Plasmon-resonant gold nanorods (GNRs) can serve as imaging agents for spectroscopic optical coherence tomography (SOCT). The aspect ratio of the GNRs is adjusted for maximum absorption in the far red to create a partial spectral overlap with the short-wavelength edge of the near-infrared SOCT imaging band. The spectroscopic absorption profile of the GNRs is incorporated into a depth-resolved algorithm for mapping the relative GNR density within OCT images. This technique enables us to image GNR distributions in excised human breast carcinomas, demonstrating their potential as OCT contrast agents in heterogeneous, highly scattering tissues
This chapter describes the application of gold nanorods for cancer diagnostics and photothermal ther...
For OCT imaging, enhancing contrast efficiency will lead to significant improvements in the detectio...
Gold nanoparticles are particularly attractive agents in medical imaging and laser therapy due to th...
Plasmon-resonant gold nanorods (GNRs) can serve as imaging agents for spectroscopic optical coherenc...
A new variety of nanoparticles showing unique and characteristic optical properties, appeals for its...
Plasmon-resonant gold nanorods are demonstrated as low back-scattering albedo contrast agents for op...
Near infrared tuned gold nanoshells have been developed to enhance the contrast of optical coherence...
We present a novel one-step flow process to synthesize biocompatible gold nanorods with tunable abso...
Optimizing contrast enhancement in optical coherence tomography (OCT) is essential for producing spe...
In this paper, we demonstrate an application of a non-invasive imaging modality, photothermal optica...
A key design consideration in developing contrast agents is obtaining distinct, multiple signal chan...
Optical coherence tomography (OCT) is a non-invasive interferometry imaging technique with micrometr...
Gold nanorods (NRs) have plasmon-resonant absorption and scattering in the near-infrared (NIR) regio...
Optical Coherence Tomography (OCT) is an imaging tool that performs micron-resolution, non-invasive,...
Nanotechnology has recently emerged as a powerful modality in many biomedical applications. In parti...
This chapter describes the application of gold nanorods for cancer diagnostics and photothermal ther...
For OCT imaging, enhancing contrast efficiency will lead to significant improvements in the detectio...
Gold nanoparticles are particularly attractive agents in medical imaging and laser therapy due to th...
Plasmon-resonant gold nanorods (GNRs) can serve as imaging agents for spectroscopic optical coherenc...
A new variety of nanoparticles showing unique and characteristic optical properties, appeals for its...
Plasmon-resonant gold nanorods are demonstrated as low back-scattering albedo contrast agents for op...
Near infrared tuned gold nanoshells have been developed to enhance the contrast of optical coherence...
We present a novel one-step flow process to synthesize biocompatible gold nanorods with tunable abso...
Optimizing contrast enhancement in optical coherence tomography (OCT) is essential for producing spe...
In this paper, we demonstrate an application of a non-invasive imaging modality, photothermal optica...
A key design consideration in developing contrast agents is obtaining distinct, multiple signal chan...
Optical coherence tomography (OCT) is a non-invasive interferometry imaging technique with micrometr...
Gold nanorods (NRs) have plasmon-resonant absorption and scattering in the near-infrared (NIR) regio...
Optical Coherence Tomography (OCT) is an imaging tool that performs micron-resolution, non-invasive,...
Nanotechnology has recently emerged as a powerful modality in many biomedical applications. In parti...
This chapter describes the application of gold nanorods for cancer diagnostics and photothermal ther...
For OCT imaging, enhancing contrast efficiency will lead to significant improvements in the detectio...
Gold nanoparticles are particularly attractive agents in medical imaging and laser therapy due to th...