collaborators

5 papers

physics.med-ph2021

Three-Dimensional Virtual Histology in Unprocessed Resected Tissues with Photoacoustic Remote Sensing (PARS) Microscopy and Optical Coherence Tomography

Benjamin R. Ecclestone, Zohreh Hosseinaee, Nima Abbasi +4

Histological images are critical in the diagnosis and treatment of cancers. Unfortunately, the current method for capturing these microscopy images require resource intensive tissu…

eess.IV2020

Improving Maximal Safe Brain Tumor Resection with Photoacoustic Remote Sensing Microscopy

Benjamin R. Ecclestone, Kevan Bell, Saad Abbasi +5

Malignant brain tumors are among the deadliest neoplasms with the lowest survival rates of any cancer type. In considering surgical tumor resection, suboptimal extent of resection…

physics.med-ph2020

Reflection-mode virtual histology using photoacoustic remote sensing microscopy

Kevan Bell, Saad Abbasi, Deepak Dinakaran +5

Histological visualizations are critical to clinical disease management and are fundamental to biological understanding. However, current approaches that rely on bright-field micro…

physics.med-ph2020

Label-free, non-contact, in-vivo ophthalmic imaging using photoacoustic remote sensing microscopy

Zohreh Hosseinaee, Layla Khalili, James Alex Tummon Simmons +2

We present the first label-free, non-contact, in-vivo imaging of the ocular vasculature using photoacoustic remote sensing (PARS) microscopy. Both anterior and posterior segments m…

physics.med-ph2020

Histopathology for Mohs Micrographic Surgery with Photoacoustic Remote Sensing Microscopy

Benjamin R. Ecclestone, Kevan Bell, Saad Abbasi +4

Mohs micrographic surgery (MMS) is a precise oncological technique where layers of tissue are resected and examined with intraoperative histopathology to minimize the removal of no…