
基本信息:1983年11月,無黨派人士,天津人,教授,碩士生導師/博士生導師
研究偏向:腦機融合技術、非線性信息處理
教育配景:
2002/09-2006/07,天津大學,電氣與自動化工程學院,自動化專業,工學學士
2006/09-2010/12,天津大學,電氣與自動化工程學院,檢測技術與自動化裝置專業,工學博士
事情經曆:
2019/12-至今,天津職業技術師範大學,自動化與電氣工程學院,教授
2014/11-2019/11,天津職業技術師範大學,自動化與電氣工程學院,副教授
2013/10-2014/10,賓夕法尼亞洲立大學,神經工程中心,訪問博士後
2012/09-2014/10,中國科學院,半導體研究所,博士後
2010/12-2014/10,天津職業技術師範大學,自動化與電氣工程學院,講師
2010/03-2010/06,香港理工大學, 電機工程系,研究助理
學術兼職:
1. 天津市自動化學會第十屆理事
2. 中國智慧工程研究會勞動與科技工程教育事情委員會第一屆理事
3. 天津市知識分子聯誼會第三屆會員
獲獎情況:
指導學生競賽獲獎
1. 中國國際大學生創新大賽天津賽區, 2024, 天津賽區金獎
2. 世界機器人大賽錦標賽, 2024, 國家級三等獎
3. 睿抗機器人開發者大賽, 2024, 國家級二等獎
4. 第六屆全國大學生嵌入式芯片與系統設計競賽, 2023, 國家級三等獎
5. 第十八屆中國研究生電子設計競賽, 2023, 省部級一等獎
6. 第九屆中國國際“互聯網+”大學生創新創業大賽, 2023, 省部級二等獎
7. 全國大學生物聯網設計競賽, 2023, 省部級二等獎
8. 全國“田家炳杯”全日制教育碩士專業學位研究生(職業技術教育領域)教學技术大賽, 2023, 國家級三等獎
9. 兆易創新杯”第十七屆中國研究生電子設計競賽, 2022, 省部級一等獎
10. 天津市創新創業大賽暨中國創新創業大賽, 2022, 省部級一等獎
11. 第五届全國大学生嵌入式芯片与系统设计竞赛, 2022, 省部級二等獎
12. 第五届全國大学生嵌入式芯片与系统设计竞赛, 2022, 省部級二等獎
13. 第五屆天津市大學生信息技術“新工科”工程實踐創新技術競賽, 2022, 天津市一等獎
14. 22. 華北五省(市、自治區)大學生機器人大賽, 2022, 省部級二等獎
15. 第七屆中國國際“互聯網+”大學生創新創業大賽, 2021, 天津市金獎.
16. 華北五省(市、自治區)大學生機器人大賽, 2021, 華北五省一等獎.
17. “華爲杯”第十七屆中國研究生數學建模競賽, 2020, 國家三等獎
18. 第十五屆挑戰杯天津市大學生課外學術科技作品競賽, 2019, 天津市級二等獎.
學術論文:
[1] A deep learning framework for identifying Alzheimer’s disease using fMRI-based brain network. Frontiers in Neuroscience, 2023.
[2] A Novel Framework of MOPSO-GDM in Recognition of Alzheimer's EEG-Based Functional Network. Frontiers in Aging Neuroscience, 2023.
[3] Epileptic Seizure Detection Using Geometric Features Extracted from SODP Shape of EEG Signals and AsyLnCPSO-GA. Entropy, 2022.
[4] Directed Brain Network Analysis for Fatigue Driving Based on EEG Source Signals. Entropy, 2022.
[5] Model Predictive Control for Seizure Suppression Based on Nonlinear Auto-Regressive Moving-Average Volterra Model, IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2020.
[6] Brain Complex Network Characteristic Analysis of Fatigue during Simulated Driving Based on Electroencephalogram Signals. Entropy, 2019.
[7] Vibrational resonance without tuning in a neuronal parallel array. Physica A: Statistical Mechanics and its Applications, 2019.
[8] Parameter estimation of slow potassium dynamics in a neuron model for seizure-like activity via adaptive lag synchronization and unscented Kalman filter. International Journal of Modern Physics B, 2019.
[9] Calcium conductance-dependent network synchronization is differentially modulated by firing frequency. International Journal of Modern Physics B, 2019.
[10] Robust closed-loop control of spike-and-wave discharges in a thalamocortical computational model of absence epilepsy. Scientific Reports, 2019.
[11] Vibrational resonance in a randomly connected neural network. Cognitive Neurodynamics, 2018.
[12] Toward heterogeneity in feedforward network with synaptic delays based on FitzHugh–Nagumo model. International Journal of Modern Physics B, 2018.
[13] Input-output mapping reconstruction of spike trains at dorsal horn evoked by manual acupuncture. International Journal of Modern Physics B, 2016.
[14] Spike-frequency adaptation of a two-compartment neuron modulated by extracellular electric fields. Biological cybernetics, 2015.
[15] Desynchronization in an ensemble of globally coupled chaotic bursting neuronal oscillators by dynamic delayed feedback control, International Journal of Modern Physics B, 2015.
[16] Effects of DC electric fields on neuronal excitability: A bifurcation analysis. International Journal of Modern Physics B, 2014.
[17] Exploring how extracellular electric field modulates neuron activity through dynamical analysis of a two-compartment neuron model. Journal of Computational Neuroscience, 2014.
[18] An ephaptic transmission model of CA3 pyramidal cells: an investigation into electric field effects. Cognitive Neurodynamics, 2014.
[19] Exploring action potential initiation in neurons exposed to DC electric fields through dynamical analysis of conductance-based model. Communications in Nonlinear Science and Numerical Simulation, 2014.
[20] Dynamic analysis of Hodgkin’s three classes of neurons exposed to extremely low-frequency sinusoidal induced electric field. Applied Mathematics and Computation, 2014.
[21] Analysis of interspike interval of dorsal horn neurons evoked by different needle manipulations at ST36. Acupuncture in Medicine, 2014.
[22] Effects of extremely low-frequency magnetic fields on the response of a conductance-based neuron model. International Journal of Neural Systems, 2014.
[23] Ordinal Pattern Based Complexity Analysis for EEG Activity Evoked by Manual Acupuncture in Healthy Subjects. International Journal of Bifurcation and Chaos, 2014.
[24] Investigation of EEG abnormalities in the early stage of Parkinson's disease. Cognitive Neurodynamics, 2013.
[25] Topology identification of uncertain nonlinearly coupled complex networks with delays based on anticipatory synchronization. Chaos, 2013.
[26] Multi-scale order recurrence quantification analysis of EEG signals evoked by manual acupuncture in healthy subjects. Cognitive Neurodynamics, 2013.
[27] Modulation of electroencephalograph activity by manual acupuncture stimulation in healthy subjects: An autoregressive spectral analysis. Chinese Physics B, 2013.
[28] Modulation of brain functional connectivity with manual acupuncture in healthy subjects: an EEG case studying. Chinese Physics B, 2013.
[29] Adaptive lag synchronization based topology identification scheme of uncertain general complex dynamical networks. The European Physical Journal B, 2012.
[30] Spiking patterns of a minimal neuron to ELF sinusoidal electric field. Applied Mathematical Modelling, 2012.
[31] Parameter estimation of the FitzHugh-Nagumo model using noisy measurements for membrane potential. Chaos, 2012.
[32] Bifurcations in the Hodgkin-Huxley model exposed to DC electric fields. Neurocomputing, 2012.
[33] Decoding acupuncture electrical signals in spinal dorsal root ganglion. Neurocomputing, 2012.
[34] Characteristics analysis of acupuncture electroencephalograph based on mutual information Lempel-Ziv complexity. Chinese Physics B, 2012.
[35] 基于複雜度的針刺腦電信號特征提取. 物理學報, 2011.
[36] 針刺足三裏的脊髓背根神經電信號非線性特征提取, 物理學報, 2010.
[37] Fire patterns of modified HH neuron under external sinusoidal ELF stimulus. Chaos, Solitons & Fractals, 2009.
主持課題:
1. 主持, 天津市自然科學基金面上項目(18JCYBJC88200, 2018.10-2021.09)
2. 主持, 中國博士後科學基金面上項目(2013M530060, 2013.06-2015.09)
3. 主持, 天津市自然科學基金青年項目(13JCQNJC03700, 2013.04-2016.09)
4. 主持, 國家自然科學基金青年項目(61104032, 2012.01-2014.12)
5. 參加, 天津市衛生康健科技面上項目(TJWJ2024MS037, 2024.07-2027.06)
6. 參加, 天津市自然科學基金面上項目(15JCYBJC19000, 2015.04-2018.03)
7. 參加,国家高技术研究生长计划(863計劃)(2015AA033303, 2015.01-2017.12)
8. 參加, 國家自然科學基金青年項目(61401312, 2015.01-2017.12)
9. 參加, 國家自然科學基金面上項目(61374182, 2014.01-2017.12)
10. 參加, 國家自然科學基金青年項目(81001551, 2011.01-2013.12)
11. 參加, 國家自然科學基金青年項目(50907044, 2010.01-2012.12)
12. 參加, 國家自然科學基金青年項目(50707020, 2008.01-2010.12)
發明專利:
申請專利10余項,其中授權7項;授權軟件著作權10余項。
1. 一種基于EcoG癫痫神經信號的解碼要领和雲端解碼系統. 專利號: 201910049383.4.
其他榮譽:
1. 天津市特聘教授青年學者
2. “十三五”中青年主干创新人才培養计划人选
3. “131”创新型人才培養工程第二条理人选
4. 天津職業技術師範大學優秀青年教師資助計劃人選