Ruili Xie
Neuroscience · The Ohio State University
Publications
80
Citations
1,042
Est. group size
~4
Recurring co-author estimate
Active years
33
Publishing since 1994
This record appears to mix work from at least two distinct research areas, most consistently auditory neuroscience: studying how neurons in the cochlea (inner ear) and auditory brainstem process rapid, high-rate sound signals, including the role of calcium-handling proteins in nerve terminals and potassium channels in shaping timing precision. Many other listed publications (on topics like catalysis, agriculture, toxicology, and food science) do not appear related to this core auditory research theme and may reflect name-matching with other authors. Prospective students interested in the hearing-related work would likely study cellular and molecular mechanisms underlying sound timing and noise-induced cochlear damage.
Publication counts have fluctuated over the last decade with a notable increase in 2025, but the underlying dataset likely conflates multiple distinct researchers, making a clear trend difficult to establish for the auditory neuroscience work specifically.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Presynaptic mitochondria calcium uniporter promotes auditory temporal processing during sustained high-rate activity
bioRxiv (Cold Spring Harbor Laboratory) · 2026
- Acupuncture alleviates CSDS-induced depressive-like behaviors by modulating synaptic plasticity in vCA1
Theranostics · 2025
- Submerged macrophyte restoration drives microbial community reassembly and functional adaptation for synergistic water quality improvement
Total Environment Microbiology · 2025
- A CuLa dual-site catalyst for high-efficiency CO <sub>2</sub> -to-CO electrocatalytic conversion with ultralow overpotential
Chemical Communications · 2025
- Ferrocene-modified cyclic asymmetric curcumin analogs: Synthesis and enhanced antitumor activity
Bioorganic & Medicinal Chemistry Letters · 2025
- The Impact of the Inflation Reduction Act on Investment in Innovative Medicines: A Project-Level Analysis
Therapeutic Innovation & Regulatory Science · 2025
- Uncovering the differentiation mechanisms of wheat Qu under different processes based on Qu-omics: from metabolic phenotypes to mechanism analysis
Food Bioscience · 2025
- Activation of complement protein C3 depicts the dynamic tissue damage of the cochlea after noise trauma
bioRxiv (Cold Spring Harbor Laboratory) · 2025
- EFFECT OF HYBRID BLOOD PURIFICATION ON SERUM PROTEIN BINDING TOXIN, TBIL, ALT, Cr, BUN IN PATIENTS WITH MSOF AFTER MUSHROOM POISONING
Applied Ecology and Environmental Research · 2025
- Author response for "CuLa dual-site catalyst for high-efficiency CO2-to-CO electrocatalytic conversion with ultralow overpotential"
2025
- Author response for "CuLa dual-site catalyst for high-efficiency CO2-to-CO electrocatalytic conversion with ultralow overpotential"
2025
- Environmental Terroir - Microbe Coupling Shapes the Quality and Ecological Feedback of Shaoxing Wheat Qu across Modern and Traditional Regions
SSRN Electronic Journal · 2025
- Hepatic and Renal Toxicity of Gardenia Yellow: Repeated-Dose Assessment and Human Oral Equivalent Dose Prediction via IVIVE
Journal of Agricultural and Food Chemistry · 2025
- Uncovering the differentiation mechanisms of wheat Qu under different processes based on Qu-omics: from metabolic phenotypes to mechanism analysis
SSRN Electronic Journal · 2025
- Cultivating an ethos of “everyday convergence”: insights from the Multiscale RECIPES Network for food waste reduction
Humanities and Social Sciences Communications · 2025
- UNC Libraries×6
- bioRxiv (Cold Spring Harbor Laboratory)×6
- Research Square×3
- PLoS ONE×2
- The Journal of Physiology×2
- Raymundo Munguia
Neuroscience · Indiana University
- Shengyin Lin
Neuroscience · The Ohio State University
- Amir M. Mafi
Neuroscience · The Ohio State University
- Eric C. Bielefeld
Neuroscience · The Ohio State University
- Ursula M. Findlen
Neuroscience · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile