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Vibration-induced regional cerebral blood flow responses in normal aging
L. W. Tempel,
J. S. Perlmutter
Department of Neurology
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
Institute of Clinical and Translational Sciences (ICTS)
Section of Movement Disorders
Neuroimaging Labs Research Center
DBBS - Neurosciences
Research output
:
Contribution to journal
›
Article
›
peer-review
27
Scopus citations
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Keyphrases
Supplementary Motor Area
100%
Regional Cerebral Blood Flow (rCBF)
100%
Flow Response
100%
Normal Aging
100%
Vibration-induced
100%
Primary Sensorimotor Area
100%
Positron Emission Tomography
50%
Blood Flow
50%
Response Magnitude
50%
Regional CBF
50%
Age-matched
25%
Response Change
25%
Older Subjects
25%
Pathological Conditions
25%
Power Analysis
25%
Linear Regression
25%
Vibrotactile
25%
H215O
25%
Brain Function
25%
Image Analysis
25%
Advancing Age
25%
Healthy Young
25%
Hand Vibration
25%
Regional Response
25%
Confidence Degree
25%
Inconsistent Responses
25%
Subtraction Image
25%
Nursing and Health Professions
Positron Emission Tomography
100%
Blood Flow
100%
Brain Blood Flow
100%
Power Analysis
50%
Linear Regression Analysis
50%
Image Analysis
50%
Engineering
Induced Vibration
100%
Magnitude Response
100%
Image Analysis
50%
Powerful Tool
50%
Induced Change
50%
Consistent Response
50%
Psychology
Positron-Emission Tomography
100%
Regional Cerebral Blood Flow
100%
Linear Regression
50%
Neuroscience
Supplementary Motor Area
100%
Positron Emission Tomography
50%
Brain Function
25%
Material Science
Tomography
100%