3-D Ultrasound Localization Microscopy for Identifying Microvascular Morphology Features of Tumor Angiogenesis at a Resolution Beyond the Diffraction Limit of Conventional Ultrasound

Lin, Fanglue; Shelton, Sarah E.; Espindola, David; Rojas, Juan D.; Pinton, Gianmarco; Dayton, Paul A.

Abstract

Angiogenesis has been known as a hallmark of solid tumor cancers for decades, yet ultrasound has been limited in its ability to detect the microvascular changes associated with malignancy. Here, we demonstrate the potential of 'ultrasound localization microscopy' applied volumetrically in combination with quantitative analysis of microvascular morphology, as an approach to overcome this limitation. This pilot study demonstrates our ability to image complex microvascular patterns associated with tumor angiogenesis in-vivo at a resolution of tens of microns - substantially better than the diffraction limit of traditional clinical ultrasound, yet using an 8 MHz clinical ultrasound probe. Furthermore, it is observed that data from healthy and tumor-bearing tissue exhibit significant differences in microvascular pattern and density. Results suggests that with continued development of these novel technologies, ultrasound has the potential to detect biomarkers of cancer based on the microvascular ` fingerprint' of malignant angiogenesis rather than through imaging of blood flow dynamics or the tumor mass itself.

Más información

Título según WOS: ID WOS:000396553900017 Not found in local WOS DB
Título de la Revista: THERANOSTICS
Volumen: 7
Número: 1
Editorial: IVYSPRING INT PUBL
Fecha de publicación: 2017
Página de inicio: 196
Página final: 204
DOI:

10.7150/thno.16899

Notas: ISI