Javascript must be enabled to continue!
Single bioaerosol characterizations based on optical tweezers
View through CrossRef
Bioaerosols, including bacteria, viruses, pollens, and fungal spores, play critical roles in global biosecurity, impacting human living environments and daily activities. The precise and in situ measurement of single bioaerosols represents a rigorous way to characterize their properties. Optical tweezers, which enable the stable trapping and precise control of single nanoparticles for in situ measurements and the study of their temporal evolution, have gained increasing attention in bioaerosol research. This Perspective systematically introduces the emerging field of single bioaerosol characterization based on optical tweezers. It gives a concise overview of the basic principle for trapping particles with different properties based on mechanical models of optical traps. It then reviews various applications of optical tweezers in the precise characterization of single bioaerosols, including their morphology, mass, chemical composition, and time evolution, through the spectral, spatial, or temporal analysis of optical scattering signals. This Perspective concludes by envisioning the future prospects for enhancing the practical application of bioaerosols. It suggests that future development directions should focus on enhancing trapping efficiency, increasing measurement throughput, and enhancing complex signal analysis capability. It also highlights their exciting potential in preventing disease transmission by identifying pathogens conveyed through bioaerosols.
AIP Publishing
Title: Single bioaerosol characterizations based on optical tweezers
Description:
Bioaerosols, including bacteria, viruses, pollens, and fungal spores, play critical roles in global biosecurity, impacting human living environments and daily activities.
The precise and in situ measurement of single bioaerosols represents a rigorous way to characterize their properties.
Optical tweezers, which enable the stable trapping and precise control of single nanoparticles for in situ measurements and the study of their temporal evolution, have gained increasing attention in bioaerosol research.
This Perspective systematically introduces the emerging field of single bioaerosol characterization based on optical tweezers.
It gives a concise overview of the basic principle for trapping particles with different properties based on mechanical models of optical traps.
It then reviews various applications of optical tweezers in the precise characterization of single bioaerosols, including their morphology, mass, chemical composition, and time evolution, through the spectral, spatial, or temporal analysis of optical scattering signals.
This Perspective concludes by envisioning the future prospects for enhancing the practical application of bioaerosols.
It suggests that future development directions should focus on enhancing trapping efficiency, increasing measurement throughput, and enhancing complex signal analysis capability.
It also highlights their exciting potential in preventing disease transmission by identifying pathogens conveyed through bioaerosols.
Related Results
Optical Fiber Tweezers: A Versatile Tool for Optical Trapping and Manipulation
Optical Fiber Tweezers: A Versatile Tool for Optical Trapping and Manipulation
Optical trapping is widely used in different areas, ranging from biomedical applications, to physics and material sciences. In recent years, optical fiber tweezers have attracted s...
Comparison of bioaerosol collection methods in the detection of airborne influenza virus
Comparison of bioaerosol collection methods in the detection of airborne influenza virus
<p>Detection of airborne influenza virus is needed in order to determine exposure and prevent and control infections. Few researchers have successfully detected airborne infl...
Lysine-selective molecular tweezers are cell penetrant and concentrate in lysosomes
Lysine-selective molecular tweezers are cell penetrant and concentrate in lysosomes
AbstractLysine-selective molecular tweezers are promising drug candidates against proteinopathies, viral infection, and bacterial biofilm. Despite demonstration of their efficacy i...
Opto-thermoelectric speckle tweezers
Opto-thermoelectric speckle tweezers
Abstract
Opto-thermoelectric tweezers present a new paradigm for optical trapping and manipulation of particles using low-power and simple optics. New real-life appl...
Diurnal and seasonal patterns of fluorescent bioaerosol and meteorological parameters in Bucharest, Romania
Diurnal and seasonal patterns of fluorescent bioaerosol and meteorological parameters in Bucharest, Romania
Pollen concentrations present in the atmosphere can raise serious human health problems, which is why they require studies with a higher precision and temporal resolution. The weat...
Optical tweezers in single-molecule experiments
Optical tweezers in single-molecule experiments
Abstract
In the last decades, optical tweezers have progressively emerged as a unique tool to investigate the biophysical world, allowing to manipulate and control fo...
Development of electro‐optical PCBs with polymer waveguides for high‐speed intra‐system interconnects
Development of electro‐optical PCBs with polymer waveguides for high‐speed intra‐system interconnects
PurposeThe purpose of this paper is to study fabrication of optical‐PCBs on panel scale boards in a conventional modern PCB process environment. It evaluates impacts on board desig...
Line tension of Langmuir monolayer phase boundaries determined with optical tweezers
Line tension of Langmuir monolayer phase boundaries determined with optical tweezers
The line tension λ of the liquid expanded (LE)/gas (G)-phase boundary of a methyl octadecanoate Langmuir monolayer at the air/water interface is measured using fluorescence microsc...


