Logo image
Multiscale optical imaging of rare-earth-doped nanocomposites in a small animal model
Journal article   Open access   Peer reviewed

Multiscale optical imaging of rare-earth-doped nanocomposites in a small animal model

Laura M. Higgins, Vidya Ganapathy, Harini Kantamneni, Xinyu Zhao, Yang Sheng, Mei-Chee Tan, Charles M. Roth, Richard E. Riman, Prabhas V. Moghe and Mark C. Pierce
Journal of biomedical optics, Vol.23(3), pp.030505-030505
01/03/2018
PMID: 29564865

Abstract

short-wave infrared imaging NIR-II imaging confocal microscopy multimodal imaging preclinical imaging
Rare-earth-doped nanocomposites have appealing optical properties for use as biomedical contrast agents, but few systems exist for imaging these materials. We describe the design and characterization of (i) a preclinical system for whole animal in vivo imaging and (ii) an integrated optical coherence tomography/confocal microscopy system for high-resolution imaging of ex vivo tissues. We demonstrate these systems by administering erbium-doped nanocomposites to a murine model of metastatic breast cancer. Short-wave infrared emissions were detected in vivo and in whole organ imaging ex vivo. Visible upconversion emissions and tissue autofluorescence were imaged in biopsy specimens, alongside optical coherence tomography imaging of tissue microstructure. We anticipate that this work will provide guidance for researchers seeking to image these nanomaterials across a wide range of biological models.
url
https://doi.org/10.1117/1.JBO.23.3.030505View
Published (Version of record) Open

Metrics

1 Record Views

Details

Logo image