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Areas of expertise:
Human Motor Control. This research addresses the role of the peripheral neuromuscular system in the control of posture and movement. System identification methods are used to address three main questions: (1) What are the mechanical properties of human joints and how do they vary under normal physiological conditions? (2) What mechanisms are responsible for generating the mechanical behavior; what are the relative roles of intrinsic muscle properties and reflex mechanisms? (3) What role do these mechanical properties play in the control of posture and movement?
Biomedical System Identification and Signal Analysis. This research focuses on the development of tools and techniques for the analysis of biomedical signals and system and their application to clinically relevant problems . The emphasis is on practical methods for the identification of linear-time-varying and nonlinear systems within a continuous-time, nonparametric context. Current application areas are: (1) human motor control; (2) respiratory monitoring for apnea detection/prediction in the pediatric recovery room; and (3) automated decision support for electronic fetal monitoring.
Research areas:
Signals and Systems
Biomedical Sensors
Medical Diagnostics and Therapeutics
Human Motor Control. This research addresses the role of the peripheral neuromuscular system in the control of posture and movement. System identification methods are used to address three main questions: (1) What are the mechanical properties of human joints and how do they vary under normal physiological conditions? (2) What mechanisms are responsible for generating the mechanical behavior; what are the relative roles of intrinsic muscle properties and reflex mechanisms? (3) What role do these mechanical properties play in the control of posture and movement?
Biomedical System Identification and Signal Analysis. This research focuses on the development of tools and techniques for the analysis of biomedical signals and system and their application to clinically relevant problems . The emphasis is on practical methods for the identification of linear-time-varying and nonlinear systems within a continuous-time, nonparametric context. Current application areas are: (1) human motor control; (2) respiratory monitoring for apnea detection/prediction in the pediatric recovery room; and (3) automated decision support for electronic fetal monitoring.
Research areas:
Signals and Systems
Biomedical Sensors
Medical Diagnostics and Therapeutics
Research Interests
Papers共 206 篇Author StatisticsCo-AuthorSimilar Experts
By YearBy Citation主题筛选期刊级别筛选合作者筛选合作机构筛选
时间
引用量
主题
期刊级别
合作者
合作机构
2023 Computing in Cardiology (CinC) (2023): 1-4
Biomedical Signal Processing and Control (2023): 105028-105028
2023 45TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE & BIOLOGY SOCIETY, EMBC (2023): 1-5
2023 IEEE EMBS International Conference on Biomedical and Health Informatics (BHI) (2023): 1-4
2023 Computing in Cardiology (CinC) (2023): 1-4
2021 COMPUTING IN CARDIOLOGY (CINC) (2021): 1-4
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Author Statistics
#Papers: 189
#Citation: 6667
H-Index: 37
G-Index: 79
Sociability: 6
Diversity: 1
Activity: 0
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