同济大学
导师风采
牛文鑫
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个人信息

Personal Information

  • 副教授
  • 导师类别:硕士,博士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:医学院
  • 所属专业: 生物医学工程  、 生物与医药  、 基础医学  、 智能科学与技术  、 临床医学
  • 邮箱 : niu@tongji.edu.cn
  • 工作电话 : -1377446692

牛文鑫个人简介

Personal Profile

牛文鑫,同济大学医学院长聘副教授,博士生导师,智能康复研究中心主任,附属养志康复医院(上海市阳光康复中心)特聘教授,转化研究中心主任。上海自主智能无人系统科学中心全国重点实验室博士生导师;上海市残联智能康复辅具与技术重点实验室副主任;国家重点研发计划项目负责人、课题组长,国家大学科技园智能医学产教融合平台负责人,2021年和2023年连续两次入围全国康复医学学术影响力百强。

本、硕、博先后毕业于武汉大学(机械设计制造及自动化专业)、同济大学(生物医学工程专业)、北京航空航天大学(生物医学工程专业),在同济大学临床医学博士后流动站和香港理工大学生物医学工程系完成博士后研究工作。具有丰富的医工体交叉研究和产学研合作经验。

担任学术兼职:世界华人生物医学工程协会(WACBE)青年学者委员会共同主席;上海市力学会生物力学专业委员会副主任委员兼秘书长;上海市体育科学学会运动生物力学专业委员会副主任委员;上海市康复医学会康复工程专业委员会副主任委员;中国力学会生物力学专业委员会委员;中国生物医学工程学会青年工作委员会委员,生物力学分会委员,康复工程分会委员,医学人工智能分会康复及人机工程学组委员;中国康复辅助器具协会肢体功能重建分会委员,康复工程专业委员会委员;国际矫形与创伤外科学会中国部数字骨科学会委员;中华足踝医学培训工程委员会委员;中国医工整合联盟常务理事;IEEE TEMS Technical Committee on Smart Medical Digitalization (智能医疗数字化技术委员会) 委员;中国康复医学会技术转化与产业促进专业委员会委员;中国老年学和老年医学学会运动健康科学分会委员会委员;中国健康促进基金会骨科康复专家委员会足踝康复工作委员会委员;中国医师协会骨科医师分会基础临床应用学组委员;上海市生物医学工程学会康复工程专委会委员、骨关节工程专委会委员等。  J Orthop Transl (IF=6.7)、Med Novel Technol Dev《医用生物力学》、《中国循证医学杂志》、《足踝外科电子杂志》编委。

研究方向为康复工程与生物力学,在Nano Energy, Science China Life Science,Computer Methods and Programs in Biomedicine等期刊发表SCI论文120篇,其中ESI高被引论文3篇。获得教育部自然科学奖一等奖、上海康复医学科技奖一等奖、黄家驷生物医学工程奖一等奖、中国康复医学会科技奖一等奖、浦东新区科技进步奖、上海医学科技奖等奖项。多次获得同济大学本科生招生工作先进个人、优秀导师、学科竞赛优秀指导教师、优秀教师等称号,指导的学生获得挑战杯上海一等奖、上海市大学生“创造杯”大赛三等奖、全国大学生智能技术应用大赛一等奖、中国仿真技术应用大赛一等奖、中国服务机器人大赛服务机器人专项赛医疗服务机器人创新设计与制作项目一等奖、全国大学生体育产业创新创业大赛华东赛区一等奖。培养的研究生在医疗、科研、产业、管理等各领域均获得用人单位一致好评。


  • 研究方向Research Directions
智能康复与医疗设备,康复工程医疗器械,康复工程医疗器械,生物医学,智能科学与理论
2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。
团队展示

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微信图片_20220809092157

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项目情况

1.国家重点研发计划项目课题(2023YFC3603702):老年功能障碍分类分级定量评估标准体系及预警模型研究。课题课题(2023-2026),在研

2.国家自然科学基金面上项目(12472314):俯卧位四肢运动中腰椎生物力学响应的多肌群协同与脑肌耦合机制。项目负责人(2025-2028),在研

3. 国家自然科学基金面上项目(32071308):基于脊髓反射模型的踝关节-步行环境自适应机制及助力优化研究。项目负责人(2021-2024),结题

4. 上海市创新医疗器械应用示范项目(23SHS05400-06),表面肌电图仪在膝关节术后康复的应用示范(养志康复)。课题负责人(2023-2026),在研

5. 国家重点研发计划项目(2021YFE0204500):面向脊髓损伤三级联动康复模式的可穿戴智能健康监测和运动康复管理系统开发。项目负责人(2021-2023),结题

6. 国家重点研发计划项目(2020YFC2004201):肢体运动功能障碍动态量化评估与智能康复训练系统研发。课题骨干(2021-2023),结题

7. 国家自然科学基金重点项目(11732015):足踝生物力学研究及其在手术和辅具治疗中的应用. 任务负责人(2018-2022)结题

8. 国家自然科学基金面上项目(11732211):太极拳典型动作对老年人踝关节炎的生物力学影响。项目负责人(2017-2020)结题

9. 国家自然科学基金青年项目(11302154):着陆冲击踝关节损伤在组织层次上的生物力学机制研究。项目负责人(2014-2016)结题

10. 教育部产学合作协同育人项目(220904972052734):基于生命健康产业背景下具备医学实验功能的创新实践基地建设。项目负责人(2022-2023)结题(优秀)


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研究成果

1.  Su R, He YP, Qi Y, Fang L, Zhao X, Meng ZY, Xiang XH, Huang WR, Peng SQ, Wang GT, Yu WW, Shi YN, Hou CY*, Tao R*, Shi DL*, Niu WX*. Brain activation after repairing the anterior cruciate ligament injury in rabbits with piezoelectric nanomaterial: A fMRI study. Nano Energy, 2025, 138, 110845.

2. Zhang K, Chen YF, Feng CL, Xiang XH, Zhang XQ, Dai Y, Niu WX*. Machine learning based finite element analysis for personalized prediction of pressure injury risk in patients with spinal cord injury. Computer Methods and Programs in Biomedicine, 2025, 261:108648. (IF: 4.9)

3. Shan MJ, Wang ST, Xie HX, Gao YJ, Shen C, Gao HY, Shi DL, Yang CHR, Qi Y*, Niu WX*. Intelligent motion pattern classification: an in-depth analysis of seated balance strategies in spinal cord Injury patients during 16-form wheelchair Tai Chi. Biomedical Signal Processing and Control, 2025, 102: 107351. DOI10.1016/j.bspc.2024.107351. (IF: 5.2)

4. Shan MJ, Li CH, Sun JY, Xie HX, Qi Y, Niu WX*, Zhang M. The trunk segmental motion complexity and balance performance in challenging seated perturbation among individuals with spinal cord injury. Journal of NeuroEngineering and Rehabilitation, 2025, 22(1): 4. DOI: 10.1186/s12984-024-01522-7.

5. Ma XC, Qin Y, Zhou L, Hu QQ, Xiang XH, von Seggern H, Zhukov S, Altmann AA, Kupnik M, Niu WX*, Zhang XQ*. Fully Degradable, Highly Sensitive Pressure Sensor Based on Bipolar Electret for Biomechanical Signal Monitoring. Materials Today Physics, 2024, 49: 101597. (Q1, IF: 10)

6. Sun JY#, Feng CL#, Liu YM, Shan MJ, Wang ZL, Fu WJ*, Niu WX*. Risk Factors of Metatarsal Stress Fracture Associated with Repetitive Sports Activities: a Systematic Review. Frontiers in Bioengineering and Biotechnology, 2024, 1435807. DOI: 10.3389/fbioe.2024.1435807.

7. Luo XM#, Huang B#, Huang YL, Li M, Niu WX*, Wang TL*. Central imaging based on near-infrared functional imaging technology can be useful to plan management in patients with chronic lateral ankle instability. Journal of Orthopaedic Surgery and Research, 2024, 19:361.(Q1, IF: 2.8)

8. Feng CL, Zhang K, Zhan S, Gan YX, Xiang XH, Niu WX*. Regional Impact of Structural Deterioration and Tissue-Level Compensation in Proximal Femur Trabecular Mechanics. Frontiers in Bioengineering and Biotechnology, 2024, 12: 1448708. DOI: 10.3389/fbioe.2024.1448708

9. Ma XC, Hu QQ, Zhou L, Xiang XH, Qin Y, Zhang K, He PF, Dai Y*, Niu WX*, Zhang XQ*. Flexible piezoelectret film sensor for noncontact mechanical signal capture by multiple transmission media. Nano Research, 2024, 17(8): 7643-7657. DOI:10.1007/s12274-024-6755-6. (IF: 9.5)

10. Xiang XH#, Zhang K#, Qin Y, Ma XC, Dai Y*, Zhang XQ*, Niu WX*, He PF. Smart Cushions with Machine Learning-Enhanced Force Sensors for Pressure Injury Risk Assessment. ACS Applied Materials & Interfaces, 2024, 16, 29: 38466–38477. DOI: 10.1021/acsami.4c05964. (IF: 8.3)

11. Zhan S, Jiang DJ, Hu QX, Wang M, Feng CL, Jia WT, Hu H*, Niu WX*. Single-Plane Osteotomy Model is Inaccurate for Evaluating the Optimal Strategy in Treating Vertical Femoral Neck Fractures: A Finite Element Analysis. Computer Methods and Programs in Biomedicine, 2024, 245: 108036. (IF: 4.9)

12. Huang SJ, Dai HD, Yu XM, Wu X, Wang K, Hu JX, Yao HC, Huang R, Niu WX*. A contactless monitoring system for accurately predicting walking energy expenditure based on an ensemble neural network. iScience, 2024, 27: 109093. DOI: 10.1016/j.isci.2024.109093 (IF: 4.6)

13. Liu ZQ, Xiao YC, Lyu JJ, Jing DH, Liu L, Fu YB, Niu WX*, Jin LJ*, Zhang C*. The expanded application of CAR-T cell therapy for the treatment of multiple non-tumoral diseases. Protein & Cell, 2024, 15(9): 633-641. DOI: 10.1093/procel/pwad061. (IF: 13.6)

14. Ma XC, Qi Y, Niu YY, Zhang Q, Xiang XH, Zhang K, He PF, Dai Y*, Niu WX*, Zhang XQ*. Highly Sensitive, Ultra-Reliable Flexible Piezoelectret Sensor for Noncontact Sitting Motion Tacking and Physiological Signal Monitoring, Nano Energy, 2023, 111, 10824. (IF: 16.8)

15. Wang K, Deng Z, Chen XP, Shao J, Qiu LL, Jiang CH, Niu WX*. The role of multifidus in the biomechanics of lumbar spine: A musculoskeletal modeling study. Bioengineering, 2023, 10(1):67. (ESI) 

16. Zu YM, Luo LN, Chen XP, Xie HX, Yang CHR, Qi Y, Niu WX*. Characteristics of corticomuscular coupling during wheelchair Tai Chi in patients with spinal cord injury. Journal of NeuroEngineering and Rehabilitation, 2023, 20: 79.

17. Wang ST, Feng CL, Chen XP, Shan MJ, Niu WX*. A biomechanical evaluation of firefighters’ musculoskeletal loads when carrying self-contained breathing apparatus in walking and running. Journal of Safety Research, 2023, 87:1-14. DOI: 10.1016/j.jsr.2023.08.004.(IF: 4.1)

18. Xia WL#, Dai RX#, Xu XJ, Huai BY, Bai ZF, Zhang JQ, Jin MX, Niu WX*. Cortical mapping of active and passive upper limb training in stroke patients and healthy people: A functional near-infrared spectroscopy study. Brain Research, 2022,1788: 147935.(ESI高被引)

19. Luo LN#, Shan MJ#, Zu YM, Chen YF, Bu LG, Wang LJ, Ni M, Niu WX*. Effects of long-term COVID-19 confinement and music stimulation on mental state and brain activity of young people. Neuroscience Letters, 2022, 791: 136922.

20. Xu ZH, Sun WJ, Li PF, Wang YQ, Wong DWC, Cheung JCW, Niu WX*, Zhang HW*, Ni M*. Modified Ni-Nail and C-Nail systems for intra-articular fractures of the calcaneus: A biomechancial study, Injury - International Journal of the Care of the Injured, 2022, 53(12): 3904-3911.

21. Chen YF, Shen YX, Wang K, Qi Y, Niu WX*, Wang Y. Mechanical analysis of deep tissue injury during sitting in patients with spinal cord injury via parametric finite element model. Biomechanics and Modeling in Mechanobiology, 2022,21 (5):1573-1584. DOI:10.1007/s10237-022-01607-z. 

22. Bai ZF, Zhang JQ, Tang CZ, Wang LJ, Xia WL, Qi Q, Lu JN, Fang Y, Fong KN, Niu WX*. Prediction for return-to-work in Chinese patients after upper extremity injury in occupational accident using machine learning algorithms: a prospective cohort study. Frontiers in Medicine, 2022, 9: 805230.

23. Wang K#, Chen YF#, Huang SJ, Wang LJ, Niu WX*. Subcutaneous fat thickness remarkably influences contact pressure and load distribution of buttock in seated posture, Journal of Healthcare Engineering, 2021, 2021:4496416.

24. Chen XP, Wang LJ, Chang XQ, Wang K, Wang HF, Ni M, Niu WX*, Zhang M. Tai Chi and Yoga for improving balance on one leg: a neuroimaging and biomechanics study. Frontiers in Neurology, 2021, 12: 746599.

25. Yang C#, Chen YH#, Huang H, Fan SC, Yang CL, Wang LP, Niu WX*, Liao JW*. ROS-eliminating carboxymethyl chitosan hydrogel to enhance burn wound healing efficacy. Frontiers in Pharmacology, 2021, 12: 679580.

26. Zhang S#, Wang K#, Zhu R, Jiang C*, Niu WX*. Penguin suit and fetal position finite element model to prevent low back pain in space flight. Aerospace Medicine & Human Performance, 2021, 92(5): 312-318.

27. Wang TL, Zhong RZ, Liu SS, Hu GJ, Niu WX*, Wang YB*. Effects of non-elastic taping and dual-task on kinematics and kinetics of the ankle joint. Journal of Healthcare Engineering, 2021, 2021: 8866453.

28. Xia WL, Bai ZF, Dai RX, Zhang JQ, Lu JN, Niu WX*. The effects of sensory re-education on hand function recovery after peripheral nerve repair: a systematic review. NeuroRehabilitation. 2021, 48(3): 293-304.

29. Qi Y#, Xie HX#, Shang YL, Wang LJ, Wang C, He YL, Niu WX*, Shi DL*. Effects of 16-form wheelchair Tai Chi on the autonomic nervous system among patients with spinal cord injury. Evidence-Based Complementary and Alternative Medicine, 2020, 2020: 6626603.

30. Li M, Wang K, Niu WX*, Zhang SN*. A musculoskeletal modeling of hand-foot crawling with different heights. Journal of Bionic Engineering, 2020, 17(3):591-599. DOI: 10.1007/s42235-020-0047-y.(IF: 4.9)

31. Wang LJ, Yu XM*, Shao QN, Wang C, Yang H, Huang SJ, Niu WX*. Muscle fatigue enhance beta band EMG-EMG coupling of antagonistic muscles in patients with post-stroke spasticity. Frontiers in Bioengineering and Biotechnology, 2020, 8:1007. DOI: 10.3389/fbioe.2020.01007.

32. Huang SJ#, Yu XM#, Wang K, Wang LJ, Wu XB, Wu X*, Niu WX*. Short-step adjustment and proximal compensatory strategies adopted by stroke survivors with knee extensor spasticity for obstacle crossing. Frontiers in Bioengineering and Biotechnology, 2020, 8: 939. DOI: 10.3389/fbioe.2020.00939.

33. Duan JW, Wang K, Chang TB, Wang LJ, Zhang SN*, Niu WX*. Tai Chi is safe and effective for the hip joint: A biomechanical perspective. Journal of Aging and Physical Activity, 2020, 28(3):415-425.

34. Chen B, Zhao YC, Cao XX, Hu GJ, Chen LB, Niu WX*. Influence of shoulder position on functional control ratio during isokinetic assessment. Journal of Sport Rehabilitation, 2020, 29(5):588-593.

35. Wang LJ*, Xie ZH, Lu AY, Lu TF, Zhang SN, Zheng FH, Niu WX*. Antagonistic muscle prefatigue weakens the functional corticomuscular coupling during isometric elbow extension contraction. NeuroReport, 2020, 31(5):372–380. DOI: 10.1097/WNR.0000000000001387.

36. Wang LJ*, Niu WX*, Wang K, Zhang SN, Li L, Lu TF. Badminton players show a lower coactivation and higher beta band intermuscular interactions of ankle antagonist muscles during isokinetic exercise. Medical & Biological Engineering & Computing, 2019, 57(11): 2407-2415. DOI: 10.1007/s1151.

37. Huang SJ#, Yu XM#, Lu Y, Qiao J, Wang HL, Jiang LM, Wu XB*, Niu WX*. Body weight support-Tai Chi footwork for balance of stroke survivors with fear of falling: a pilot randomized controlled trial. Complementary Therapies in Clinical Practice, 2019, 37:140-147. DOI:10.1016/j.ctcp.2019.101061.

38. Zhong B#, Niu WX#, Broadbent E, McDaid A, Lee TMC, Zhang MM*. Bringing psychological strategies to robot-assisted physiotherapy for enhanced treatment efficacy. Frontiers in Neuroscience. 2019, 13: 984.

39. Wang HH, Wang K, Deng Z, Li XF, Qin YX, Zhan HS*, Niu WX*. Effects of facet joint degeneration on stress alterations in cervical spine C5-C6: A finite element analysis. Mathematical Biosciences and Engineering, 2019, 16(6):7447-7457. DOI: 10.3934/mbe.2019373.

40. Wang K, Wang LJ, Deng Z, Jiang CH, Niu WX*, Zhang M. Influence of passive elements on prediction of intradiscal pressure and muscle activation in lumbar musculoskeletal models. Computer Methods and Programs in Biomedicine. 2019, 177:39-46. DOI: 10.1016/j.cmpb.2019.05.018  (IF: 4.9)

41. Bai ZF, Shu T, Niu WX*. Test-retest reliability and measurement error of the grip strength test in patients with traumatic injuries in the upper extremities: a cross-sectional study. BMC MUSCULOSKELETAL DISORDERS, 2019, 20: 256.

42. Bai ZF, Zhang JQ, Zhang ZW, Shu T, Niu WX*. Comparison between movement-based and task-based mirror therapies on improving upper limb functions in patients with stroke: a pilot randomised controlled trial. Frontiers in Neurology. 2019, 10, 288. DOI: 10.3389/fneur.2019.00288.

43. Bai ZF, Shu T, Hao Y, Niu WX*. An alternative static progressive orthosis for forearm pronation and supination. Journal of Hand Therapy, 2019,32(3):403-406. DOI: 10.1016/j.jht.2017.11.038.

44. Li Y#, Wang K#, Wang LJ, Chang TB, Zhang SN*, Niu WX*. Biomechanical analysis of the meniscus and cartilage of the knee during a typical Tai Chi movement - Brush-knee and Twist-step. Mathematical Biosciences and Engineering, 2019, 16(2):898-908. DOI: 10.3934/mbe.2019042.

45. Wang HH#, Jiang EY#, Wang K, Deng Z, Zhan HS, Shen ZB*, Niu WX*. Shi’s Daoyin therapy for neck pain: a randomized controlled trial. Evidence-Based Complementary and Alternative Medicine, 2018, 2018: 4983891.

46. Qi Y, Zhang X, Zhao YC, Xie HX, Shen XY, Niu WX*, Wang YB*. Wheelchair Tai Chi on balance control and quality of life among survivors of spinal cord injuries: a randomized controlled trial. Complementary Therapies in Clinical Practice. 2018,33:7-11. DOI: 10.1016/j.ctcp.2018.07.004.

47. Wang K, Jiang CH, Wang LJ, Wang HH, Niu WX*. The biomechanical influence of anterior vertebral body osteophytes on the lumbar spine: A finite element study. Spine Journal. 2018, 18(12): 2288-2296.

48. Bai ZF, Shu T, Lu JN, Niu WX*. Measurement properties of the Functional Rating Index: a systematic review and meta-analysis. Spine, 2018, 43(22): E1340-1349.

49. Ni M, Mei J, Li K, Niu WX*, Zhang M. The primary stability of different implants for intraarticular calcaneal fractures: an in-vitro study. BioMedical Engineering OnLine. 2018, 17: 50. 

50. Niu WX*, Wang LJ*, Jiang CH, Zhang M. Effect of dropping height on the forces of lower-extremity joints and muscles during landing: A musculosketetal modeling. Journal of Healthcare Engineering, 2018, 2018: 2632603. 

51. Zhu R#, Niu WX#, Wang ZP, Pei XL, He B, Zeng ZL*, Cheng LM*. The effect of muscle direction on the predictions of finite element model of human lumbar spine. BioMed Research International, 2018, 2018, 4517471. 

52. Deng Z#, Wang K#, Wang HH, Lan TY, Zhan HS*, Niu WX*, A finite element study of traditional Chinese cervical manipulation. European Spine Journal, 2017, 22(9): 2308-2317. 

53. Niu WX*, Zhang M, Yao J, Wang LP, Siu KC. Biomechanics in musculoskeletal health. Journal of Healthcare Engineering, 2017, 2017:  8916431. DOI: 10.1155/2017/8916431

54. Chen B#, Lin JH#, Liu LF, Niu WX*, Static progressive orthoses for elbow contracture: A systematic review. Journal of Healthcare Engineering, 2017, 2017: 7498094.

55. Wang K#, Deng Z#, Wang HH, Li ZY, Zhan HS*, Niu WX*, Influence of variations in stiffness of cervical ligaments on C5-C6 segment. Journal of the Mechanical Behavior of Biomedical Materials, 2017, 72: 129-137. 

56. Wang K#, Wang HH#, Deng Z, Li ZY, Zhan HS*, Niu WX*. Cervical traction therapy with and without neck support: A finite element analysis. Musculoskeletal Science and Practice, 2017, 28: 1-9.

57. Ni M#, Niu WX#, Wong DWC, Zeng W, Mei J*, Zhang M. Finite element analysis of locking plate and two types of intramedullary nails for treating mid-shaft clavicle fractures. Injury, 2016, 47(8): 1618-1623. 

58.  Ni M, Wong DWC, Mei J, Niu WX*, Zhang M. Biomechanical comparison of locking plate and crossing metallic and absorbable screws fixations for intra-articular calcaneal fractures. Science China Life Sciences. 2016, 59(9): 958-964. DOI: 10.1007/s11427-016-0010-9.

59. Niu WX*, Wang LJ, Zhu R, Li B*. A three-dimensional morpological measurement and in vitro biomechanical study of metatarsals. Journal of Mechanics in Medicine & Biology, 2015, 15(6), 1540047.

60. Ni M, Weng XH, Mei J, Niu WX*. Primary stability of absorbable screw fixation for intra-articular calcaneal fractures: A finite element analysis. Journal of Medical and Biological Engineering, 2015, 35(2): 236-241.

61. Niu WX, Yao J, Chu ZW, Jiang CH, Zhang M, Fan YB*. Effects of ankle eversion, limb laterality, and ankle stabilizers on transient postural stability during unipedal standing. Journal of Medical and Biological Engineering, 2015, 35(1): 69-75.

62. Wu XL, Yang M, Wu LJ, Niu WX*. A biomechanical comparison of two intramedullary implants for subtrochanteric fracture in two healing stages: a finite element analysis. Applied Bionic and Biomechanics, 2015, 475261. 

63. Niu WX, Tang TT, Zhang M, Jiang CH*, Fan YB*. An in-vitro and finite element study of load redistribution in the midfoot. Science China Life Sciences. 2014, 57(12): 1191-1196.

64. Niu WX#, Feng TA#, Jiang CH*, Zhang M. Peak vertical ground reaction force during two-leg landing: A systematic review and mathematical modeling. BioMed Research International, 2014, 2014: 126860. 

65. Niu WX, Wang LJ, Feng TN, Jiang CH, Fan YB*, Zhang M*. Effects of bone Young’s modulus on finite element analysis in the lateral ankle biomechanics. Applied Bionics and Biomechanics, 2013, 10(4): 189-195.

66. Niu WX, Fan YB*. Terrain stiffness and ankle biomechanics during simulated half-squat parachute landing. Aviation, Space, and Environmental Medicine. 2013, 84(12): 1262-1267.

67. Niu WX, Zhang M, Fan YB*, Zhao QP*. Dynamic postural stability for double-leg drop landing. Journal of Sports Sciences. 2013, 31(10): 1074-81. 

68. Niu WX, Chu ZW, Yao J, Zhang M, Fan YB, Zhao QP. Effects of laterality, ankle inversion and stabilizers on the plantar pressure distribution during unipedal standing. Journal of Mechanics in Medicine and Biology, 2012, 12(3):1250055.

69. Niu WX, Wang Y, Yao J, Zhang M, Fan YB*, Zhao QP*. Consideration of gender differences in ankle stabilizer selection for half-squat parachute landing. Aviation, Space, and Environmental Medicine, 2011, 82(12): 1118-1124.

70. Niu WX, Wang Y, He Y, Fan Y*, Zhao Q*. Kinematics, kinetics, and electromyogram of ankle during drop landing: A comparison between dominant and non-dominant limb. Human Movement Science. 2011, 30(3): 614-623.

71. Niu WX, Wang Y, He Y, Fan YB*, Zhao QP*. Biomechanical gender differences of the ankle joint during simulated half-squat parachute landing. Aviation, Space, and Environmental Medicine, 2010; 81(8): 761-767.

72. Li Q, Yan JQ, Dai HY, Qiao MJ, Gong MX, Niu WX, Yang Y*, Wang LJ*. Effect of An Eight-week Transcranial Direct Current Stimulation Combined with Lat Pull-down Resistance Training in Improving Pull-up Performance for Male College Students, Life-Basel, 2025, 15(1):128.

73. Li Q, Yan JQ, Qiao MJ, Quan JQ, Chen YQ, Gong MX, Niu WX, Wang LJ*. Eight-week lat pull-down resistance training with joint instability leads to superior pull-up endurance performance and reduced antagonist coactivation in recreationally active male college students. European Journal of Sport Science, 2025, 25(1): e12243. DOI: 10.1002/ejsc.12243.

74. Sun Y, Zhou QX, Niu WX, Zhang SC, Yick KL, Gu BF, Xu W*. 3D Printed Sports Shoe Midsoles: Enhancing Comfort and Performance through Finite Element Analysis of Negative Poisson's Ratio Structures. Materials & Design, 2024, 245:113292.

75. Zhou QX, Niu WX, Yick KL, Gu BF, Sun Y*. Numerical Simulation of the Effect of Different Footwear Midsole Structures on Plantar Pressure Distribution and Bone Stress in Obese and Healthy Children. Bioenginerring, 2023, 10:1306. DOI: 10.3390/bioengineering10111306

76.  Liu HW, Wu FX, Zhong B, Zhao YJ, ZhangJT, Niu WX, Zhang MM*. Close-range Human Following Control on a Cane-type Robot with Multi-camera Fusion. IEEE Robotics and Automation Letters, 2023, 8(10): 6443-6450. DOI: 10.1109/LRA.2023.3307011.

77. Wang FJ, Guan YH, Bamber Z, Cao XX, Qi Q, Niu WX, Chen B*. Preventive interventions for lateral ankle sprains: a systematic review and meta-analysis. Clinical Rehabilitation, 2023, 37(5): 585-602 .

78. Wong DWC, Wang Y, Niu WX, Zhang M*. Response to the letter to editor regarding “Finite element analysis of subtalar joint arthroereisis on adult acquired flexible flatfoot deformity using customized sinus tarsi implant”, Journal of Orthopaedic Translation, 2022,37:73-174.

79. Wang LJ, Song X, Yang H, Wang C, Shao QN, Tao H, Qiao MJ, Niu WX and Liu X, Are the antagonist muscle fatigued during a prolonged isometric fatiguing elbow flexion at very low forces for young adults? Frontiers in Physiology, 2022, 13:956639.

80. Wang LJ*, Qiao MJ, Tao HF, Song XQ, Shao QN, Wang C, Yang H, Niu WX, Li RJ, Chen YQ*. A comparison of muscle activation and concomitant intermuscular coupling of antagonist muscles among bench presses with different instability degrees in untrained men. Frontiers in Physiology, 2022,940719.

81. Chang XQ#, Chen XP#, Shen YX, Wang K, Huang SJ, Qi Y*, Niu WX. Wuqinxi (deer play) and Four-point Hand-knee kneeling Positions for Training Core Muscle Function and Spinal Mobility. Frontiers in Bioengineering and Biotechnology, 2022, 10:965295.

82. Wang LJ, Yang H, Ma GQ*, Gong MX, Niu WX, Lu TF. Grey relational analysis of lower limb muscle fatigue and pedalling performance decline of elite athletes during a 30-second all-out sprint cycling exercise. Journal of Healthcare Engineering, 2021, 2021: 6755767.

83. Peng YH, Niu WX, Wong DWC, Wang Y, Chen TLW, Zhang GX, Tan QT, Zhang M*. Biomechanical Comparison among Five Mid/hindfoot Arthrodeses Procedures in Treating Flatfoot Using a Musculoskeletal Multibody Driven Finite Element Model, COMPUTER METHODS AND PROGRAMS IN BIOMEDICINE, 2021, 211: 106408.

84. Wu HJ, Wu J, Zhang Z, Zheng Y, Niu WX, Zheng L, Li J*. Prevalence and Associated Risk Factors of Hypertension in Adults with Disabilities: A Cross-Sectional Study in Shanghai, China. Clinical Epidemiology, 2021, 13: 769-777.

85. Zhang HW, Lv ML, Yang JY, Niu WX, Cheung JCW, Sun WJ, Wong DWC*, Ni M*. Computational modelling of foot orthosis for midfoot arthritis: A Taguchi approach for design optimization. Acta of Bioengineering and Biomechanics. 2020, 22(4):75-83. DOI:10.37190/ABB-01694-2020-03.

86. Zhang HW*, Lv L, Liu Y, Sun WJ, Niu WX, Wong DWC, Ni Mi*, Zhang M. Biomechanical analysis of minimally invasive crossing screw fixation for calcaneal fractures: Implications to early weight-bearing rehabilitation. Clinical Biomechanics, 2020, 80:15143. DOI: 10.1016/j.clinbiomech.2020.105143.

87. Ni M#, Zhang FF#, Mei J*, Lin CYJ, Gruber SMS, Niu WX, Wong DWC, Zhang M. Biomechanical analysis of four augmented fixations of plate osteosynthesis for comminuted mid‑shaft clavicle fracture: A finite element approach. Experimental and Therapeutic Medicine, 2020, 20:2106-2112. 

88. Wong DWC#, Wang Y#, Niu WX, Zhang M*. Finite element analysis of subtalar joint arthroereisis on adult-acquired flexible flatfoot deformity using customized sinus tarsi implant. JOURNAL OF ORTHOPAEDIC TRANSLATION. 2021, 27:139-145.

89. Wang LJ*, Shao QN, Ma GQ*, Gong MX, Niu WX, Qiu J. Pedaling performance changing of elite cyclist is mainly determined by the fatigue of hamstring and vastus muscles during repeated sprint cycling exercise. BioMed Research International, 2020, 2020: Article ID 7294820s.

90. Ni M#, Wong DWC#, Niu WX, Wang Y, Mei J, Zhang M*. Biomechanical comparison of modified calcanail system with plating fixation in intra-articular calcaneal fracture: a finite element analysis. Medical Engineering & Physics, 2019, 70:55-61. DOI: 10.1016/j.medengphy.2019.06.004.

91. Zhu R, Niu WX, Zeng ZL, Tong JH, Zhen ZW, Zhou S, Yu Y, Cheng LM*. The effects of muscle weakness on degenerative spondylolisthesis: A finite element study. Clin Biomech, 2017, 41(1): 34-38.

92. Li S, Sun G, Chang S, Yang C, Li Y, Niu W, Zhang L, Zhang C. Simulated postoperative weight-bearing after fixation of a severe osteoporotic intertrochanteric fracture. International Journal of Clinical and Experimental Medicine, 2017, 10(5): 8438-8448.

93. Zhao HM, Liang XJ*, Li Y, Yu GR, Niu WX, Zhang Y. The role of fibular for supramalleolar osteotomy in treatment of varus ankle arthritis: a biomechanical and clinical study. JOURNAL OF ORTHOPAEDIC SURGERY AND RESEARCH, 2016, 11:127. 

94. Li S, Chang SM*, Jin YM, Zhang YQ, Niu WX, Du SC, Zhang LZ, Ma H. A mathematical simulation of the tip-apex distance and the calcar-referenced tip-apex distance for intertrochanteric fractures reduced with lag screws. Injury - International Journal of the Care of the Injured, 2016, 47(6):1302-1308.

95. Li S, Chang SM*, Niu WX, Ma H. Comparison of tip apex distance and cut out complications between helical blades and lag screws in elderly intertrochanteric fractures: a meta-analysis. Journal of Orthopaedic Science, 2015, 20(6), 1062-1069.

96. Wang LJ*, Lu AY*, Zhang SN, Niu WX, Zheng FH, Gong MX. Fatigue-related electromyographic coherence and phase synchronization analysis between antagonistic elbow muscles. Experimental Brain Research, 2015, 233(3): 971-982.

97. Yao J, Yang B, Niu WX, Zhou JW, Wang YX, Gong H, Ma HS, Tan R, Fan YB*. In vivo measurements of patellar tracking and finite helical axis using a static magnetic resonance based methodology. Medical Engineering & Physics. 2014, 36(12): 1611-1617. DOI: 10.1016/j.medengphy.2014.08.014

98. Yang BH, Wu AX*, Wang CL, Niu WX, Liu JZ. Three-dimensional simulation of pore scale fluid flow in granular ore media with realistic geometry. Transactions of Nonferrous Metals Society of China, 2012, 22(12): 3081-3086.

99. Yao J, Kuang GM, Wong DWC, Niu WX, Zhang M, Fan YB*. Influence of screw length and diameter on tibial strain energy density distribution after anterior cruciate ligament reconstruction. Acta Mechanica Sinica, 2014, 30(2): 241-9. DOI: 10.1007/s10409-014-0027-8.

100. Liang J, Yang YF, Yu GR, Niu WX, Wang YB*. Deformation and stress distribution of the human foot after plantar ligaments release: a cadaveric study and finite element analysis. Science China Life Sciences. 2011, 54 (3): 267-271. DOI: 10.1007/s11427-011-4139-0


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