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Low-intensity pulsed ultrasound ameliorates glia-mediated inflammation and neuronal damage in experimental intracerebral hemorrhage conditions
Wei Shen Su
, Chun Hu Wu
, Wen Shin Song
, Szu Fu Chen
*
,
Feng Yi Yang
*
*
此作品的通信作者
生物醫學影像暨放射科學系
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引文 斯高帕斯(Scopus)
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Keyphrases
Inflammation
100%
Neuronal Damage
100%
Intracerebral Hemorrhage
100%
Low-intensity Pulsed Ultrasound (LIPUS)
100%
Glia
100%
Ultrasound Treatment
30%
AKT1
20%
Neurological Deficit
20%
NF-B Signaling
20%
Non-invasive Method
10%
Clinical Application
10%
Histology
10%
Apoptosis
10%
Neuroprotection
10%
Protein Expression
10%
Effective Treatment
10%
High Morbidity
10%
High Mortality
10%
Major Contributor
10%
Neurodegeneration
10%
In Vitro Study
10%
Conditioned Medium
10%
Protective Effect
10%
Neurodegenerative Diseases
10%
Neurological Outcome
10%
LY294002
10%
Thrombin
10%
PI3K Inhibitor
10%
Invasive Potential
10%
Cytokine Expression
10%
Edema
10%
Neurological Function
10%
Neurotrophic Factors
10%
Striatum
10%
Tissue Loss
10%
Neuroprotective Effect
10%
Brain Water Content
10%
Microglial Activation
10%
Inflammatory Molecules
10%
Hemoglobin Content
10%
Neuroprotective Potential
10%
Delayed Intervention
10%
Content Expression
10%
Cell Line Culture
10%
Management Strategies
10%
PI3K/AKT Signaling
10%
Medicine and Dentistry
Low-Intensity Pulsed Ultrasound
100%
Glia
100%
Experimental Cerebral Hemorrhage
100%
Inflammation
100%
Cerebral Hemorrhage
80%
In Vitro
20%
Protein Kinase B
20%
Cell Line
10%
Cytokine
10%
Magnetic Resonance Imaging
10%
Non Invasive Procedure
10%
Protein Expression
10%
Programmed Cell Death
10%
Degenerative Disease
10%
Neurodegeneration
10%
Edema
10%
Neuroprotective Agent
10%
Akt Signaling
10%
Striatum
10%
Neuroprotection
10%
Hemoglobins
10%
LY294002
10%
Thrombin
10%
Morbidity
10%
Nervous System Physiology
10%
Neurotrophic Factor
10%
Clostridiopeptidase A
10%
Brain Histology
10%
Effective Treatment
10%