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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: 719
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)
Collaboration Network
Top Collaborators
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
- Phase Congruential White Noise Generator
- Phase Congruential White Noise Generator
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
- Noninvasive in vivo photoacoustic detection of malaria with Cytophone in Cameroon
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