The purpose of this study is to find out if applying mild mechanical vibration (100 Hz) to the the Achilles and patellar tendons before and during exercise can make cycling feel easier and help athletes generate more power. The researchers also want to test if a new, lightweight wearable sleeve called "Tendo" is just as effective at doing this as a stationary laboratory machine. The study will involve 40 healthy, active student-athletes aged 18 to 26. Each participant will attend three separate testing sessions in a laboratory, with at least 48 hours of rest between sessions. During each 85-minute session, participants will: Complete baseline resting measurements of their muscles and tendons. Ride a stationary exercise bicycle with a covered screen, adjusting their speed and pedaling based only on how hard they feel they are working, using a 0-100 effort scale called Borg CR100. Receive a 10-minute resting tendon vibration. Repeat the cycling test with a short "booster" vibration to see how their performance changes. To understand how the vibration works, the researchers will use harmless skin sensors to measure muscle activity (sEMG), a gentle tapping device to check tendon stiffness (MyotonPRO), and ultrasound imaging to look at tendon structure. Stationary Vibration: High-frequency (100 Hz) vibration from a fixed laboratory machine. Wearable Vibration: High-frequency (100 Hz) vibration from the portable Tendo sleeve. Sham Vibration: A low-frequency (15 Hz) vibration that does not trigger a physiological response, serving as a control to make sure the results are not just due to a placebo effect.
Age range
18 Years – 26 Years
Sex
ALL
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Mean Power Output
Timeframe: Continuous recording at 1 Hz, analyzed as the mean power output for each 3-minute block during the cycling task (specifically comparing blocks across the three experimental sessions).