Mengjia Hu
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Also affiliated: Institute for Nuclear Science and Technology (2005)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Mengjia Hu's research focuses on the design and application of miniaturized electrochemical probes for biological analysis. Her work includes the development of probes on polymer substrates, such as SU-8, featuring arrays of individually addressable microelectrodes. These probes are engineered for electrochemical analysis in neural and other biological tissues. Hu has published 13 papers with 98 citations and an h-index of 4. She has collaborated with Ingrid Fritsch at the University of Arkansas at Fayetteville on shared publications. Her recent work, published in 2021, details a miniaturized probe designed for electrochemical analysis in biological tissues.
Metrics
- h-index: 4
- Publications: 13
- Citations: 102
Selected Publications
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Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues (2021)
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A Neural Device with Individually Addressable Microelectrode Array Suitable for Simultaneous Measurement of Catecholamines: Fabrication and Characterization (2020)
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Challenges of Simultaneous Measurement of Catecholamines in Mixtures: Steps Toward Neural Probes Suitable for In Vivo Analysis (2017)
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Application of Electrochemical Redox Cycling: Toward Differentiation of Dopamine and Norepinephrine (2016)
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(Invited) Translating Complex Electrochemical Mechanisms into Spatiotemporally Distributed Signals at Electrode Arrays for Chemical Analysis Using Generation-Collection Methodologies (2016)
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Redox Cycling Behavior of Catecholamines and Their Mixtures at Different Diffusion Distances: Steps Toward Quantitative Speciation (2016)
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Redox Cycling Behavior of Catecholamines and Their Mixtures at Different Diffusion Distances: Steps Toward Quantitative Speciation (2015)
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Redox Cycling Behavior of Individual and Binary Mixtures of Catecholamines at Gold Microband Electrode Arrays (2015)
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Electrochemical Characterization of Nanoparticles With Different Morphologies (2013)
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Detection of Dopamine in the Presence of Interferents Using Redox Cycling (2013)
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Detection of dopamine in the presence of excess ascorbic acid at physiological concentrations through redox cycling at an unmodified microelectrode array (2013)
Collaboration Network
Top Collaborators
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
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