This observational crossover study aims to evaluate how different bag carrying styles-backpack, shoulder bag, and handbag-may affect gait parameters in healthy adults. Fifteen participants will walk under four conditions (no bag and each of the three bag types with a load of 15% of body weight), with the order randomized. Gait will be assessed using a 3D motion capture system with integrated force plates. Posture and lower extremity muscle strength will also be evaluated for baseline characterization.
This observational crossover study was conducted at a university-based Gait Analysis Center between October 2023 and October 2024, following ethical approval from the University Medical Research Ethics Committee (approval number: 2022-19/07, dated 09.12.2022). The study aimed to evaluate how different bag carrying styles-specifically, carrying a backpack, a shoulder bag, and a handbag-may influence gait parameters in healthy adults. Fifteen volunteers aged 18 to 30 years who met predefined inclusion criteria were enrolled. Baseline posture was evaluated using the New York Posture Analysis (NYPA), and lower extremity muscle strength was assessed with a handheld myometer to ensure a consistent starting profile across participants. These values were recorded for characterization purposes only and were not analyzed in association with gait outcomes. Each participant completed walking trials under four different conditions: walking without a bag, with a backpack, with a shoulder bag, and with a handbag. The order of these conditions was randomized for each participant. For each loaded condition, bags were adjusted to carry 15% of the individual's body weight. Participants walked barefoot at a self-selected pace on a 10-meter walkway while gait data were collected using a 3D motion analysis system (Vicon) integrated with force plates. Reflective markers were placed on anatomical reference points on the lower extremities. Spatial-temporal, kinematic, and kinetic gait parameters were recorded in each condition, including stride length, cadence, joint angles, and joint power. Rest periods of at least three minutes were provided between walking conditions to reduce fatigue. All measurements were performed during a single session. This study used a prospective crossover design in which each participant was observed under all four conditions. No therapeutic or clinical interventions were applied. The goal was to observe within-subject variability in gait characteristics associated with temporary exposure to different bag-carrying styles under standardized laboratory conditions.
Study Type
OBSERVATIONAL
Istanbul University - Cerrahpasa, Faculty of Health Sciences, Büyükçekmece Campus, Alkent 2000 Mah. Yiğittürk Street No:5/9/1, Büyükçekmece/Istanbul, Turkey
Istanbul, büyükçekmece, Turkey (Türkiye)
Kinetic Gait Parameters
Peak joint power values will be assessed using the Vicon 3D gait analysis system with integrated force plates. The following parameters will be recorded bilaterally under four bag-carrying conditions (no bag, backpack, shoulder bag, handbag): Maximum ankle power, maximum knee power, maximum hip power Unit of Measure: Watts per kilogram (W/kg)
Time frame: Baseline
Kinematic Gait Parameters
Joint angles will be calculated using 3D motion capture data for both right and left lower limbs during barefoot walking under four bag-carrying conditions (no bag, backpack, shoulder bag, handbag). The following maximum joint angles will be measured bilaterally: Ankle dorsiflexion, ankle plantarflexion, knee flexion, knee extension, hip flexion, hip extension, hip abduction, hip adduction, anterior pelvic tilt Unit of Measure: Degrees (°)
Time frame: Baseline
Spatiotemporal Gait Parameters
Spatiotemporal gait parameters will be measured using a 3D motion analysis system equipped with reflective markers and force platforms. The following variables will be assessed under four bag-carrying conditions (no bag, backpack, shoulder bag, handbag): Step length (meters), cadence (steps per minute), gait speed (meters per second), single support time (seconds), double support time (seconds) Each parameter will be recorded bilaterally where applicable. Values will be averaged from two selected trials per condition. Unit of Measure: Multiple (m, steps/min, s)
Time frame: Baseline
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Enrollment
15