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A nonlinear dynamic approach reveals a long-term stroke effect on cerebral blood flow regulation at multiple time scales
Kun Hu,
Men Tzung Lo
, Chung Kang Peng, Yanhui Liu, Vera Novak
認知智慧與精準健康照護研究中心
生醫科學與工程學系
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
32
引文 斯高帕斯(Scopus)
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深入研究「A nonlinear dynamic approach reveals a long-term stroke effect on cerebral blood flow regulation at multiple time scales」主題。共同形成了獨特的指紋。
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Keyphrases
Multiple Time Scales
100%
Cerebral Autoregulation
100%
Cerebral Blood Flow Regulation
100%
Stroke Effect
100%
Nonlinear Dynamic Method
100%
Blood Pressure
42%
Blood Flow Velocity
42%
Blood Pressure Fluctuation
28%
Pressure-driven Flow
28%
Transfer Function Analysis
28%
Control Mechanism
14%
Stroke Patients
14%
Velocity Signal
14%
Frequency Region
14%
Phase Shift
14%
Nonlinear Methods
14%
Age-matched
14%
Physiological Signals
14%
Nonlinear Dynamics Theory
14%
Invalid
14%
Computational Tools
14%
Stroke Rehabilitation
14%
Harmful Effects
14%
Stationarity
14%
Constant Amplitude
14%
Brain Tissue
14%
Velocity Oscillation
14%
Systemic Blood Pressure
14%
Left Brain
14%
Advanced Phase
14%
Cerebral Blood Flow Velocity
14%
Stationary Signal
14%
Wide Frequency
14%
Stationary Oscillation
14%
Vascular Territories
14%
Cerebral Blood Flow
14%
Resting Conditions
14%
Ischemic Infarction
14%
Vascular Control
14%
Neuroscience
Cerebrovascular Accident
100%
Cerebral Autoregulation
70%