We report a novel technique for long-term parallel three dimensional (3D)-tracking of gold nanorods in live cells with nanometer resolution. Gold nanorods feature a strong plasmon-enhanced two-photon luminescence, can be easily functionalized, and have been shown to be nontoxic. These properties make gold nanorods very suitable for in vivo two-photon luminescence microscopy. By rapid multifocal scanning, we combine the advantages of 3D molecular tracking methods using wide-field imaging with the advantages of two-photon microscopy. Isolated gold nanorods can be localized with a resolution of 4 nm in the <i>xy</i>-plane and 8 nm in the <i>z</i>-direction. The polarization-dependence of the two-photon luminescence signal can be used to resolv...
Gold nanorods (AuNRs) have shown great potential as bio-compatible imaging probes in various biologi...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
We present a powerful technique to fully characterize individual gold nanorods by using confocal mic...
We report a novel technique for long-term parallel three dimensional (3D)-tracking of gold nanorods ...
Gold nanorods excited at 830 nm on a far-field laser-scanning microscope produced strong two-photon ...
Nanomaterials can be synthesized from a wide range of material systems in numerous morphologies, cre...
Two-Photon luminescence (TPL) from gold nanorods shows considerable potential in biological imaging ...
Gold nanoparticles are quite popular as contrast agents for optical microscopy. Their strong linear ...
Gold (Au) nanoparticles, particularly nanorods, are actively employed as imaging probes because of t...
epithelial carcinoma, surface plasmon resonance ABSTACT Two-photon imaging is a potentially powerful...
Gold nanorods are biocompatible nanoparticles that present an excellent two-photon signal that can...
Two-photon luminescence (TPL) from gold nanorods shows considerable potential in biological imaging....
Recent advances in two-photon excited photoluminescence of plasmonic gold nanorods have greatly expa...
Gold nanorods (AuNRs) are eligible for a variety of biological applications including cell imaging, ...
Two-photon microscopy powered by a femtosecond laser is a promising tool for luminescence imaging an...
Gold nanorods (AuNRs) have shown great potential as bio-compatible imaging probes in various biologi...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
We present a powerful technique to fully characterize individual gold nanorods by using confocal mic...
We report a novel technique for long-term parallel three dimensional (3D)-tracking of gold nanorods ...
Gold nanorods excited at 830 nm on a far-field laser-scanning microscope produced strong two-photon ...
Nanomaterials can be synthesized from a wide range of material systems in numerous morphologies, cre...
Two-Photon luminescence (TPL) from gold nanorods shows considerable potential in biological imaging ...
Gold nanoparticles are quite popular as contrast agents for optical microscopy. Their strong linear ...
Gold (Au) nanoparticles, particularly nanorods, are actively employed as imaging probes because of t...
epithelial carcinoma, surface plasmon resonance ABSTACT Two-photon imaging is a potentially powerful...
Gold nanorods are biocompatible nanoparticles that present an excellent two-photon signal that can...
Two-photon luminescence (TPL) from gold nanorods shows considerable potential in biological imaging....
Recent advances in two-photon excited photoluminescence of plasmonic gold nanorods have greatly expa...
Gold nanorods (AuNRs) are eligible for a variety of biological applications including cell imaging, ...
Two-photon microscopy powered by a femtosecond laser is a promising tool for luminescence imaging an...
Gold nanorods (AuNRs) have shown great potential as bio-compatible imaging probes in various biologi...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
We present a powerful technique to fully characterize individual gold nanorods by using confocal mic...