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Introduction: This study aimed to evaluate the angular kinematics of the hip, knee, ankle, and the linear kinematics of the barbell during the back squat (BS) at different load intensities in powerlifters and weightlifters.
Methods: Seventeen athletes were recruited ( = 14 powerlifters; = 3 weightlifters). The 1-RM of the BS of each participant was calculated and, 1-week after, each participant was asked to perform 5 trials of the BS at different load intensities (i.e., 60%, 70%, 80%, 90%, 100%) of the 1-RM. An action camera recorded the execution of each BS trial in the sagittal plane and, afterward, the videos were analyzed by measuring the range of motion (ROM) of hip, knee, and ankle for the angular kinematics, and the timing, distances, speeds, and accelerations of the barbell for the linear kinematics.
Results: Regarding the angular kinematics, no significant differences were found in the parameters in the starting and ending positions among the 5 trials, while a significant decrease was found in the hip relative angle ( = 0.026) in the maximum flexion position as load intensity increased. Regarding the linear kinematics, a significant difference was found in the descent acceleration ( = 0.049) in the descent phase, while a significant difference was found in the ascent speed ( < .001) and vertical speed of ascent ( < .001) in the ascent phase, which decreased as load intensity increased.
Discussion: Our findings show that the angular and linear kinematics of BS change as load intensity increases.
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http://dx.doi.org/10.3389/fspor.2024.1454309 | DOI Listing |
J Sports Sci
September 2025
School of Health and Sports Sciences, University of Suffolk, Ipswich, UK.
This study assessed the interunit reliability of Global Navigation Satellite System (GNSS) and accelerometer-derived metrics during high-intensity shuttle run protocols. Thirty-three female football players completed three shuttle run protocols (2 × 20 m, 4 × 10 m, and 8 × 5 m). Two STATSports Apex Pro units (18 Hz GPS and 10 Hz Augmented GNSS; 100 Hz accelerometer) recorded accelerometer-derived (fatigue index [FI] and dynamic stress load [DSL]) and GNSS-derived (total distance, acceleration and deceleration counts, maximum speed, speed intensity and total metabolic power) metrics.
View Article and Find Full Text PDFJ Vet Med Sci
September 2025
School of Veterinary Nursing and Technology, Nippon Veterinary and Life Science University.
Oxidative stress has attracted attention as an indicator of exercise load. Minimizing the impact on the body is essential during underwater treadmill exercise. Here, we conducted an exploratory study of the effects of dermal suction, which has been reported to improve blood flow in healthy dogs, prior to underwater treadmill exercise.
View Article and Find Full Text PDFArch Orthop Trauma Surg
September 2025
Medical Faculty, University of Zurich (UZH), Zurich, Switzerland.
Background: Distal triceps tendon rupture is related to high complication rates with up to 25% failures. Elbow stiffness is another severe complication, as the traditional approach considers prolonged immobilization to ensure tendon healing. Recently, a dynamic tape was designed, implementing a silicone-infused core for braid shortening and preventing repair elongation during mobilization, thus maintaining constant tissue approximation.
View Article and Find Full Text PDFIEEE Trans Biomed Circuits Syst
September 2025
Neuroprostheses capable of providing Somatotopic Sensory Feedback (SSF) enables the restoration of tactile sensations in amputees, thereby enhancing prosthesis embodiment, object manipulation, balance and walking stability. Transcutaneous Electrical Nerve Stimulation (TENS) represents a primary noninvasive technique for eliciting somatotopic sensations. Devices commonly used to evaluate the effectiveness of TENS stimulation are often bulky and main powered.
View Article and Find Full Text PDFJ Vis Exp
August 2025
Institute of Orthopedic Surgery, Xijing Hospital, Air force Medical University;
Bone tissue is an important load-bearing organ of the human body. Moderate exercise enhances bone mass through mechanical loading, while high-intensity exercise may suppress it. Infrared therapy improves circulation, reduces pain/inflammation, and aids tissue repair.
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