Optical trapping has become an optimal choice for biological research at the microscale due to its non-invasive performance and accessibility for quantitative studies, especially on the forces involved in biological processes. However, reliable force measurements depend on the calibration of the optical traps, which is different for each experiment and hence requires high control of the local variables, especially of the trapped object geometry. Many biological samples have an elongated, rod-like shape, such as chromosomes, intracellular organelles (e.g., peroxisomes), membrane tubules, certain microalgae, and a wide variety of bacteria and parasites. This type of samples often requires several optical traps to stabilize and orient them in ...
Spanning all size levels, regulating biological forces and transport are fundamental life processes....
Optical trapping techniques have been used to investigate fundamental biological processes ranging f...
Advances in optical tweezers, coupled with the proliferation of two-photon polymerization systems, m...
Optical trapping has become an optimal choice for biological research at the microscale due to its n...
[eng] Mechanics is the branch of physics that studies movement and force, and plays an evident role...
Optical Tweezers (OT) are a light-based non-invasive tool that has played an important role during t...
After an intense development of optical tweezers as a biophysical tool during the last decades, quan...
Laser trapping with optical tweezers is a noninvasive manipulation technique and has received increa...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2016, Tutors:...
Optical trapping is a powerful tool in Life Science research and is becoming common place in many mi...
We demonstrate how optical tweezers combined with a three-dimensional force detection system and hig...
Many spectacular successes have resulted from the use of laser trapped particles as force-sensing pr...
Using absolutely calibrated optical tweezers, we make quantitative measurements of the motility forc...
Force measurement with an optical trap requires calibration of it. With a suitable detector, such as...
Optical Tweezers are a useful tool in many aspects of biology, including cell manipulation and micro...
Spanning all size levels, regulating biological forces and transport are fundamental life processes....
Optical trapping techniques have been used to investigate fundamental biological processes ranging f...
Advances in optical tweezers, coupled with the proliferation of two-photon polymerization systems, m...
Optical trapping has become an optimal choice for biological research at the microscale due to its n...
[eng] Mechanics is the branch of physics that studies movement and force, and plays an evident role...
Optical Tweezers (OT) are a light-based non-invasive tool that has played an important role during t...
After an intense development of optical tweezers as a biophysical tool during the last decades, quan...
Laser trapping with optical tweezers is a noninvasive manipulation technique and has received increa...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2016, Tutors:...
Optical trapping is a powerful tool in Life Science research and is becoming common place in many mi...
We demonstrate how optical tweezers combined with a three-dimensional force detection system and hig...
Many spectacular successes have resulted from the use of laser trapped particles as force-sensing pr...
Using absolutely calibrated optical tweezers, we make quantitative measurements of the motility forc...
Force measurement with an optical trap requires calibration of it. With a suitable detector, such as...
Optical Tweezers are a useful tool in many aspects of biology, including cell manipulation and micro...
Spanning all size levels, regulating biological forces and transport are fundamental life processes....
Optical trapping techniques have been used to investigate fundamental biological processes ranging f...
Advances in optical tweezers, coupled with the proliferation of two-photon polymerization systems, m...