Xianfeng Jiang Data-verified
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Biography and Research Information
OverviewAI-generated summary
Xianfeng Jiang's research focuses on the biomechanical analysis and application of engineered materials in medical contexts, particularly in reconstructive surgery and spinal cord injury treatment. His work involves the design and evaluation of implants and scaffolds, often utilizing advanced manufacturing techniques like 3D printing and computational modeling such as finite element analysis. Publications detail the biomechanical performance of titanium implants for mandibular reconstruction and temporomandibular joint replacement. Additionally, his research extends to the use of novel scaffolds, like NeuroRegen, for spinal cord injury patients, and the theoretical modeling of temperature fields during robotic dental implant drilling. Jiang has published 79 papers, with an h-index of 14 and 919 citations. He collaborates with several researchers at the University of Arkansas at Fayetteville.
Metrics
- h-index: 13
- Publications: 74
- Citations: 907
Selected Publications
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Performance Evaluation of High Power Hybrid Active Neutral Point Clamped Converters: Three-Phase Integrated Power Stage vs. Single-Phase Power-Electronic Building Block (2025)
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Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications (2025)
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Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters (2025)
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Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field (2025)
Collaboration Network
Top Collaborators
- Biomechanical and Mechanostat analysis of a titanium layered porous implant for mandibular reconstruction: The effect of the topology optimization design
- 3D printed PEKK bone analogs with internal porosity and surface modification for mandibular reconstruction: An in vivo rabbit model study
- 3D-printed porous condylar prosthesis for temporomandibular joint replacement: Design and biomechanical analysis
- Experimental validation of finite element simulation of a new custom-designed fixation plate to treat mandibular angle fracture
- Biomechanical analysis of maxillary anterior teeth movements during different retracting methods with a lever arm miniscrew system in double‐slot lingual brackets: A finite element method study
Showing 5 of 8 shared publications
- Biomechanical and Mechanostat analysis of a titanium layered porous implant for mandibular reconstruction: The effect of the topology optimization design
- 3D printed PEKK bone analogs with internal porosity and surface modification for mandibular reconstruction: An in vivo rabbit model study
- 3D-printed porous condylar prosthesis for temporomandibular joint replacement: Design and biomechanical analysis
- Experimental validation of finite element simulation of a new custom-designed fixation plate to treat mandibular angle fracture
- [Accurate tissue flap reconstruction method based on the quadratic surface developability for head and neck soft tissue defects].
- Biomechanical and Mechanostat analysis of a titanium layered porous implant for mandibular reconstruction: The effect of the topology optimization design
- 3D-printed porous condylar prosthesis for temporomandibular joint replacement: Design and biomechanical analysis
- Experimental validation of finite element simulation of a new custom-designed fixation plate to treat mandibular angle fracture
- Biomechanical analysis of maxillary anterior teeth movements during different retracting methods with a lever arm miniscrew system in double‐slot lingual brackets: A finite element method study
- Lever arm on bracket vs. lever arm on archwire: A 3D finite element method study of mechanics of miniscrew-supported lingual en-masse retraction of maxillary anterior teeth
- 3D printed PEKK bone analogs with internal porosity and surface modification for mandibular reconstruction: An in vivo rabbit model study
- 3D-printed porous condylar prosthesis for temporomandibular joint replacement: Design and biomechanical analysis
- Experimental validation of finite element simulation of a new custom-designed fixation plate to treat mandibular angle fracture
- Temperature Field in Bone During Robotic Dental Implant Drilling: Theoretical Models and In Vitro Experiments
- 3D-printed porous condylar prosthesis for temporomandibular joint replacement: Design and biomechanical analysis
- Experimental validation of finite element simulation of a new custom-designed fixation plate to treat mandibular angle fracture
- Biomechanical and Mechanostat analysis of a titanium layered porous implant for mandibular reconstruction: The effect of the topology optimization design
- Experimental validation of finite element simulation of a new custom-designed fixation plate to treat mandibular angle fracture
- Biomechanical analysis of maxillary anterior teeth movements during different retracting methods with a lever arm miniscrew system in double‐slot lingual brackets: A finite element method study
- Lever arm on bracket vs. lever arm on archwire: A 3D finite element method study of mechanics of miniscrew-supported lingual en-masse retraction of maxillary anterior teeth
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters
- Experimental validation of finite element simulation of a new custom-designed fixation plate to treat mandibular angle fracture
- Experimental validation of finite element simulation of a new custom-designed fixation plate to treat mandibular angle fracture
- Biomechanical and Mechanostat analysis of a titanium layered porous implant for mandibular reconstruction: The effect of the topology optimization design
- Biomechanical and Mechanostat analysis of a titanium layered porous implant for mandibular reconstruction: The effect of the topology optimization design
- Long-term clinical observation of patients with acute and chronic complete spinal cord injury after transplantation of NeuroRegen scaffold
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