Terahertz Time Domain Spectroscopy has been used to investigate 0.2 to 2.2 terahertz (THz) transmission responses of Bacillus spores and their related chemical components. Whilst no THz signatures could be clearly associated with either sporulated cells or their chief chemical components, differing degrees of signal attenuation and frequency-dependent light scattering were observed depending on spore composition and culture media. The observed monotonic increase in absorption by spores over this THz spectral domain is mainly from Mie scattering and also from remnant water bound to the spores
The terahertz (THz) region offers a multitude of possibilities for new diagnostic techniques in biol...
Many functionally important structural changes in proteins proceed along the direction of their lowe...
In biology, molecules and macromolecules such as sugars, proteins, DNA, RNA, etc., are of utmost imp...
This theoretical effort is the first to explore the possible hypothesis that terahertz optical activ...
Fusarium and late blight (fungal diseases of cereals and potatoes) are among the main causes of crop...
This report presents THz spectroscopy as a valuable tool to discover unique signatures in a variety ...
Author Institution: Research Laboratory, Army Research Office; Research Laboratory, University of Ca...
Current detection and identification of micro-organisms is based on either rather unspecific rapid m...
Terahertz spectroscopy is able to probe several aspects of biological systems. Most well known is it...
Here we present an original study of the effect of hydration on THz absorption signatures in biomole...
The antibacterial surfaces presented can be one of the solutions for lowering the risk of pathogen o...
We apply terahertz time-domain spectroscopy for the quantitative non-invasive assessment of the wate...
Abstract The noninvasive measurement of water content in biological samples utilizing the terahertz...
© 2003 COPYRIGHT SPIE--The International Society for Optical Engineering. Downloading of the abstrac...
Terahertz (THz) imaging is a widely used technique in the study and detection of many chemicals and ...
The terahertz (THz) region offers a multitude of possibilities for new diagnostic techniques in biol...
Many functionally important structural changes in proteins proceed along the direction of their lowe...
In biology, molecules and macromolecules such as sugars, proteins, DNA, RNA, etc., are of utmost imp...
This theoretical effort is the first to explore the possible hypothesis that terahertz optical activ...
Fusarium and late blight (fungal diseases of cereals and potatoes) are among the main causes of crop...
This report presents THz spectroscopy as a valuable tool to discover unique signatures in a variety ...
Author Institution: Research Laboratory, Army Research Office; Research Laboratory, University of Ca...
Current detection and identification of micro-organisms is based on either rather unspecific rapid m...
Terahertz spectroscopy is able to probe several aspects of biological systems. Most well known is it...
Here we present an original study of the effect of hydration on THz absorption signatures in biomole...
The antibacterial surfaces presented can be one of the solutions for lowering the risk of pathogen o...
We apply terahertz time-domain spectroscopy for the quantitative non-invasive assessment of the wate...
Abstract The noninvasive measurement of water content in biological samples utilizing the terahertz...
© 2003 COPYRIGHT SPIE--The International Society for Optical Engineering. Downloading of the abstrac...
Terahertz (THz) imaging is a widely used technique in the study and detection of many chemicals and ...
The terahertz (THz) region offers a multitude of possibilities for new diagnostic techniques in biol...
Many functionally important structural changes in proteins proceed along the direction of their lowe...
In biology, molecules and macromolecules such as sugars, proteins, DNA, RNA, etc., are of utmost imp...