This randomized crossover proof-of-concept study evaluated the effects of walking with a wearable hip exoskeleton on postprandial glycemic and physiological responses in healthy adults. Participants completed four experimental conditions: seated control, walking without the wearable hip exoskeleton, walking with the Bot-Fit device in Aqua mode, and walking with the Bot-Fit device in Boost mode. The primary aim was to determine whether walking with the wearable hip exoskeleton alters postprandial glucose responses compared with seated control and conventional walking conditions.
This study investigated whether walking with a wearable hip exoskeleton could modulate postprandial glycemic and physiological responses in healthy adults. Using a randomized crossover design, each participant completed four experimental conditions in a controlled laboratory setting: seated control, walking without the wearable hip exoskeleton, walking with the Bot-Fit device in Aqua mode, and walking with the Bot-Fit device in Boost mode. Postprandial glucose responses were assessed after meal ingestion during each experimental trial. Physiological responses, including heart rate, perceived exertion, and energy expenditure, were also evaluated to compare the metabolic and perceptual demands of walking with and without the wearable hip exoskeleton. The study was designed as a proof-of-concept trial to examine whether wearable hip exoskeleton-assisted walking may influence postprandial glucose regulation in healthy adults.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
22
Participants performed walking without wearing the Bot-Fit wearable hip exoskeleton during the postprandial period.
Participants performed walking while wearing the Bot-Fit wearable hip exoskeleton in Aqua mode during the postprandial period.
Participants performed walking while wearing the Bot-Fit wearable hip exoskeleton in Boost mode during the postprandial period.
CHA University
Seongnam-si, Gyeonggi-do, South Korea
Incremental Area Under the Curve for Postprandial Glucose
Incremental area under the curve for postprandial glucose was calculated during the postprandial measurement period for each experimental condition.
Time frame: Up to 120 minutes after meal ingestion during each experimental trial
Peak Postprandial Glucose Concentration
The peak glucose concentration observed during the postprandial measurement period was compared across experimental conditions.
Time frame: Up to 120 minutes after meal ingestion during each experimental trial
Heart Rate Response
Heart rate was assessed during each experimental condition to evaluate physiological responses to walking with and without the wearable hip exoskeleton.
Time frame: From the start to the end of the 30-minute intervention or control period on each experimental trial day
Rating of Perceived Exertion
Rating of perceived exertion was assessed to compare subjective exercise intensity across walking conditions.
Time frame: Immediately after each experimental condition
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