Mustafa Sarimollaoglu
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Also affiliated: Saratov State University (2011–2019); The University of Texas MD Anderson Cancer Center (2019); University of Arkansas Medical Center (2015–2024); The University of Texas Medical Branch at Galveston (2019)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Mustafa Sarimollaoglu's research focuses on developing and applying advanced optical technologies for disease diagnostics. His work utilizes photoacoustic techniques and laser-based systems, such as the portable Cytophone, to enable noninvasive in vivo detection of diseases. Recent publications highlight applications in malaria diagnosis in Cameroon, demonstrating the potential for global disease screening. Sarimollaoglu's scholarship metrics include an h-index of 26, 53 total publications, and 1,743 total citations, with designations as a highly cited researcher. His collaborations include researchers from the University of Arkansas for Medical Sciences and the University of Arkansas at Little Rock, contributing to a network of interdisciplinary research.
Metrics
- h-index: 26
- Publications: 53
- Citations: 1,759
Selected Publications
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Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon (2024)
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Towards rainbow portable Cytophone with laser diodes for global disease diagnostics (2022)
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KATP Channel Openers Inhibit Lymphatic Contractions and Lymph Flow as a Possible Mechanism of Peripheral Edema (2020)
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In Vivo Lymphatic Circulating Tumor Cells and Progression of Metastatic Disease (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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Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow (2019)
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In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma (2019)
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Bioinspired magnetic nanoparticles as multimodal photoacoustic, photothermal and photomechanical contrast agents (2019)
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Photoacoustic and fluorescent effects in multilayer plasmon‐dye interfaces (2018)
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Noninvasive label-free detection of circulating white and red blood clots in deep vessels with a focused photoacoustic probe (2018)
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Dynamic blood flow phantom with negative and positive photoacoustic contrasts (2018)
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Characterization of a surgical model of lymphatic insufficiency in the rat mesentery (2017)
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High‐speed microscopy for in vivo monitoring of lymph dynamics (2017)
Collaboration Network
Top Collaborators
- 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 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 41 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 photoacoustic flow cytometry for early malaria diagnosis
- In vivo ultra‐fast photoacoustic flow cytometry of circulating human melanoma cells using near‐infrared high‐pulse rate lasers
Showing 5 of 37 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
- 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
- In vivo acoustic and photoacoustic focusing of circulating cells
Showing 5 of 15 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
- Nonlinear photoacoustic signal amplification from single targets in absorption background
- Preclinical photoacoustic models: application for ultrasensitive single cell malaria diagnosis in large vein and artery
Showing 5 of 13 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
- Noninvasive label-free detection of circulating white and red blood clots in deep vessels with a focused photoacoustic probe
Showing 5 of 10 shared publications
- Spaser as a biological probe
- Synergy of photoacoustic and fluorescence flow cytometry of circulating cells with negative and positive contrasts
- Bioinspired magnetic nanoparticles as multimodal photoacoustic, photothermal and photomechanical contrast agents
- Photoacoustic and photothermal cytometry using photoswitchable proteins and nanoparticles with ultrasharp resonances
- Photoacoustic flow cytometry for nanomaterial research
Showing 5 of 10 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 7 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 7 shared publications
- Photoacoustic and photothermal detection of circulating tumor cells, bacteria and nanoparticles in cerebrospinal fluid in vivo and ex vivo
- Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow
- KATP Channel Openers Inhibit Lymphatic Contractions and Lymph Flow as a Possible Mechanism of Peripheral Edema
- High‐speed microscopy for in vivo monitoring of lymph dynamics
- Characterization of a surgical model of lymphatic insufficiency in the rat mesentery
Showing 5 of 6 shared publications
- In vivo photoacoustic flow cytometry for early malaria diagnosis
- In Vivo Long-Term Monitoring of Circulating Tumor Cells Fluctuation during Medical Interventions
- Photoacoustic Flow Cytometry for Single Sickle Cell DetectionIn VitroandIn Vivo
- Photoacoustic flow cytometry for nanomaterial research
- Real-time monitoring of circulating tumor cell (CTC) release after nanodrug or tumor radiotherapy using in vivo flow cytometry
- Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow
- KATP Channel Openers Inhibit Lymphatic Contractions and Lymph Flow as a Possible Mechanism of Peripheral Edema
- High‐speed microscopy for in vivo monitoring of lymph dynamics
- Characterization of a surgical model of lymphatic insufficiency in the rat mesentery
- Doxorubicin Acutely Inhibits Lymph Flow in Rat Mesenteric Lymph Vessels
- Bioinspired magnetic nanoparticles as multimodal photoacoustic, photothermal and photomechanical contrast agents
- Photoacoustic and fluorescent effects in multilayer plasmon‐dye interfaces
- In Vivo Lymphatic Circulating Tumor Cells and Progression of Metastatic Disease
- Integrated lymph and blood photoacoustic test for advanced diagnosis of early circulating tumor cells (Conference Presentation)
- Genetically-produced and bioinspired magnetic nanoparticles as novel photoacoustic contrast agents (Conference Presentation)
- In vivo acoustic and photoacoustic focusing of circulating cells
- Dynamic Fluctuation of Circulating Tumor Cells during Cancer Progression
- Real-Time Label-Free Embolus Detection Using In Vivo Photoacoustic Flow Cytometry
- Noninvasive label-free detection of circulating white and red blood clots in deep vessels with a focused photoacoustic probe
- In vivo photoacoustic flow cytometry for early malaria diagnosis
- Preclinical photoacoustic models: application for ultrasensitive single cell malaria diagnosis in large vein and artery
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Towards early in vivo photoacoustic malaria diagnosis with 10,000-fold sensitivity improvement (Conference Presentation)
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