This study examines the development of an automated particle tracking algorithm to predict the hindered Brownian movement of fluorescent nanoparticles within an evanescent wave field created using total internal reflection fluorescent microscopy. The two-dimensional motion of the fluorescent nanoparticles was tracked, with sub-pixel resolution, by fitting the intensity distribution of the particles to a known Gaussian distribution, thus providing the particle center within a single pixel. Spherical yellow-green polystyrene nanoparticles (200, 500, and 1000 nm in diameter) were suspended in deionized water (control), 10 wt%d-glucose, and 10 wt% glycerol solutions, with 1 mM of NaCl added to each. The motion of tracked nanoparticles was compa...
Biological nanoparticles (BNPs) are of high interest due to their key role in various biological pro...
The nature inside bacterial cell has traditionally been viewed as an environment where intermolecula...
The last decade has seen substantial advances in single-molecule tracking methods with nano-metre le...
This study examines the development of an automated particle tracking algorithm to predict the hinde...
This study develops an automated analysis tool by combining total internal reflection fluorescence m...
Total internal reflection fluorescence microscopy (TIRFM) based on the evanescent wave provides a po...
A novel three-dimensional tracking technique of nanoparticles in nanometer spatial resolution using ...
The behavior of nanoparticle motion has a great influence on gas-liquid mass transfer. However, it h...
A three-dimensional nanoparticle tracking technique using ratiometric total internal reflection fluo...
Intracellular vesicles, comprised of protein clusters, were individually tracked inside human brain ...
Micron sized particle exhibits Brownian Motion (BM) in fluidic material. The BM of the particle char...
With the rapid expansion of microfluidics in biomedical research, there is a need to develop quantit...
We present a novel optical technique for three-dimensional tracking of single fluorescent particles ...
International audienceThe goal of this work is to make progress in the domain of near-wall velocimet...
Lipid vesicles immobilized via molecular linkers at a solid support represent a convenient platform ...
Biological nanoparticles (BNPs) are of high interest due to their key role in various biological pro...
The nature inside bacterial cell has traditionally been viewed as an environment where intermolecula...
The last decade has seen substantial advances in single-molecule tracking methods with nano-metre le...
This study examines the development of an automated particle tracking algorithm to predict the hinde...
This study develops an automated analysis tool by combining total internal reflection fluorescence m...
Total internal reflection fluorescence microscopy (TIRFM) based on the evanescent wave provides a po...
A novel three-dimensional tracking technique of nanoparticles in nanometer spatial resolution using ...
The behavior of nanoparticle motion has a great influence on gas-liquid mass transfer. However, it h...
A three-dimensional nanoparticle tracking technique using ratiometric total internal reflection fluo...
Intracellular vesicles, comprised of protein clusters, were individually tracked inside human brain ...
Micron sized particle exhibits Brownian Motion (BM) in fluidic material. The BM of the particle char...
With the rapid expansion of microfluidics in biomedical research, there is a need to develop quantit...
We present a novel optical technique for three-dimensional tracking of single fluorescent particles ...
International audienceThe goal of this work is to make progress in the domain of near-wall velocimet...
Lipid vesicles immobilized via molecular linkers at a solid support represent a convenient platform ...
Biological nanoparticles (BNPs) are of high interest due to their key role in various biological pro...
The nature inside bacterial cell has traditionally been viewed as an environment where intermolecula...
The last decade has seen substantial advances in single-molecule tracking methods with nano-metre le...