
doi: 10.3233/bme-151352
pmid: 26406055
Abstract This study designs and fabricates a novel integrated digital hand grip dynamometer and analyzes collected grip strength data. The dynamometer directly stores collected data in a computer, unlike those on the market that cannot directly store information. A strain gauge load cell is used as a force sensor. The dynamometer is designed to maximize ergonomics. Excitation voltage of the load cell is 5 V, and a 9 V battery supplies power to its circuit. The signal receiver is National Instruments (NI) data acquisition (DAQ) card that transmits signals to the computer. The operation system is designed using LabView. This study assesses the correlation between variables of collected data. The correlation coefficients for height, weight and palm length were 0.793, 0.609 and 0.715, respectively, indicating that variables were moderately to strongly correlate with grip strength.
Equipment Failure Analysis, Systems Integration, Hand Strength, Reference Values, Humans, Information Storage and Retrieval, Signal Processing, Computer-Assisted, Equipment Design, Muscle Strength Dynamometer, Physical Examination
Equipment Failure Analysis, Systems Integration, Hand Strength, Reference Values, Humans, Information Storage and Retrieval, Signal Processing, Computer-Assisted, Equipment Design, Muscle Strength Dynamometer, Physical Examination
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