Yulian A. Menyaev
Research Associate
Also affiliated: Bauman Moscow State Technical University (1999–2018); University of Arkansas Medical Center (2015–2024)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Yulian A. Menyaev's research focuses on the development and application of novel diagnostic technologies, particularly in the area of portable photoacoustic devices. His work includes the design and implementation of a "Cytophone," a device utilizing laser diodes for disease diagnostics. Menyaev has investigated the noninvasive in vivo photoacoustic detection of malaria in Cameroon using this technology. His expertise also extends to the generation of white noise using phase congruential methods.
Menyaev has authored 42 publications and has an h-index of 11 with 713 total citations. He has collaborated with researchers from the University of Arkansas for Medical Sciences and the University of Arkansas at Little Rock, including James Y. Suen, Vladimir P. Zharov, Mustafa Sarimollaoglu, and Alexandru S. Biris, on multiple shared publications. His recent activity indicates ongoing research in his field.
Metrics
- h-index: 11
- Publications: 42
- Citations: 729
Positions
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Research Associate publications 2006–2024University of Arkansas for Medical Sciences Institution web page
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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Phase Congruential White Noise Generator (2021)
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Designing the Uniform Stochastic Photomatrix Therapeutic Systems (2020)
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Twister Generator of Random Normal Numbers by Box-Muller Model (2020)
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Twister Generator of Arbitrary Uniform Sequences (2020)
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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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Poisson Twister Generator by Cumulative Frequency Technology (2019)
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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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Uniform Twister Plane Generator (2018)
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Real-time monitoring of circulating tumor cell (CTC) release after nanodrug or tumor radiotherapy using in vivo flow cytometry (2017)
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Towards early in vivo photoacoustic malaria diagnosis with 10,000-fold sensitivity improvement (Conference Presentation) (2017)
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Parametrical Tuning of Twisting Generators (2016)
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Photoacoustic Flow Cytometry for Single Sickle Cell DetectionIn VitroandIn Vivo (2016)
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Preclinical photoacoustic models: application for ultrasensitive single cell malaria diagnosis in large vein and artery (2016)
Collaboration Network
Top Collaborators
- 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 16 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
- 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 12 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 liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- Optical clearing in photoacoustic flow cytometry
- Nonlinear photoacoustic signal amplification from single targets in absorption background
- 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 7 shared publications
- Parametrical Tuning of Twisting Generators
- Twister Generator of Arbitrary Uniform Sequences
- Poisson Twister Generator by Cumulative Frequency Technology
- Uniform Twister Plane Generator
- Designing the Uniform Stochastic Photomatrix Therapeutic Systems
Showing 5 of 7 shared publications
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- 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
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
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
- Real-time monitoring of circulating tumor cell (CTC) release after nanodrug or tumor radiotherapy using in vivo flow cytometry
- 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)
- Optical clearing in photoacoustic flow cytometry
- In vivo high-speed imaging of individual cells in fast blood flow
- Fluctuation of probe beam in thermolens schematics as potential indicator of cell metabolism, apoptosis, necrosis and laser impact
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- 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 photoacoustic flow cytometry for early malaria diagnosis
- Preclinical photoacoustic models: application for ultrasensitive single cell malaria diagnosis in large vein and artery
- Towards early in vivo photoacoustic malaria diagnosis with 10,000-fold sensitivity improvement (Conference Presentation)
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
- In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma
- 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
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