Haopeng Li
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Lecture
Also affiliated: Zhejiang Sci-Tech University (2015–2018); North China Electric Power University (2025); Shandong University (2018–2021); Tampere University (2021); Anhui University of Science and Technology (2020–2021); China University of Mining and Technology (2019–2025); State Council of the People's Republic of China (2017); Second Affiliated Hospital of Xi'an Jiaotong University (2023); Chinese People's Armed Police Force Engineering University (2024); Hangzhou Xixi hospital (2017); Henan Polytechnic University (2024); Shandong Institute of Business and Technology (2024)
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Haopeng Li's research interests encompass machine learning applications, particularly in the domain of computer vision and artificial intelligence. His work has focused on developing advanced methods for video summarization, employing techniques such as reconstructive sequence-graph networks and multimodal self-supervised learning. He has also investigated spatiotemporal modeling using convolutional recurrent neural networks for video summarization and explored video frame interpolation via residue refinement.
Beyond video processing, Li's research extends to object detection and 3D estimation using FMCW radar with fully convolutional networks. He has also contributed to materials science, with work on magnetorheological fluids and the experimental study of concrete's permeability sensitivity. Li has published 73 papers, with a total of 664 citations, and holds an h-index of 14. He has collaborated with several researchers at the University of Arkansas at Fayetteville, including Jiali Li, Yeasin Ahmed, and Ruben Michael Ceballos.
Metrics
- h-index: 14
- Publications: 73
- Citations: 664
Positions
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Lecture 2022–presentChina University of Mining and Technology School of Mechatronic Engineering ORCID
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Lecture publications 2019–2025University of Arkansas at Fayetteville ORCID
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Visiting Researcher 2019–2020Tampere University Material Science ORCID
Selected Publications
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Sensing RNA’s Conformation with a Solid-State Nanopore Device at Various pH and Temperature (2026)Journal of the Arkansas Academy of Science OpenAlex
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BPS2025 - Sensing RNA stability by a silicon nitride nanopore device (2025)
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Dependence of protein shape and stability on electric field strength and solution environment (2024)
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Probing heat shock protein-coding RNA of Sulfolobus solfataricus P2 through a solid-state nanopore under different pH and temperature (2024)
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Detecting DNA-Binding Sites of Regulation Proteins with Ion Beam Sculpted Silicon Nitride Nanopores (2023)
Collaboration Network
Top Collaborators
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Detecting DNA-Binding Sites of Regulation Proteins with Ion Beam Sculpted Silicon Nitride Nanopores
- Probing heat shock protein-coding RNA of Sulfolobus solfataricus P2 through a solid-state nanopore under different pH and temperature
- Dependence of protein shape and stability on electric field strength and solution environment
- BPS2025 - Sensing RNA stability by a silicon nitride nanopore device
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Electric Field and Ionic Strength Dependent Translocation of Tau Protein Through Solid-State Nanopore
- Detection of Tubulin and TAU Proteins Aggregations using Solid-State Nanopore and Atomic Force Microscopy (AFM)
- Probing heat shock protein-coding RNA of Sulfolobus solfataricus P2 through a solid-state nanopore under different pH and temperature
- Dependence of protein shape and stability on electric field strength and solution environment
- BPS2025 - Sensing RNA stability by a silicon nitride nanopore device
- Probing heat shock protein-coding RNA of Sulfolobus solfataricus P2 through a solid-state nanopore under different pH and temperature
- Dependence of protein shape and stability on electric field strength and solution environment
- BPS2025 - Sensing RNA stability by a silicon nitride nanopore device
- Electric Field and Ionic Strength Dependent Translocation of Tau Protein Through Solid-State Nanopore
- Detection of Tubulin and TAU Proteins Aggregations using Solid-State Nanopore and Atomic Force Microscopy (AFM)
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Detection of Tubulin and TAU Proteins Aggregations using Solid-State Nanopore and Atomic Force Microscopy (AFM)
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Detection of Tubulin and TAU Proteins Aggregations using Solid-State Nanopore and Atomic Force Microscopy (AFM)
- Detecting DNA-Binding Sites of Regulation Proteins with Ion Beam Sculpted Silicon Nitride Nanopores
- Dependence of protein shape and stability on electric field strength and solution environment
- Probing heat shock protein-coding RNA of Sulfolobus solfataricus P2 through a solid-state nanopore under different pH and temperature
- BPS2025 - Sensing RNA stability by a silicon nitride nanopore device
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Detecting DNA-Binding Sites of Regulation Proteins with Ion Beam Sculpted Silicon Nitride Nanopores
- BPS2025 - Sensing RNA stability by a silicon nitride nanopore device
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