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New mechanisms discovered that show how development-dependent disruptions in mitochondrial function lead to premature skeletal aging.
Researchers at the University of Cologne found that mitochondrial dysfunction leads to early skeletal aging by disrupting cartilage metabolism. The study identified maladaptive metabolic shifts, ...
Researchers from the Chinese Academy of Sciences have demonstrated that biohybrid robots, which integrate lab-grown skeletal ...
A groundbreaking study has uncovered the first physical evidence of human-animal gladiatorial combat in the Roman period. The research presents compelling skeletal evidence of a human victim ...
An interdisciplinary study led by the Universitat Autònoma de Barcelona (UAB) reveals that women living in the region of ...
Skeletal muscles move the bones in the body. The skeletal system is made from bones and joints. The femur bone in the thigh is the longest and strongest bone in the body. The smallest bones in the ...
An interdisciplinary research team led by Professor Dr. Bent Brachvogel has examined how mitochondria influence the premature ...
Ligaments and tendons are two main types of connective tissues that help the muscular-skeletal system produce movements. The muscles contract to pull on the bones to produce movements. Joints are ...
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