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    <dc:date>2026-08-10T13:29:47Z</dc:date>
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    <title>Prevalence and Biomechanical Analysis of Knee Valgus and Knee Flexion Angle during Hop Test and Step‑down Test among Badminton Players</title>
    <link>https://absmari.dspaces.org/jspui/handle/123456789/990</link>
    <description>Title: Prevalence and Biomechanical Analysis of Knee Valgus and Knee Flexion Angle during Hop Test and Step‑down Test among Badminton Players
Authors: Gaikwad, Swaroopdhan S.; Pradhan, Deepak Kumar; Mohankumar, P.; Pandith, Sumukh N; Chaudhary, Mansi A; Dastikop, Chirag S; Prajwal, H.; Pati, Sumit Kumar
Abstract: The knee joint plays a crucial role in various badminton‑related functional movements for both stability and mobility. Specifically,&#xD;
an optimal flexion and valgus angle upon landing tasks ensures less injury risk. Aims: Thus, the study aimed to investigate the prevalence and&#xD;
biomechanical analysis of knee joint flexion and valgus angle among badminton athletes. Methods: Sixty players were included in this study.&#xD;
The study conducted a two‑dimensional biomechanical analysis using the Kinovea software to measure the knee flexion and valgus angle&#xD;
while hop and step‑down tests, respectively. Results: The study found that for the 13–17 age group, the mean knee flexion angle is 109.8°&#xD;
± 8.0° (right) and 112.9° ± 8.7° (left), whereas for the 18–25‑year age group, it is 110.4° ± 10.1° (right) and 111.7° ± 9.6° (left). The knee&#xD;
valgus angle for 13–17 years is 11.0° ± 5.5° (right) and 11.1° ± 5.7° (left), and for 18–25 years, it is 12.6° ± 6.1° (right) and 11.9° ± 4.0° (left).&#xD;
The difference in knee flexion and valgus angle between legs or the age groups did not find statistically different (P &gt; 0.05). Conclusion:&#xD;
The findings conclude that there was a high prevalence of increased valgus angle among badminton players. However, the flexion angle was&#xD;
found to be optimal. There was no meaningful differences in the knee joint alignments neither between both the legs and the age groups. The&#xD;
study findings can underscore the potential mechanisms and necessary training modifications by emphasising certain neuromuscular control&#xD;
trainings and optimal landing mechanics to ensure a safe and effective badminton‑related mechanics, thereby reducing injury risks.</description>
    <dc:date>2026-03-02T00:00:00Z</dc:date>
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    <title>Time-dependent biochemical response after middle cerebral artery occlusion in rats: A pilot study</title>
    <link>https://absmari.dspaces.org/jspui/handle/123456789/989</link>
    <description>Title: Time-dependent biochemical response after middle cerebral artery occlusion in rats: A pilot study
Authors: Parveen, Asma; Suganthirababu, Prathap; Prathap, Lavanya; Tanaya, Ashisha Kshirabdhi; Umasankar, Yamini; Patra, Debadutta</description>
    <dc:date>2026-08-02T00:00:00Z</dc:date>
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