projects:g2:start
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Course Director: Professor Ebrahim Ghafar-Zadeh | Course Director: Professor Ebrahim Ghafar-Zadeh | ||
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===== Short Bio ===== | ===== Short Bio ===== | ||
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- | + | The final circuit shown here includes all the components that are part of the final product. This stage of the project gave us great opportunity to apply our knowledge from courses. | |
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** [[https:// | ** [[https:// | ||
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+ | ===== Achieved Results ===== | ||
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+ | Satisfied objectives: | ||
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+ | * Parsed raw data from exercise motion | ||
+ | * Determined the appropriate stimulation technique | ||
+ | * Implemented stimulation technique that adapts to individual exercise routines | ||
+ | * Demonstrated visual evidence of motion tracking and stimulation activation | ||
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+ | All objectives were met with a high degree of quality as shown below. | ||
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+ | Limb motion is a natural part of exercise. By tracking the motion' | ||
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+ | After filtering the raw values via custom made phase-peak filter, the data is now useful. The sensor data for a session involving bicep curl is shown next where the stimulation is applied during concentric contraction of the muscle. This phase of exercise is the part under the red line in the graph shown at the top. The beauty of the device is that the stimulation is only initiated when the muscle is in the right state of concentric contraction. | ||
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+ | In the graph provided, the exercise motion is filtered and any inadvertent movements do not trigger the muscle stimulation. Only precise concentric muscle contraction motion can trigger the muscle stimulation while any inadequate motion is filtered to comply with medical professional and existing literature. | ||
===== Highlights ===== | ===== Highlights ===== | ||
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- | ===== Latest Presentation ===== | ||
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projects/g2/start.1398359458.txt.gz · Last modified: 2014/04/24 17:10 by cse03023