Ekaterina I. Galanzha
associate research professor
Formerly Arkansas Affiliated with University of Arkansas, UAMS through 2024.
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Ekaterina I. Galanzha's research focuses on the development and application of advanced optical techniques for biomedical imaging and diagnostics. Her work has explored the use of photoacoustic and photothermal methods, often in conjunction with nanotechnology, to detect and analyze biological targets. A significant portion of her research involves circulating tumor cells (CTCs), investigating methods for their noninvasive detection, enrichment, and multiplex analysis in vivo.
Galanzha has published on the use of gold nanoparticles and carbon nanotubes as contrast agents for multimodal photoacoustic and photothermal imaging. Her publications also detail the application of photoacoustic flow cytometry for real-time monitoring of nanoparticles, pathogens, and contrast dyes. She has collaborated with researchers including Vladimir P. Zharov and Alexandru S. Biris on projects related to these areas.
With an h-index of 45 and over 7,250 citations from 134 publications, Galanzha is recognized as a highly cited researcher. Her work contributes to the fields of medical imaging, nanotechnology, and cancer diagnostics, with a particular emphasis on developing novel approaches for detecting and characterizing circulating cancer cells.
Metrics
- h-index: 45
- Publications: 134
- Citations: 7,250
Selected Publications
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Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon (2024)
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Corrections to “Detection of Melanoma Cells in Whole Blood Samples Using Spectral Imaging and Optical Clearing” [Jul/Aug 21 Art. no. 7200711] (2021)
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Indocyanine green dye based bimodal contrast agent tested by photoacoustic/fluorescence tomography setup (2021)
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Detection of Melanoma Cells in Whole Blood Samples Using Spectral Imaging and Optical Clearing (2020)
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In Vivo Lymphatic Circulating Tumor Cells and Progression of Metastatic Disease (2020)
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Lymph Liquid Biopsy for Detection of Cancer Stem Cells (2020)
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Optical clearing for photoacoustic lympho- and angiography beyond conventional depth limit in vivo (2020)
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Genetically-produced and bioinspired magnetic nanoparticles as novel photoacoustic contrast agents (Conference Presentation) (2020)
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Integrated lymph and blood photoacoustic test for advanced diagnosis of early circulating tumor cells (Conference Presentation) (2020)
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New Frontiers in Diagnosis and Therapy of Circulating Tumor Markers in Cerebrospinal Fluid In Vitro and In Vivo (2019)
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Photoswitchable Spasers with a Plasmonic Core and Photoswitchable Fluorescent Proteins (2019)
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Amplification of photoacoustic effect in bimodal polymer particles by self-quenching of indocyanine green (2019)
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Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow (2019)
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Years in Optoacoustics: 70th Anniversary of Prof. Vladimir P. Zharov (2019)
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In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma (2019)
Collaboration Network
Top Collaborators
- Golden carbon nanotubes as multimodal photoacoustic and photothermal high-contrast molecular agents
- Complex genetic, photothermal, and photoacoustic analysis of nanoparticle-plant interactions
- In vivo magnetic enrichment and multiplex photoacoustic detection of circulating tumour cells
- In vivo , Noninvasive, Label-Free Detection and Eradication of Circulating Metastatic Melanoma Cells Using Two-Color Photoacoustic Flow Cytometry with a Diode Laser
- In vivo photoacoustic flow cytometry for monitoring of circulating single cancer cells and contrast agents
Showing 5 of 106 shared publications
- Complex genetic, photothermal, and photoacoustic analysis of nanoparticle-plant interactions
- Spaser as a biological probe
- Circulating tumor cell identification by functionalized silver-gold nanorods with multicolor, super-enhanced SERS and photothermal resonances
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- Photothermal nanodrugs: potential of TNF-gold nanospheres for cancer theranostics
Showing 5 of 47 shared publications
- Spaser as a biological probe
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- Real‐time monitoring of circulating tumor cell release during tumor manipulation using in vivo photoacoustic and fluorescent flow cytometry
- In Vivo Magnetic Enrichment, Photoacoustic Diagnosis, and Photothermal Purging of Infected Blood Using Multifunctional Gold and Magnetic Nanoparticles
- In vivo photoacoustic flow cytometry for early malaria diagnosis
Showing 5 of 42 shared publications
- In vivo photoacoustic flow cytometry for monitoring of circulating single cancer cells and contrast agents
- Photoacoustic flow cytometry: principle and application for real-time detection of circulating single nanoparticles, pathogens, and contrast dyes in vivo
- In vivo multispectral, multiparameter, photoacoustic lymph flow cytometry with natural cell focusing, label‐free detection and multicolor nanoparticle probes
- In vivo fiber‐based multicolor photoacoustic detection and photothermal purging of metastasis in sentinel lymph nodes targeted by nanoparticles
- In vivo photothermal flow cytometry: Imaging and detection of individual cells in blood and lymph flow
Showing 5 of 25 shared publications
- Complex genetic, photothermal, and photoacoustic analysis of nanoparticle-plant interactions
- Spaser as a biological probe
- Circulating tumor cell identification by functionalized silver-gold nanorods with multicolor, super-enhanced SERS and photothermal resonances
- Photothermal nanodrugs: potential of TNF-gold nanospheres for cancer theranostics
- Super‐Resolution Nonlinear Photothermal Microscopy
Showing 5 of 20 shared publications
- Golden carbon nanotubes as multimodal photoacoustic and photothermal high-contrast molecular agents
- Complex genetic, photothermal, and photoacoustic analysis of nanoparticle-plant interactions
- In vivo magnetic enrichment and multiplex photoacoustic detection of circulating tumour cells
- In vivo , Noninvasive, Label-Free Detection and Eradication of Circulating Metastatic Melanoma Cells Using Two-Color Photoacoustic Flow Cytometry with a Diode Laser
- In vivo photoacoustic flow cytometry for monitoring of circulating single cancer cells and contrast agents
Showing 5 of 15 shared publications
- Circulating tumor cell identification by functionalized silver-gold nanorods with multicolor, super-enhanced SERS and photothermal resonances
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- Real‐time monitoring of circulating tumor cell release during tumor manipulation using in vivo photoacoustic and fluorescent flow cytometry
- Photoacoustic and photothermal detection of circulating tumor cells, bacteria and nanoparticles in cerebrospinal fluid in vivo and ex vivo
- Optical clearing in photoacoustic flow cytometry
Showing 5 of 14 shared publications
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- In vivo photoacoustic flow cytometry for early malaria diagnosis
- Optical clearing in photoacoustic flow cytometry
- Preclinical photoacoustic models: application for ultrasensitive single cell malaria diagnosis in large vein and artery
- In vivo high-speed imaging of individual cells in fast blood flow
Showing 5 of 11 shared publications
- In vivo , Noninvasive, Label-Free Detection and Eradication of Circulating Metastatic Melanoma Cells Using Two-Color Photoacoustic Flow Cytometry with a Diode Laser
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- Real‐time monitoring of circulating tumor cell release during tumor manipulation using in vivo photoacoustic and fluorescent flow cytometry
- In Vivo Long-Term Monitoring of Circulating Tumor Cells Fluctuation during Medical Interventions
- Real-Time Label-Free Embolus Detection Using In Vivo Photoacoustic Flow Cytometry
Showing 5 of 10 shared publications
- Amplification of photoacoustic effect in bimodal polymer particles by self-quenching of indocyanine green
- New Frontiers in Diagnosis and Therapy of Circulating Tumor Markers in Cerebrospinal Fluid In Vitro and In Vivo
- Optical clearing for photoacoustic lympho- and angiography beyond conventional depth limit in vivo
- Indocyanine green dye based bimodal contrast agent tested by photoacoustic/fluorescence tomography setup
- Photoacoustic and fluorescent effects in multilayer plasmon‐dye interfaces
Showing 5 of 9 shared publications
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- Real‐time monitoring of circulating tumor cell release during tumor manipulation using in vivo photoacoustic and fluorescent flow cytometry
- In Vivo Long-Term Monitoring of Circulating Tumor Cells Fluctuation during Medical Interventions
- Real-Time Label-Free Embolus Detection Using In Vivo Photoacoustic Flow Cytometry
- In Vivo Lymphatic Circulating Tumor Cells and Progression of Metastatic Disease
Showing 5 of 8 shared publications
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- Bioinspired magnetic nanoparticles as multimodal photoacoustic, photothermal and photomechanical contrast agents
- In Vivo Long-Term Monitoring of Circulating Tumor Cells Fluctuation during Medical Interventions
- In VivoFlow Cytometry of Circulating Tumor-Associated Exosomes
- In Vivo Lymphatic Circulating Tumor Cells and Progression of Metastatic Disease
Showing 5 of 8 shared publications
- Circulating tumor cell identification by functionalized silver-gold nanorods with multicolor, super-enhanced SERS and photothermal resonances
- Synergistic Enhancement of Cancer Therapy Using A Combination of Carbon Nanotubes and Anti-Tumor Drug
- In vivo Raman flow cytometry for real-time detection of carbon nanotube kinetics in lymph, blood, and tissues
- Nanophotothermolysis of multiple scattered cancer cells with carbon nanotubes guided by time-resolved infrared thermal imaging
- In vivo plant flow cytometry: A first proof‐of‐concept
Showing 5 of 7 shared publications
- Golden carbon nanotubes as multimodal photoacoustic and photothermal high-contrast molecular agents
- In vivo magnetic enrichment and multiplex photoacoustic detection of circulating tumour cells
- Photoacoustic flow cytometry: principle and application for real-time detection of circulating single nanoparticles, pathogens, and contrast dyes in vivo
- Photothermal nanodrugs: potential of TNF-gold nanospheres for cancer theranostics
- In Vivo Magnetic Enrichment, Photoacoustic Diagnosis, and Photothermal Purging of Infected Blood Using Multifunctional Gold and Magnetic Nanoparticles
Showing 5 of 7 shared publications
- Spaser as a biological probe
- Circulating tumor cell identification by functionalized silver-gold nanorods with multicolor, super-enhanced SERS and photothermal resonances
- Bioinspired magnetic nanoparticles as multimodal photoacoustic, photothermal and photomechanical contrast agents
- Photoswitchable non-fluorescent thermochromic dye-nanoparticle hybrid probes
- Photothermal confocal multicolor microscopy of nanoparticles and nanodrugs in live cells
Showing 5 of 7 shared publications
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