to study their physi...
Optical tweezers allow noninvasive manipulation of subcellular compartments to study their physical ...
Optical tweezers allow noninvasive manipulation of subcellular compartments to study their physical ...
Optical tweezers allow noninvasive manipulation of subcellular compartments to study their physical ...
Laser tweezers, often known as optical tweezers or optical traps, permit the capturing and micromani...
We have developed a system combining an optical tweezers and a confocal microscope for the study of ...
Optical tweezers has enabled application and measurement of forces in a highly quantitative way and ...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
Laser trapping with optical tweezers is a noninvasive manipulation technique and has received increa...
We use optical tweezers to investigate processes happening inside living cells. In a previous study,...
A technique of displacement and force measurements with a photodiode quadrant detector in an optical...
Since the time of their introduction, optical tweezers (OTs) have grown to be a powerful tool in the...
AbstractThe contact-free, non-invasive manipulation provided by optical trapping enables us not only...
In interphase plant cells, the actin cytoskeleton is essential for intracellular transport and organ...
Optical tweezers allow for noninvasive manipulation of subcellular compartments to study their physi...
Optical tweezers allow noninvasive manipulation of subcellular compartments to study their physical ...
Optical tweezers allow noninvasive manipulation of subcellular compartments to study their physical ...
Optical tweezers allow noninvasive manipulation of subcellular compartments to study their physical ...
Laser tweezers, often known as optical tweezers or optical traps, permit the capturing and micromani...
We have developed a system combining an optical tweezers and a confocal microscope for the study of ...
Optical tweezers has enabled application and measurement of forces in a highly quantitative way and ...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
Laser trapping with optical tweezers is a noninvasive manipulation technique and has received increa...
We use optical tweezers to investigate processes happening inside living cells. In a previous study,...
A technique of displacement and force measurements with a photodiode quadrant detector in an optical...
Since the time of their introduction, optical tweezers (OTs) have grown to be a powerful tool in the...
AbstractThe contact-free, non-invasive manipulation provided by optical trapping enables us not only...
In interphase plant cells, the actin cytoskeleton is essential for intracellular transport and organ...