Showing results (1-10 of 11) with videos related to
Sort By:
Pageof 2
Molecular Cancer Research : MCR|June 21, 2023
Metabolic Imaging as a Tool to Characterize Chemoresistance and Guide Therapy in Triple-Negative Breast Cancer (TNBC)Enakshi D Sunassee, Bruna Victorasso Jardim-Perassi, Megan C Madonna, et al.AMB Express|March 14, 2016
Automation of antimicrobial activity screeningSamuel P Forry, Megan C Madonna, Daneli López-Pérez, et al.Metabolites|May 28, 2022
A Spectroscopic Technique to Simultaneously Characterize Fatty Acid Uptake, Mitochondrial Activity, Vascularity, and Oxygen Saturation for Longitudinal Studies In VivoRiley J Deutsch, Victoria W D'Agostino, Enakshi D Sunassee, et al.Molecular Cancer Research : MCR|March 24, 2019
Optical Imaging of Glucose Uptake and Mitochondrial Membrane Potential to Characterize Her2 Breast Tumor Metabolic PhenotypesMegan C Madonna, Douglas B Fox, Brian T Crouch, et al.Biophotonics Discovery|April 7, 2025
In vivo spectroscopy to concurrently characterize five metabolic and vascular endpoints relevant to aggressive breast cancerVictoria W D'Agostino, Riley J Deutsch, Michelle Kwan, et al.PNAS Nexus|March 9, 2026
In vivo imaging of metabolic heterogeneity across three endpoints relevant to aggressive breast cancerVictoria W D'Agostino, Michelle Kwan, Adelle Yong, et al.NPJ Breast Cancer|September 26, 2022
In vivo metabolic imaging identifies lipid vulnerability in a preclinical model of Her2+/Neu breast cancer residual disease and recurrenceMegan C Madonna, Joy E Duer, Brock J McKinney, et al.Journal of Biophotonics|December 20, 2018
Simultaneous in vivo optical quantification of key metabolic and vascular endpoints reveals tumor metabolic diversity in murine breast tumor modelsCaigang Zhu, Martin Li, Thomas Vincent, et al.Cancers|January 20, 2021
In Vivo Optical Metabolic Imaging of Long-Chain Fatty Acid Uptake in Orthotopic Models of Triple-Negative Breast CancerMegan C Madonna, Joy E Duer, Joyce V Lee, et al.ACS Biomaterials Science & Engineering|October 24, 2018
Drug-Free ROS Sponge Polymeric Microspheres Reduce Tissue Damage from Ischemic and Mechanical InjuryKristin P O'Grady, Taylor E Kavanaugh, Hongsik Cho, et al.Pageof 2