Yang Tian
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
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Also affiliated: Kanazawa University (2023); Kunming University of Science and Technology (2024); Yunnan Normal University (2006–2008); Beijing Institute of Technology (2016–2019); Southwest University of Science and Technology (2019–2021); Universiti Putra Malaysia (2024); Harbin Normal University (2018–2020); North China University of Science and Technology (2017–2024); Nanchang Institute of Technology (2025); Nanchang University (2025); Waseda University (2015); Harbin Engineering University (2009–2011); North China Electric Power University (2011–2024); Shenyang University of Technology (2018); Southwest Petroleum University (2022–2024); Iowa State University (2019–2023); Yunnan Agricultural University (2022–2025); Peking University (2023); China University of Mining and Technology (2023); Dalian University of Technology (2017); Copiah-Lincoln Community College (2001); Nanjing University of Science and Technology (2012–2023); Zhengzhou University (2022–2023); University of Chicago (2011); Central China Normal University (2007–2021); Beijing Microelectronics Technology Institute (2021–2022); Dalian University (2017); Life Science Institute (2023); Nanchang Institute of Science & Technology (2025); PowerChina (China) (2025); China Building Materials Academy (2020); ShangHai JiAi Genetics & IVF Institute (2025); Collaborative Innovation Center of Quantum Matter (2023); Puer University (2023–2025); Hunan Vocational Institute of Technology (2011); China Shenhua Energy (China) (2008); Northwest Institute of Nuclear Technology (2016); Yellow River Institute of Hydraulic Research (2022); University of Chinese Academy of Sciences (2023); Shanghai Artificial Intelligence Laboratory (2025); China Electric Power Research Institute (2011–2024); Taiyuan University of Science and Technology (2012); Southwest Jiaotong University (2025); China Academy of Launch Vehicle Technology (2019); Beijing University of Chemical Technology (2014); Cranfield University (2022); Beihang University (2021); Dalian Polytechnic University (2023); Capital Normal University (2012–2022); Aalto University (2023)
Upstream record may be merged OpenAlex, the source of these figures, lists 52 institutions in 6 countries for this author record — a pattern that usually means it combines several researchers with similar names. The totals above may include work by other people.
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Yang Tian's research spans multiple disciplines, including materials science, electric vehicles, autonomous systems, and personalized medicine. He has investigated advancements in lithium metal batteries, focusing on enabling dendrite-free lithium deposition through dual-layered film protection. His work also extends to the automotive sector, with research on novel two-speed transmissions for electric vehicles and adaptive steering torque control for human-machine cooperation in autonomous vehicles.
Further contributions include the development of semisolid extrusion 3D printing for personalized medicine, specifically for propranolol hydrochloride gummy chewable tablets for pediatric use. Tian has also explored high-performance gait recognition using dynamic representations. His scholarly output is reflected in a h-index of 23 and over 1,900 citations across 174 publications, designating him as a highly cited researcher. Key collaborators at the University of Arkansas at Fayetteville include Jeyamkondan Subbiah, Ziyu Liu, Yiting Xiao, and Chaitanya Pallerla, with whom he has co-authored multiple publications.
Metrics
- h-index: 23
- Publications: 174
- Citations: 1,906
Selected Publications
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Dual-camera coherent-light diffraction biosensor for multipathogen screening and strain-level recognition of bacterial colonies (2026)
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Autonomous robotic-biosensing platform for real-time microbial surveillance in poultry processing facilities (2026)
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Assessing the Feasibility of Low-Cost Multispectral Sensing for Woody Breast Severity Classification (2026)
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Portable electrochemical impedance biosensing with DRT-enabled machine learning for detecting E. coli O157:H7 in poultry meat (2026)
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Smartphone-enabled Depth-aware Transillumination Imaging for Detection of Chicken Breast Fillet Myopathies in Chicken Fillets (2026)
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Portable Broadband Dielectric Impedance Immunosensor Based on IDEs for Rapid, Label-Free Whole-Cell E. coli Detection (2026)
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Longitudinal Modulation of the Gut Microbiome and Growth Performance by Phytochemicals as Antibiotic Alternatives in Swine Production (2026)
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Evaluation of Robotic Swabbing and Fluorescent Sensing to Monitor the Hygiene of Food Contact Surfaces (2025)
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Deep-Learning-Enhanced Automated Coherent-Light Diffraction System for High-Speed, Highly Accurate Strain-Specific Foodborne Bacterial Recognition (2025)
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Enhancing Poultry Multi-Behavior Detection with Semi-Supervised Auto-Labeling and Prompt-Driven Zero-Shot Recognition (2025)
Collaboration Network
Top Collaborators
- Photodegradation of Microplastics through Nanomaterials: Insights into Photocatalysts Modification and Detailed Mechanisms
- Photodegradation of microplastics through nanomaterials: Insights into photocatalysts modification and detailed mechanisms
- Optimization of a Low-Cost Corona Dielectric-Barrier Discharge Plasma Wastewater Treatment System through Central Composite Design/Response Surface Methodology with Mechanistic and Efficiency Analysis
- Portable electrochemical impedance biosensing with DRT-enabled machine learning for detecting E. coli O157:H7 in poultry meat
- Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction
Showing 5 of 7 shared publications
- Evaluation of Robotic Swabbing and Fluorescent Sensing to Monitor the Hygiene of Food Contact Surfaces
- Enhancing Poultry Multi-Behavior Detection with Semi-Supervised Auto-Labeling and Prompt-Driven Zero-Shot Recognition
- Deep-Learning-Enhanced Automated Coherent-Light Diffraction System for High-Speed, Highly Accurate Strain-Specific Foodborne Bacterial Recognition
- Portable Broadband Dielectric Impedance Immunosensor Based on IDEs for Rapid, Label-Free Whole-Cell E. coli Detection
- Assessing the Feasibility of Low-Cost Multispectral Sensing for Woody Breast Severity Classification
Showing 5 of 6 shared publications
- Portable electrochemical impedance biosensing with DRT-enabled machine learning for detecting E. coli O157:H7 in poultry meat
- Deep-Learning-Enhanced Automated Coherent-Light Diffraction System for High-Speed, Highly Accurate Strain-Specific Foodborne Bacterial Recognition
- Portable Broadband Dielectric Impedance Immunosensor Based on IDEs for Rapid, Label-Free Whole-Cell E. coli Detection
- Autonomous robotic-biosensing platform for real-time microbial surveillance in poultry processing facilities
- Dual-camera coherent-light diffraction biosensor for multipathogen screening and strain-level recognition of bacterial colonies
- Portable electrochemical impedance biosensing with DRT-enabled machine learning for detecting E. coli O157:H7 in poultry meat
- Enhancing Poultry Multi-Behavior Detection with Semi-Supervised Auto-Labeling and Prompt-Driven Zero-Shot Recognition
- Deep-Learning-Enhanced Automated Coherent-Light Diffraction System for High-Speed, Highly Accurate Strain-Specific Foodborne Bacterial Recognition
- Smartphone-enabled Depth-aware Transillumination Imaging for Detection of Chicken Breast Fillet Myopathies in Chicken Fillets
- Portable electrochemical impedance biosensing with DRT-enabled machine learning for detecting E. coli O157:H7 in poultry meat
- Deep-Learning-Enhanced Automated Coherent-Light Diffraction System for High-Speed, Highly Accurate Strain-Specific Foodborne Bacterial Recognition
- Portable Broadband Dielectric Impedance Immunosensor Based on IDEs for Rapid, Label-Free Whole-Cell E. coli Detection
- Assessing the Feasibility of Low-Cost Multispectral Sensing for Woody Breast Severity Classification
- Portable electrochemical impedance biosensing with DRT-enabled machine learning for detecting E. coli O157:H7 in poultry meat
- Evaluation of Robotic Swabbing and Fluorescent Sensing to Monitor the Hygiene of Food Contact Surfaces
- Portable Broadband Dielectric Impedance Immunosensor Based on IDEs for Rapid, Label-Free Whole-Cell E. coli Detection
- Autonomous robotic-biosensing platform for real-time microbial surveillance in poultry processing facilities
- Portable electrochemical impedance biosensing with DRT-enabled machine learning for detecting E. coli O157:H7 in poultry meat
- Evaluation of Robotic Swabbing and Fluorescent Sensing to Monitor the Hygiene of Food Contact Surfaces
- Portable Broadband Dielectric Impedance Immunosensor Based on IDEs for Rapid, Label-Free Whole-Cell E. coli Detection
- Smartphone-enabled Depth-aware Transillumination Imaging for Detection of Chicken Breast Fillet Myopathies in Chicken Fillets
- Photodegradation of Microplastics through Nanomaterials: Insights into Photocatalysts Modification and Detailed Mechanisms
- Photodegradation of microplastics through nanomaterials: Insights into photocatalysts modification and detailed mechanisms
- Optimization of a Low-Cost Corona Dielectric-Barrier Discharge Plasma Wastewater Treatment System through Central Composite Design/Response Surface Methodology with Mechanistic and Efficiency Analysis
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Hydrothermally doping valve metal Nb into Titanate nanofibers structure for potentially engineering bone tissue
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