Resonant chalcogenpyrylium nanotags demonstrate an exceptional surface enhanced Raman scattering (SERS) performance for use in SORS applications. Using surface enhanced spatially offset Raman spectroscopy (SESORS), nanotags modified with a chalcogenpyrylium dye were observed at concentrations as low as 1 pM through 5 mm of tissue. Calculated limits of detection suggest that these SERS nanotags can be detected at 104 fM using surface enhanced spatially offset resonance Raman scattering (SESORRS) demonstrating their potential for in vivo applications
Surface-enhanced (resonance) Raman spectroscopy (SE(R)RS) holds great promise for the in vivo detect...
Through utilizing the depth penetration capabilities of SESORS, multiplexed imaging and classificati...
Through utilizing the depth penetration capabilities of SESORS, multiplexed imaging and classificati...
Resonant chalcogenpyrylium nanotags demonstrate an exceptional surface enhanced Raman scattering (SE...
Resonant chalcogenpyrylium nanotags demonstrate an exceptional surface enhanced Raman scattering (SE...
In order to improve patient survival and reduce the amount of unnecessary and traumatic biopsies, no...
In order to improve patient survival and reduce the amount of unnecessary and traumatic biopsies, no...
In order to improve patient survival and reduce the amount of unnecessary and traumatic biopsies, no...
Surface-enhanced, spatially-offset Raman spectroscopy (SESORS) combines the remarkable enhancements ...
In order to improve patient survival and reduce the amount of unnecessary and traumatic biopsies, no...
This letter discusses the potential of deep Raman spectroscopy, surface enhanced spatially offset Ra...
The ability to probe through barriers and tissue non-invasively is an urgent unmet need in both the ...
The ability to probe through barriers and tissue non-invasively is an urgent unmet need in both the ...
The ability to probe through barriers and tissue non-invasively is an urgent unmet need in both the ...
Through utilizing the depth penetration capabilities of SESORS, multiplexed imaging and classificati...
Surface-enhanced (resonance) Raman spectroscopy (SE(R)RS) holds great promise for the in vivo detect...
Through utilizing the depth penetration capabilities of SESORS, multiplexed imaging and classificati...
Through utilizing the depth penetration capabilities of SESORS, multiplexed imaging and classificati...
Resonant chalcogenpyrylium nanotags demonstrate an exceptional surface enhanced Raman scattering (SE...
Resonant chalcogenpyrylium nanotags demonstrate an exceptional surface enhanced Raman scattering (SE...
In order to improve patient survival and reduce the amount of unnecessary and traumatic biopsies, no...
In order to improve patient survival and reduce the amount of unnecessary and traumatic biopsies, no...
In order to improve patient survival and reduce the amount of unnecessary and traumatic biopsies, no...
Surface-enhanced, spatially-offset Raman spectroscopy (SESORS) combines the remarkable enhancements ...
In order to improve patient survival and reduce the amount of unnecessary and traumatic biopsies, no...
This letter discusses the potential of deep Raman spectroscopy, surface enhanced spatially offset Ra...
The ability to probe through barriers and tissue non-invasively is an urgent unmet need in both the ...
The ability to probe through barriers and tissue non-invasively is an urgent unmet need in both the ...
The ability to probe through barriers and tissue non-invasively is an urgent unmet need in both the ...
Through utilizing the depth penetration capabilities of SESORS, multiplexed imaging and classificati...
Surface-enhanced (resonance) Raman spectroscopy (SE(R)RS) holds great promise for the in vivo detect...
Through utilizing the depth penetration capabilities of SESORS, multiplexed imaging and classificati...
Through utilizing the depth penetration capabilities of SESORS, multiplexed imaging and classificati...